Se connecter
Thème

À propos

Parmi la myriade de cellules immunitaires, il existe une sous-catégorie présentant une morphologie singulière. Il s’agit des cellules dendritiques, ainsi nommées parce que, sous le microscope, elles ont une silhouette en forme d’étoile avec des bras aux extrémités allongées. Ces «branches» ou «dendrites» offrent une surface de contact potentielle et une portée bien supérieures à celles des cellules sphériques ordinaires.

Le rôle des cellules dendritiques est au cœur du fonctionnement du système immunitaire. Capables de communiquer avec pratiquement toutes les autres cellules, elles coordonnent la réponse immunitaire (aux infections, aux blessures, au cancer…) et remplissent elles-mêmes un certain nombre de fonctions différentes (par exemple antivirales, antitumorales, ou visant à prévenir l’auto-immunité ou les allergies en induisant une tolérance immunitaire aux molécules du soi et aux aliments). En réalité, le terme «cellules dendritiques» recouvre plusieurs types de cellules, chacun étant spécialisé dans un ensemble spécifique de fonctions complémentaires ou parfois redondantes. Les signaux qu’elles peuvent détecter, les cellules avec lesquelles elles interagissent ou les organes dans lesquels elles résident déterminent en partie cette combinaison de spécialisation fonctionnelle et de plasticité de chaque type de cellule dendritique.

L’équipe de Marc Dalod s’est engagée dans un long voyage dans ce monde complexe où il reste encore beaucoup à découvrir.

ALIGNER LES SOUS-POPULATIONS DE CELLULES DENDRITIQUES ENTRE LA SOURIS ET L’HOMME POUR MIEUX COMPRENDRE LEUR IDENTITÉ ET EN DÉDUIRE LEURS FONCTIONS

«Les cellules dendritiques orchestrent à la fois la réponse immédiate, celle du système immunitaire inné «spontané», mais préparent également ses réponses adaptatives ultérieures, permettant une «mémoire» protectrice au cas où le système rencontrerait le même pathogène une seconde fois», explique Marc Dalod. «Les immunologistes cherchent aujourd’hui à mieux comprendre l’univers des cellules dendritiques, car les déficiences de ce système complexe contribuent parfois à l’apparition de maladies. C’est le cas, par exemple, de l’infection par le VIH, qui est nettement moins bien contrôlée par notre système immunitaire que d’autres infections virales. C’est précisément cette question qui a suscité mon intérêt pour ce thème : qu’est-ce qui ne fonctionne pas dans la réponse immunitaire des cellules dendritiques au VIH ?»

Il n’est jamais facile, d’un point de vue technique, d’étudier le fonctionnement des cellules dans le corps humain, c’est pourquoi la souris est souvent le modèle privilégié. Cependant, pour que l’extrapolation soit pertinente, nous devons d’abord nous assurer que les types de cellules étudiés et manipulés, en l’occurrence les types de cellules dendritiques, et les états d’activation qu’ils adoptent en fonction des signaux qu’ils reçoivent, sont fonctionnellement équivalents entre les deux espèces.

«Auparavant, l’hétérogénéité des cellules dendritiques était principalement décrite chez la souris. On connaissait neuf sous-populations, ou «subsets» : trois résidant dans les organes spécialisés dans les fonctions immunitaires (par exemple les ganglions lymphatiques), cinq nichées dans différentes couches de la peau, l’épiderme et le derme, et une autre population qui ne se développait que dans des conditions inflammatoires. Ces sous-populations de cellules dendritiques ont été identifiées comme différentes les unes des autres parce qu’elles ne produisaient pas toutes les mêmes facteurs antiviraux (par exemple les interférons de type I qui sont produits rapidement et en grande quantité par les cellules dendritiques plasmacytoïdes, pDCs) ou parce qu’elles exprimaient des marqueurs différents à leur surface», explique Marc Dalod. Cependant, à l’époque, il était difficile de faire la distinction entre les différents types de cellules dendritiques et les différents états d’activation d’un même type de cellule dendritique en fonction de son tissu de résidence, du moment où elle était observée au cours d’une réponse immunitaire et du contexte physiopathologique de son étude.

«Chez l’homme, nous n’en savions pas autant et l’équivalence avec le système des cellules dendritiques de la souris était sujette à débat. Nous avons alors tenté d’unifier le modèle, en étudiant les cellules dendritiques plus en détail, en cartographiant les profils d’expression génétique globaux des différentes sous-populations de la souris et de l’humain, et en les comparant de manière impartiale pour l’expression des milliers de gènes qui se sont avérés être exprimés de manière différentielle dans les deux ensembles de données (chez la souris et chez l’humain). Cela nous a permis d’établir pour la première fois des homologies convaincantes entre les sous-populations de cellules dendritiques, non seulement entre les tissus d’une même espèce, mais aussi entre les espèces murines et humaines.»

Les populations de cellules dendritiques caractérisées par la même signature génétique au cœur de leur identité fondamentale, conservée entre tous les tissus, espèces et conditions d’activation, ont alors pu être décrites avec une précision sans précédent et se sont révélées équivalentes entre la rate et la peau chez la souris, ainsi qu’entre la souris et l’être humain, y compris en ce qui concerne leur spécialisation fonctionnelle, par exemple l’activation des globules blancs qui détruisent les cellules infectées par des virus ou les cellules tumorales, une activité dans laquelle les cellules dendritiques conventionnelles de type 1 (cDC1s) excellent. Cela nous a amenés à proposer une classification simplifiée des cellules dendritiques en cinq types cellulaires potentiellement valables pour tous les tissus, toutes les espèces de vertébrés et toutes les conditions physiopathologiques.

OPTIMISER L’UTILISATION DES MODÈLES ANIMAUX AFIN D’AUGMENTER LA PROBABILITÉ QUE LEURS ENSEIGNEMENTS PUISSENT ÊTRE UTILISÉS À LONG TERME POUR AMÉLIORER LA SANTÉ HUMAINE

«Nous pouvons désormais utiliser des modèles de maladie chez la souris pour prédire quel sera le type et l’état d’activation les plus efficaces des cellules dendritiques pour la protection, puis extrapoler ces résultats à l’être humain dans l’objectif de cibler thérapeutiquement leurs équivalents. À l’inverse, nous pouvons espérer améliorer une réponse immunitaire déficiente, comme dans le cas du VIH, puisque nous pouvons identifier précisément le maillon faible», s’enthousiasme Marc Dalod.

Par conséquent, mon équipe cherche à comprendre quelles combinaisons de types de cellules dendritiques et d’états d’activation favorisent l’immunité antivirale ou antitumorale protectrice, par opposition à la tolérance immunitaire, et comment (revues: Alexandre et al. Front Microbiol. 2014; Dalod et al. EMBO J. 2014; Vu Manh et al. Front Immunol. 2015a; Cancel et al. Front Immunol. 2019; Cheema et al. Methods Mol Biol. 2023; Ngo et al. Cell Mol Immunol. 2024). Nous analysons également comment les fonctions des interférons (IFNs) et des pDC peuvent être bénéfiques ou néfastes, selon le contexte physiopathologique (revues: Tomasello et al. Front Immunol. 2014; Ngo et al. Cell Mol Immunol. 2024).

Nous combinons des lignées de souris mutantes, des modèles précliniques d’infections virales, de cancer ou d’inflammation, ainsi que la transcriptomique globale ou unicellulaire, la cytométrie en flux multiparamétrique et la microscopie confocale quantitative, afin d’identifier les modules génétiques qui régissent l’ontogenèse, la trajectoire d’activation et la polarisation fonctionnelle des cDC1s et des pDCs, leur interaction avec les cellules tueuses naturelles (NK) et les lymphocytes T, ainsi que l’orchestration de ces réponses dans le temps et l’espace (Robbins et al. PLoS Pathog. 2007; Zucchini et al. Int. Immunol. 2007; Zucchini et al. J Immunol. 2008; Crozat et al. J Exp Med. 2010; Baranek et al. Cell Host Microbes. 2012; Cocita et al. PLoS Pathogens. 201 ; Vu Manh et al. Front Immunol. 2015a;2015b; Alexandre et al. J Exp Med. 2016; Tomasello et al. EMBO J, 2018; Abbas et al. Nat Immunol. 2020; Mattiuz et al. Clin Transl Immunol. 2021; Ghislat et al. Sci Immunol. 2021; Ghilas et al. iScience. 2021; Valente et al. Nat Immunol. 2023; Ngo et al. BioRxiv. 2024).

Nous nous focalisons particulièrement sur la détermination des fonctions des molécules, des modules génétiques et des voies de signalisation régulatrices dont la sélectivité d’expression/d’activité entre les types de cellules dendritiques et les états d’activation semble être conservée au cours de l’évolution, en nous basant sur la transcriptomique comparative entre la souris et l’humain.

DÉVELOPPEMENT DE MODÈLES IN VITRO DE TYPES DE CELLULES DENDRITIQUES HUMAINES AFIN D’ACCÉLÉRER LA TRANSFERT DES CONNAISSANCES AU PROFIT DES PATIENTS

Nous développons également des pipelines pour différencier les cellules souches hématopoïétiques humaines en authentiques pDCs et cDC1s et les manipuler génétiquement ou pharmacologiquement, afin d’accélérer la transposition des découvertes faites chez la souris au bénéfice des patients (Balan et al. J Immunol. 2014 ; Balan et al. Cell Rep. 2018 ; Luo et al. BioRxiv. 2023).

Projets

Projet
2025
DECryptage de l’Instruction TIssulaire des cellules dendritiques Plasmacytoïdes dans l’homéostasie et lors d’infections virales (DECITIP)

Project : DECITIP Les cellules dendritiques plasmacytoides (pDCs) excellent dans la production des interférons de type I et III (IFN), […]

Elena TOMASELLO
Pierre MILPIED
Projet
2025
Rôle des cellules dendritiques plasmacytoïdes dans le comportement associé à la maladie (CM) induit lors d’infections virales ou d’obésité (pDCComp)

Project : pDCComp Les individus infectés par des virus ou souffrant de maladies inflammatoires développent un ensemble de troubles comportementaux […]

Elena TOMASELLO
Projet
2025
Rôle des interactions avec les cellules dendritiques dans le maintien des fonctions des cellules NK en condition tumorale

Project : PLBIO 2024 Coordinateur: Thierry Walzer, CIRI, Lyon. Autre participant: Nathalie Bendriss-Vermare, CRCL, Lyon. Résumé: Les cellules Natural Killer […]

Marc DALOD
Projet
2025
Déterminer comment les cellules dendritiques promeuvent des réponses antitumorales NK et T CD8 efficaces, dans des modèles murins de cancer du sein, spontanément ou en réponse à l’administration d’adjuvants

Project : ACLAMADABREC En partie via leur efficacité à activer les cellules natural killer (NK) et les lymphocyte T CD8 […]

Marc DALOD
Projet
2025
Décryptage computationnel et modélisation mathématique des réseaux régulateurs contrôlant la biologie des cellules dendritiques plasmacytoïdes

Project : MITI Autres participants: Magali Richard, LIG, Grenoble; Lionel Spinelli, hub CB2M du CIML. Résumé: Ce projet vise à […]

Marc DALOD
Projet
2025
Accélérer notre capacité à comprendre et combattre l’immunopathologie causée par les infections respiratoires dues à des virus émergents : des modèles de souris aux patients en passant par les macaques

Project : UNFIRE Autres participants: Ciphe (Ana Zarubica), Hospices Civils de Lyon et CIRI (Sophie Trouillet-Assant, Thierry Walzer), équipe CoVir […]

Marc DALOD
Marc BAJENOFF
Rejane RUA
Mauro GAYA
Philippe PIERRE
Projet
2025
Contributions des antigènes dérivés du génome non-codant aux réponses immunitaires anti-tumorales.

Project : PLBIO-25 Coordinateur: Marianne BURBAGE, Institut Curie, Paris. Autre participant: Andrew GRIFFITHS, ESPCI, Paris. L’efficacité des lymphocytes T CD8 […]

Nathalie AUPHAN-ANEZIN, PhD, HDR
Projet
2025
Une nouvelle approche de criblage génétique pour identifier des régulateurs de la biologie de différents types de cellules dendritiques humaines

Project : DCFUNDEVSCREEN Résumé: Des études chez la souris ont montré le rôle clé antiviral/tumoral des cellules dendritiques, plasmacytoïdes (pDCs) […]

Marc DALOD
Projet
2025
Rôle des interférons de type I et des cellules dendritiques plasmacytoïdes dans l’immunopathologie pulmonaire causée par des infections virales respiratoires

Project : RIPIREVI Autres participants: CIPHE (Ana Zarubica et collègues). Résumé: Les interférons de type I (IFN-Is) sont essentiels à […]

Marc DALOD
Rejane RUA
Projet
2025
Découverte d’un nouvel axe régulateur induit par le TSLP dans la pathogenèse des maladies inflammatoires de la peau

Project : NRegSkin Porteur: Mei LI (IGBMC, Strasbourg). Autres participants: Katia Boniface, Julien Seneschal (Université de Bordeaux). Résumé: La peau […]

Marc DALOD
Projet
2025
Amélioration de la perfusion pulmonaire ex-vivo par une ventilation en pression négative et une mobilisation du greffon – REVOLUTION

Project : REVOLUTION Coordinateur: Edouard Sage, Hôpital Foch, Suresnes. Autres partenaires: Isabelle Schwartz-Cornil, INRAE, Jouy-en-Josas; Jérémie Pourchez, Ecole des Mines […]

Marc DALOD
Projet
2025
Intracellular Carriers Against Resistant microOrganisms (ICARO)

Project : ICARO Les vaccins acellulaires actuels sont surtout efficaces contre les pathogènes extracellulaires, mais échouent à induire une réponse […]

Hugues LELOUARD
Cyrille MIONNET
Projet
2025
Décrypter les mécanismes de surveillance immunitaire précoces dans les cellules dendritiques au cours du développement du cancer du sein grâce à un modèle unique de tumeur mammaire sporadique spontanée transplantable à base d’organoïdes

Project : PLBIO 2021 Coordinateur: Christophe CAUX, CRCL, Lyon. Autres participants: Alain Viari, Inria, Lyon; Nathalie Bendriss-Vermare, CRCL, Lyon. Comment […]

Marc DALOD

Publications

2025
Kapoor S, Munz CM, Marsden J, Carvalho C, Tinsley H, Pinto MM, Malengier-Devlies B, Becker S, Seuzar..., Mast Cells Are Not Essential for Pubertal Mammary Gland Branching., Eur J Immunol 2025 Aug; 55(8): e70036.
2025
Di Meo F, Memory matters: T cell phenotype shapes CAR T cell fate., Mol Ther 2025 Jul; 33(7): 2975-2976.
2025
Gabinaud E, Hannouche L, Veneziano-Broccia M, Van Agthoven J, Suffit J, Maurizio J, Potier D, Payet-..., FLI1 and GATA1 govern TLN1 transcription: new insights into FLI1-related platelet disorders., Haematologica 2025 Jul; 110(7): 1584-1595.
2025
Pellegrini JM, Keriel A, Gorvel L, Hanniffy S, Arce-Gorvel V, Bosilkovski M, Solera J, Méresse S, M..., SLAMF7 and SLAMF8 receptors shape human plasmacytoid dendritic cell responses to intracellular bacteria., J Clin Invest 2025 Apr; 135(8): .
2025
Mauvais FX, Hamel Y, Silvin A, Mulder K, Hildner K, Akyol R, Dalod M, Koumantou D, Saveanu L, Garfa ..., Metallophilic marginal zone macrophages cross-prime CD8+ T cell-mediated protective immunity against blood-borne tumors., Immunity 2025 Apr; 58(4): 843-860.e20.
2025
Piccioni M, Di Meo F, Valentino A, Campani V, Arigoni M, Tanori M, Mancuso M, Cuciniello R, Tomasett..., miRNA-503 inhibition exerts anticancer effects and reduces tumor growth in mesothelioma., J Exp Clin Cancer Res 2025 Feb; 44(1): 65.
2025
Pellegrini JM, González-Espinoza G, Shayan RR, Hysenaj L, Rouma T, Arce-Gorvel V, Lelouard H, Popof..., Brucella abortus impairs T lymphocyte responsiveness by mobilizing IL-1RA-secreting omental neutrophils., Nat Commun 2025 Jan; 16(1): 862.
2025
Garrec C, Arrindell J, Andrieu J, Desnues B, Mege JL, Omar Osman I, Devaux C, Preferential apical infection of Caco-2 intestinal cell monolayers by SARS-CoV-2 is associated with damage to cellular barrier integrity: Implications for the pathophysiology of COVID-19., PLoS One 2025 ; 20(2): e0313068.
2024
Koumantou D, Adiko AC, Bourdely P, Nugue M, Boedec E, El-Benna J, Monteiro R, Saveanu C, Laffargue M..., Specific Requirement of the p84/p110γ Complex of PI3Kγ for Antibody-Activated, Inducible Cross-Presentation in Murine Type 2 DCs., Adv Sci (Weinh) 2024 Nov; 11(44): e2401179.
2024
Di Meo F, Kale B, Koomen JM, Perna F, Mapping the cancer surface proteome in search of target antigens for immunotherapy., Mol Ther 2024 Sep; 32(9): 2892-2904.
2024
Ngo C, Garrec C, Tomasello E, Dalod M, The role of plasmacytoid dendritic cells (pDCs) in immunity during viral infections and beyond., Cell Mol Immunol 2024 Sep; 21(9): 1008-1035.
2024
Vu Manh TP, Gouin C, De Wolf J, Jouneau L, Pascale F, Bevilacqua C, Ar Gouilh M, Da Costa B, Chevali..., SARS-CoV2 infection in whole lung primarily targets macrophages that display subset-specific responses., Cell Mol Life Sci 2024 Aug; 81(1): 351.
2024
Clemence Ngo, Khalissa Rahmani, Michael Valente, Nils Collinet, Gilles Bessou, Manon Fabregue, Sarah..., Plasmacytoid dendritic cells are dispensable or detrimental in murine systemic or respiratory viral infections, 2024.
2024
López L, Morosi LG, La Terza F, Bourdely P, Rospo G, Amadio R, Piperno GM, Russo V, Volponi C, Vodr..., Dendritic cell-targeted therapy expands CD8 T cell responses to bona-fide neoantigens in lung tumors., Nat Commun 2024 Mar; 15(1): 2280.
2024
Minutti CM, Piot C, Pereira da Costa M, Chakravarty P, Rogers N, Huerga Encabo H, Cardoso A, Loong J..., Distinct ontogenetic lineages dictate cDC2 heterogeneity., Nat Immunol 2024 Mar; 25(3): 448-461.
2023
Kandalla PK, Subburayalu J, Cocita C, de Laval B, Tomasello E, Iacono J, Nitsche J, Canali MM, Catho..., M-CSF directs myeloid and NK cell differentiation to protect from CMV after hematopoietic cell transplantation., EMBO Mol Med 2023 Nov; 15(11): e17694.
2023
Lutz MB, Ali S, Audiger C, Autenrieth SE, Berod L, Bigley V, Cyran L, Dalod M, Dörrie J, Dudziak D,..., Guidelines for mouse and human DC generation., Eur J Immunol 2023 Nov; 53(11): e2249816.
2023
Bigot T, Gabinaud E, Hannouche L, Sbarra V, Andersen E, Bastelica D, Falaise C, Bernot D, Ibrahim-Ko..., Single-cell analysis of megakaryopoiesis in peripheral CD34+ cells: insights into ETV6-related thrombocytopenia., J Thromb Haemost 2023 Sep; 21(9): 2528-2544.
2023
Di Meo F, Iyer A, Akama K, Cheng R, Yu C, Cesarano A, Kurihara N, Tenshin H, Aljoufi A, Marino S, So..., A target discovery pipeline identified ILT3 as a target for immunotherapy of multiple myeloma., Cell Rep Med 2023 Jul; 4(7): 101110.
2023
Brochet P, Mouren JC, Hannouche L, Lopez F, Ballester B, Cunha-Neto E, Spinelli L, Chevillard C, ChagasDB: 80 years of publicly available data on the molecular host response to Trypanosoma cruzi infection in a single database., Database (Oxford) 2023 May; 2023(): .
2023
Cuciniello R, Di Meo F, Filosa S, Crispi S, Bergamo P, The Antioxidant Effect of Dietary Bioactives Arises from the Interplay between the Physiology of the Host and the Gut Microbiota: Involvement of Short-Chain Fatty Acids., Antioxidants (Basel) 2023 May; 12(5): .
2023
Reizis B, Idoyaga J, Dalod M, Barrat F, Naik S, Trinchieri G, Tussiwand R, Cella M, Colonna M, Reclassification of plasmacytoid dendritic cells as innate lymphocytes is premature., Nat Rev Immunol 2023 May; 23(5): 336-337.
2023
Valente M, Collinet N, Vu Manh TP, Popoff D, Rahmani K, Naciri K, Bessou G, Rua R, Gil L, Mionnet C,..., Novel mouse models based on intersectional genetics to identify and characterize plasmacytoid dendritic cells., Nat Immunol 2023 Apr; 24(4): 714-728.
2023
Gainullina A, Mogilenko DA, Huang LH, Todorov H, Narang V, Kim KW, Yng LS, Kent A, Jia B, Seddu K, K..., Network analysis of large-scale ImmGen and Tabula Muris datasets highlights metabolic diversity of tissue mononuclear phagocytes., Cell Rep 2023 Feb; 42(2): 112046.
2023
Jneid B, Bochnakian A, Hoffmann C, Delisle F, Djacoto E, Sirven P, Denizeau J, Sedlik C, Gerber-Ferd..., Selective STING stimulation in dendritic cells primes antitumor T cell responses., Sci Immunol 2023 Jan; 8(79): eabn6612.
2023
Cuciniello R, Di Meo F, Sulli M, Demurtas OC, Tanori M, Mancuso M, Villano C, Aversano R, Carputo D,..., Aglianico Grape Seed Semi-Polar Extract Exerts Anticancer Effects by Modulating MDM2 Expression and Metabolic Pathways., Cells 2023 Jan; 12(2): .
2023
Gouin C, Vu Manh TP, Jouneau L, Bevilacqua C, De Wolf J, Glorion M, Hannouche L, Urien C, Estephan J..., Cell type- and time-dependent biological responses in ex vivo perfused lung grafts., Front Immunol 2023 ; 14(): 1142228.
2023
Vu Manh TP, Dalod M, Dudziak D, Editorial: Multiomics and multiparametric analyses to characterize myeloid cell subsets., Front Immunol 2023 ; 14(): 1292400.
2023
Cheema AS, Duan K, Dalod M, Vu Manh TP, Harnessing Single-Cell RNA Sequencing to Identify Dendritic Cell Types, Characterize Their Biological States, and Infer Their Activation Trajectory., Methods Mol Biol 2023 ; 2618(): 319-373.
2023
Luo X, Balan S, Arnold-Schrauf C, Dalod M, In Vitro Generation of Human Cross-Presenting Type 1 Conventional Dendritic Cells (cDC1s) and Plasmacytoid Dendritic Cells (pDCs)., Methods Mol Biol 2023 ; 2618(): 133-145.
2023
Nguyen HP, Le AQ, Liu E, Cesarano A, DiMeo F, Perna F, Kapur R, Walker BA, Tran NT, Protein arginine methyltransferase 1 is a therapeutic vulnerability in multiple myeloma., Front Immunol 2023 ; 14(): 1239614.
2023
Nguyen HP, Le AQ, Liu E, Cesarano A, DiMeo F, Perna F, Kapur R, Walker BA, Tran NT, Corrigendum: Protein arginine methyltransferase 1 is a therapeutic vulnerability in multiple myeloma., Front Immunol 2023 ; 14(): 1334733.
2022
Michael Valente, Nils Collinet, Thien-Phong Vu Manh, Karima Naciri, Gilles Bessou, Laurine Gil, Pier..., A novel mouse model based on intersectional genetics enables unambiguous in vivo discrimination between plasmacytoid and other dendritic cells and their comparative characterization, 2022.
2022
Dalod M, Scheu S, Dendritic cell functions in vivo: A user’s guide to current and next- generation mutant mouse models., Eur J Immunol 2022 Nov; 52(11): 1712-1749.
2022
Di Meo F, Esposito R, Cuciniello R, Favale G, Arenga M, Ruocco N, Nuzzo G, Fontana A, Filosa S, Cris..., Organic extract of Geodia cydonium induces cell cycle block in human mesothelioma cells., Oncol Lett 2022 Aug; 24(2): 286.
2022
Joaquin Miguel Pellegrini, Jean-Pierre Gorvel, Sylvie Mémet, Immunosuppressive Mechanisms in Brucellosis in Light of Chronic Bacterial Diseases, <i>Microorganisms</i>, 2022, 10, <a target="_blank" href="https://dx.doi.org/10.3390/microorganisms10071260">⟨10.3390/microorganisms10071260⟩</a>.
2022
Séverin Coléon, Aurélie Wiedemann, Mathieu Surénaud, Christine Lacabaratz, Sophie Hue, Mélanie ..., Design, immunogenicity, and efficacy of a pan-sarbecovirus dendritic-cell targeting vaccine, <i>EBioMedicine</i>, 2022, 80, pp.104062. <a target="_blank" href="https://dx.doi.org/10.1016/j.ebiom.2022.104062">⟨10.1016/j.ebiom.2022.104062⟩</a>.
2022
Julie Rebejac, Elisa Eme-Scolan, Laurie Arnaud Paroutaud, Sarah Kharbouche, Matei Teleman, Lionel Sp..., Meningeal macrophages protect against viral neuroinfection, <i>Immunity</i>, 2022, 55 (11), pp.2103-2117.e10. <a target="_blank" href="https://dx.doi.org/10.1016/j.immuni.2022.10.005">⟨10.1016/j.immuni.2022.10.005⟩</a>.
2022
Osman IO, Garrec C, de Souza GAP, Zarubica A, Belhaouari DB, Baudoin JP, Lepidi H, Mege JL, Malissen..., Control of CDH1/E-Cadherin Gene Expression and Release of a Soluble Form of E-Cadherin in SARS-CoV-2 Infected Caco-2 Intestinal Cells: Physiopathological Consequences for the Intestinal Forms of COVID-19., Front Cell Infect Microbiol 2022 ; 12(): 798767.
2021
Ghilas S, Ambrosini M, Cancel JC, Brousse C, Massé M, Lelouard H, Dalod M, Crozat K, Natural killer cells and dendritic epidermal γδ T cells orchestrate type 1 conventional DC spatiotemporal repositioning toward CD8+ T cells., iScience 2021 Sep; 24(9): 103059.
2021
Vestre K, Persiconi I, Borg Distefano M, Mensali N, Guadagno NA, Bretou M, Wälchli S, Arnold-Schrau..., Rab7b regulates dendritic cell migration by linking lysosomes to the actomyosin cytoskeleton., J Cell Sci 2021 Sep; 134(18): .
2021
Ghislat G, Cheema AS, Baudoin E, Verthuy C, Ballester PJ, Crozat K, Attaf N, Dong C, Milpied P, Mali..., NF-κB-dependent IRF1 activation programs cDC1 dendritic cells to drive antitumor immunity., Sci Immunol 2021 Jul; 6(61): .
2021
Singh RK, Malosse C, Davies J, Malissen B, Kochba E, Levin Y, Birchall JC, Coulman SA, Mous J, McAte..., Using gold nanoparticles for enhanced intradermal delivery of poorly soluble auto-antigenic peptides., Nanomedicine 2021 Feb; 32(): 102321.
2021
Gabriela González-Espinoza, Vilma Arce-Gorvel, Sylvie Mémet, Jean-Pierre Gorvel, Brucella: Reservoirs and Niches in Animals and Humans, <i>Pathogens</i>, 2021, 10 (2), pp.186. <a target="_blank" href="https://dx.doi.org/10.3390/pathogens10020186">⟨10.3390/pathogens10020186⟩</a>.
2021
Mattiuz R, Brousse C, Ambrosini M, Cancel JC, Bessou G, Mussard J, Sanlaville A, Caux C, Bendriss-Ve..., Type 1 conventional dendritic cells and interferons are required for spontaneous CD4+ and CD8+ T-cell protective responses to breast cancer., Clin Transl Immunology 2021 ; 10(7): e1305.
2020
Abbas A, Vu Manh TP, Valente M, Collinet N, Attaf N, Dong C, Naciri K, Chelbi R, Brelurut G, Cervera..., The activation trajectory of plasmacytoid dendritic cells in vivo during a viral infection., Nat Immunol 2020 Sep; 21(9): 983-997.
2020
Stephanie Vargas Aguilar, Oscar Aguilar, Rhys Allan, El Ad David Amir, Veronique Angeli, Maxim N. Ar..., ImmGen at 15, <i>Nature Immunology</i>, 2020, 21 (7), pp.700-703. <a target="_blank" href="https://dx.doi.org/10.1038/s41590-020-0687-4">⟨10.1038/s41590-020-0687-4⟩</a>.
2020
Luo XL, Dalod M, The quest for faithful in vitro models of human dendritic cells types., Mol Immunol 2020 Jul; 123(): 40-59.
2020
Hubert M, Gobbini E, Couillault C, Manh TV, Doffin AC, Berthet J, Rodriguez C, Ollion V, Kielbassa J..., IFN-III is selectively produced by cDC1 and predicts good clinical outcome in breast cancer., Sci Immunol 2020 Apr; 5(46): .
2020
Wagner C, Bonnardel J, Da Silva C, Spinelli L, Portilla CA, Tomas J, Lagier M, Chasson L, Masse M, D..., Differentiation Paths of Peyer’s Patch LysoDCs Are Linked to Sampling Site Positioning, Migration, and T Cell Priming., Cell Rep 2020 Apr; 31(1): 107479.
2020
Di Meo F, Valentino A, Petillo O, Peluso G, Filosa S, Crispi S, Bioactive Polyphenols and Neuromodulation: Molecular Mechanisms in Neurodegeneration., Int J Mol Sci 2020 Apr; 21(7): .
2020
Etzerodt A, Moulin M, Doktor TK, Delfini M, Mossadegh-Keller N, Bajenoff M, Sieweke MH, Moestrup SK,..., Tissue-resident macrophages in omentum promote metastatic spread of ovarian cancer., J Exp Med 2020 Apr; 217(4): .
2020
Clara Degos, Lisiena Hysenaj, Gabriela Gonzalez‐espinoza, Vilma Arce‐gorvel, Aurélie Gagnaire, ..., Omp25‐dependent engagement of SLAMF1 by Brucella abortus in dendritic cells limits acute inflammation and favours bacterial persistence in vivo, <i>Cellular Microbiology</i>, 2020, 22 (4), <a target="_blank" href="https://dx.doi.org/10.1111/cmi.13164">⟨10.1111/cmi.13164⟩</a>.
2020
Di Meo F, Cuciniello R, Margarucci S, Bergamo P, Petillo O, Peluso G, Filosa S, Crispi S, Ginkgo biloba Prevents Oxidative Stress-Induced Apoptosis Blocking p53 Activation in Neuroblastoma Cells., Antioxidants (Basel) 2020 Mar; 9(4): .
2020
Heger L, Hofer TP, Bigley V, de Vries IJM, Dalod M, Dudziak D, Ziegler-Heitbrock L, Subsets of CD1c+ DCs: Dendritic Cell Versus Monocyte Lineage., Front Immunol 2020 ; 11(): 559166.
2020
Veronique Della-Valle, Damien Roos-Weil, Laurianne Scourzic, Enguerran Mouly, Zakia Aid, Walaa Darwi..., Nfkbie-deficiency leads to increased susceptibility to develop B-cell lymphoproliferative disorders in aged mice, <i>Blood Cancer Journal</i>, 2020, 10 (3), pp.38. <a target="_blank" href="https://dx.doi.org/10.1038/s41408-020-0305-6">⟨10.1038/s41408-020-0305-6⟩</a>.
2019
Marin E, Bouchet-Delbos L, Renoult O, Louvet C, Nerriere-Daguin V, Managh AJ, Even A, Giraud M, Vu M..., Human Tolerogenic Dendritic Cells Regulate Immune Responses through Lactate Synthesis., Cell Metab 2019 Dec; 30(6): 1075-1090.e8.
2019
Swayden M, Alzeeb G, Masoud R, Berthois Y, Audebert S, Camoin L, Hannouche L, Vachon H, Gayet O, Big..., PML hyposumoylation is responsible for the resistance of pancreatic cancer., FASEB J 2019 Nov; 33(11): 12447-12463.
2019
Di Meo F, Margarucci S, Galderisi U, Crispi S, Peluso G, Curcumin, Gut Microbiota, and Neuroprotection., Nutrients 2019 Oct; 11(10): .
2019
Di Meo F, Filosa S, Madonna M, Giello G, Di Pardo A, Maglione V, Baldi A, Crispi S, Curcumin C3 complex®/Bioperine® has antineoplastic activity in mesothelioma: an in vitro and in vivo analysis., J Exp Clin Cancer Res 2019 Aug; 38(1): 360.
2019
Goossens P, Rodriguez-Vita J, Etzerodt A, Masse M, Rastoin O, Gouirand V, Ulas T, Papantonopoulou O,..., Membrane Cholesterol Efflux Drives Tumor-Associated Macrophage Reprogramming and Tumor Progression., Cell Metab 2019 Jun; 29(6): 1376-1389.e4.
2019
Balzano M, De Grandis M, Vu Manh TP, Chasson L, Bardin F, Farina A, Sergé A, Bidaut G, Charbord P, ..., Nidogen-1 Contributes to the Interaction Network Involved in Pro-B Cell Retention in the Peri-sinusoidal Hematopoietic Stem Cell Niche., Cell Rep 2019 Mar; 26(12): 3257-3271.e8.
2019
Dalod M, Brooks A, Broadening our knowledge of the differences between HIV-2 and HIV-1 innate sensing: HIV-2 infected cells selectively express B7-H6 and engage NKp30 on natural killer cells., AIDS 2019 Jan; 33(1): 153-154.
2019
Cancel JC, Crozat K, Dalod M, Mattiuz R, Are Conventional Type 1 Dendritic Cells Critical for Protective Antitumor Immunity and How?, Front Immunol 2019 ; 10(): 9.
2018
Filosa S, Di Meo F, Crispi S, Polyphenols-gut microbiota interplay and brain neuromodulation., Neural Regen Res 2018 Dec; 13(12): 2055-2059.
2018
Tomasello E, Naciri K, Chelbi R, Bessou G, Fries A, Gressier E, Abbas A, Pollet E, Pierre P, Lawrenc..., Molecular dissection of plasmacytoid dendritic cell activation in vivo during a viral infection., EMBO J 2018 Oct; 37(19): .
2018
Balan S, Arnold-Schrauf C, Abbas A, Couespel N, Savoret J, Imperatore F, Villani AC, Vu Manh TP, Bha..., Large-Scale Human Dendritic Cell Differentiation Revealing Notch-Dependent Lineage Bifurcation and Heterogeneity., Cell Rep 2018 Aug; 24(7): 1902-1915.e6.
2018
Baranska A, Shawket A, Jouve M, Baratin M, Malosse C, Voluzan O, Vu Manh TP, Fiore F, Bajénoff M, B..., Unveiling skin macrophage dynamics explains both tattoo persistence and strenuous removal., J Exp Med 2018 Apr; 215(4): 1115-1133.
2018
Serroukh Y, Gu-Trantien C, Hooshiar Kashani B, Defrance M, Vu Manh TP, Azouz A, Detavernier A, Hoyoi..., The transcription factors Runx3 and ThPOK cross-regulate acquisition of cytotoxic function by human Th1 lymphocytes., Elife 2018 Feb; 7(): .
2018
Mattiuz R, Wohn C, Ghilas S, Ambrosini M, Alexandre YO, Sanchez C, Fries A, Vu Manh TP, Malissen B, ..., Novel Cre-Expressing Mouse Strains Permitting to Selectively Track and Edit Type 1 Conventional Dendritic Cells Facilitate Disentangling Their Complexity in vivo., Front Immunol 2018 ; 9(): 2805.
2018
Di Meo F, Donato S, Di Pardo A, Maglione V, Filosa S, Crispi S, New Therapeutic Drugs from Bioactive Natural Molecules: The Role of Gut Microbiota Metabolism in Neurodegenerative Diseases., Curr Drug Metab 2018 ; 19(6): 478-489.
2018
Yun Zhao, Sean Hanniffy, Vilma Arce-Gorvel, Raquel Conde-Alvarez, Sangkon Oh, Ignacio Moriyon, Sylvi..., Immunomodulatory properties of Brucella melitensis lipopolysaccharide determinants on mouse dendritic cells in vitro and in vivo, <i>Virulence</i>, 2018, 9 (1), pp.465-479. <a target="_blank" href="https://dx.doi.org/10.1080/21505594.2017.1386831">⟨10.1080/21505594.2017.1386831⟩</a>.
2017
Bonnardel J, Da Silva C, Wagner C, Bonifay R, Chasson L, Masse M, Pollet E, Dalod M, Gorvel JP, Lelo..., Distribution, location, and transcriptional profile of Peyer’s patch conventional DC subsets at steady state and under TLR7 ligand stimulation., Mucosal Immunol 2017 Nov; 10(6): 1412-1430.
2017
Draheim M, Wlodarczyk MF, Crozat K, Saliou JM, Alayi TD, Tomavo S, Hassan A, Salvioni A, Demarta-Gat..., Profiling MHC II immunopeptidome of blood-stage malaria reveals that cDC1 control the functionality of parasite-specific CD4 T cells., EMBO Mol Med 2017 Nov; 9(11): 1605-1621.
2017
Schridde A, Bain CC, Mayer JU, Montgomery J, Pollet E, Denecke B, Milling SWF, Jenkins SJ, Dalod M, ..., Tissue-specific differentiation of colonic macrophages requires TGFβ receptor-mediated signaling., Mucosal Immunol 2017 Nov; 10(6): 1387-1399.
2017
Alhaj Hussen K, Vu Manh TP, Guimiot F, Nelson E, Chabaane E, Delord M, Barbier M, Berthault C, Dulph..., Molecular and Functional Characterization of Lymphoid Progenitor Subsets Reveals a Bipartite Architecture of Human Lymphopoiesis., Immunity 2017 Oct; 47(4): 680-696.e8.
2017
, TGFβR signalling controls CD103+CD11b+ dendritic cell development in the intestine., Nat Commun 2017 Sep; 8(1): 620.
2017
Baratin M, Simon L, Jorquera A, Ghigo C, Dembele D, Nowak J, Gentek R, Wienert S, Klauschen F, Malis..., T Cell Zone Resident Macrophages Silently Dispose of Apoptotic Cells in the Lymph Node., Immunity 2017 Aug; 47(2): 349-362.e5.
2017
Deloizy C, Fossum E, Barnier-Quer C, Urien C, Chrun T, Duval A, Codjovi M, Bouguyon E, Maisonnasse P..., The anti-influenza M2e antibody response is promoted by XCR1 targeting in pig skin., Sci Rep 2017 Aug; 7(1): 7639.
2017
Silvin A, Yu CI, Lahaye X, Imperatore F, Brault JB, Cardinaud S, Becker C, Kwan WH, Conrad C, Maurin..., Constitutive resistance to viral infection in human CD141+ dendritic cells., Sci Immunol 2017 Jul; 2(13): .
2017
Gudjonsson A, Lysén A, Balan S, Sundvold-Gjerstad V, Arnold-Schrauf C, Richter L, Bækkevold ES, Da..., Targeting Influenza Virus Hemagglutinin to Xcr1+ Dendritic Cells in the Absence of Receptor-Mediated Endocytosis Enhances Protective Antibody Responses., J Immunol 2017 Apr; 198(7): 2785-2795.
2017
Dalet A, Argüello RJ, Combes A, Spinelli L, Jaeger S, Fallet M, Vu Manh TP, Mendes A, Perego J, Rev..., Protein synthesis inhibition and GADD34 control IFN-β heterogeneous expression in response to dsRNA., EMBO J 2017 Mar; 36(6): 761-782.
2017
Troegeler A, Mercier I, Cougoule C, Pietretti D, Colom A, Duval C, Vu Manh TP, Capilla F, Poincloux ..., C-type lectin receptor DCIR modulates immunity to tuberculosis by sustaining type I interferon signaling in dendritic cells., Proc Natl Acad Sci U S A 2017 Jan; 114(4): E540-E549.
2017
Bouladoux N, Hennequin C, Malosse C, Malissen B, Belkaid Y, Henri S, Hapten-Specific T Cell-Mediated Skin Inflammation: Flow Cytometry Analysis of Mouse Skin Inflammatory Infiltrate., Methods Mol Biol 2017 ; 1559(): 21-36.
2016
Deloizy C, Bouguyon E, Fossum E, Sebo P, Osicka R, Bole A, Pierres M, Biacchesi S, Dalod M, Bogen B,..., Expanding the tools for identifying mononuclear phagocyte subsets in swine: Reagents to porcine CD11c and XCR1., Dev Comp Immunol 2016 Dec; 65(): 31-40.
2016
Sichien D, Scott CL, Martens L, Vanderkerken M, Van Gassen S, Plantinga M, Joeris T, De Prijck S, Va..., IRF8 Transcription Factor Controls Survival and Function of Terminally Differentiated Conventional and Plasmacytoid Dendritic Cells, Respectively., Immunity 2016 Sep; 45(3): 626-640.
2016
Worah K, Mathan TSM, Vu Manh TP, Keerthikumar S, Schreibelt G, Tel J, Duiveman-de Boer T, Sköld AE,..., Proteomics of Human Dendritic Cell Subsets Reveals Subset-Specific Surface Markers and Differential Inflammasome Function., Cell Rep 2016 Sep; 16(11): 2953-2966.
2016
Ardouin L, Luche H, Chelbi R, Carpentier S, Shawket A, Montanana Sanchis F, Santa Maria C, Grenot P,..., Broad and Largely Concordant Molecular Changes Characterize Tolerogenic and Immunogenic Dendritic Cell Maturation in Thymus and Periphery., Immunity 2016 Aug; 45(2): 305-18.
2016
Carpentier S, Vu Manh TP, Chelbi R, Henri S, Malissen B, Haniffa M, Ginhoux F, Dalod M, Comparative genomics analysis of mononuclear phagocyte subsets confirms homology between lymphoid tissue-resident and dermal XCR1(+) DCs in mouse and human and distinguishes them from Langerhans cells., J Immunol Methods 2016 May; 432(): 35-49.
2016
Alexandre YO, Ghilas S, Sanchez C, Le Bon A, Crozat K, Dalod M, XCR1+ dendritic cells promote memory CD8+ T cell recall upon secondary infections with Listeria monocytogenes or certain viruses., J Exp Med 2016 Jan; 213(1): 75-92.
2016
Malosse C, Henri S, Isolation of Mouse Dendritic Cell Subsets and Macrophages from the Skin., Methods Mol Biol 2016 ; 1423(): 129-37.
2016
Balan S, Dalod M, In Vitro Generation of Human XCR1(+) Dendritic Cells from CD34(+) Hematopoietic Progenitors., Methods Mol Biol 2016 ; 1423(): 19-37.
2016
Vu Manh TP, Dalod M, Characterization of Dendritic Cell Subsets Through Gene Expression Analysis., Methods Mol Biol 2016 ; 1423(): 211-43.
2015
Terhorst D, Chelbi R, Wohn C, Malosse C, Tamoutounour S, Jorquera A, Bajenoff M, Dalod M, Malissen B..., Dynamics and Transcriptomics of Skin Dendritic Cells and Macrophages in an Imiquimod-Induced, Biphasic Mouse Model of Psoriasis., J Immunol 2015 Nov; 195(10): 4953-61.
2015
Liu Y, Mémet S, Saban R, Kong X, Aprikian P, Sokurenko E, Sun TT, Wu XR, Dual ligand/receptor interactions activate urothelial defenses against uropathogenic E. coli., Sci Rep 2015 Nov; 5(): 16234.
2015
Spinelli L, Carpentier S, Montañana Sanchis F, Dalod M, Vu Manh TP, BubbleGUM: automatic extraction of phenotype molecular signatures and comprehensive visualization of multiple Gene Set Enrichment Analyses., BMC Genomics 2015 Oct; 16(): 814.
2015
Gentili M, Kowal J, Tkach M, Satoh T, Lahaye X, Conrad C, Boyron M, Lombard B, Durand S, Kroemer G, ..., Transmission of innate immune signaling by packaging of cGAMP in viral particles., Science 2015 Sep; 349(6253): 1232-6.
2015
Terhorst D, Fossum E, Baranska A, Tamoutounour S, Malosse C, Garbani M, Braun R, Lechat E, Crameri R..., Laser-assisted intradermal delivery of adjuvant-free vaccines targeting XCR1+ dendritic cells induces potent antitumoral responses., J Immunol 2015 Jun; 194(12): 5895-902.
2015
Cocita C, Guiton R, Bessou G, Chasson L, Boyron M, Crozat K, Dalod M, Natural Killer Cell Sensing of Infected Cells Compensates for MyD88 Deficiency but Not IFN-I Activity in Resistance to Mouse Cytomegalovirus., PLoS Pathog 2015 May; 11(5): e1004897.
2015
Baratin M, Foray C, Demaria O, Habbeddine M, Pollet E, Maurizio J, Verthuy C, Davanture S, Azukizawa..., Homeostatic NF-κB Signaling in Steady-State Migratory Dendritic Cells Regulates Immune Homeostasis and Tolerance., Immunity 2015 Apr; 42(4): 627-39.
2015
Vu Manh TP, Bertho N, Hosmalin A, Schwartz-Cornil I, Dalod M, Investigating Evolutionary Conservation of Dendritic Cell Subset Identity and Functions., Front Immunol 2015 ; 6(): 260.
2015
Vu Manh TP, Elhmouzi-Younes J, Urien C, Ruscanu S, Jouneau L, Bourge M, Moroldo M, Foucras G, Salmon..., Defining Mononuclear Phagocyte Subset Homology Across Several Distant Warm-Blooded Vertebrates Through Comparative Transcriptomics., Front Immunol 2015 ; 6(): 299.
2014
Marquet F, Vu Manh TP, Maisonnasse P, Elhmouzi-Younes J, Urien C, Bouguyon E, Jouneau L, Bourge M, S..., Pig skin includes dendritic cell subsets transcriptomically related to human CD1a and CD14 dendritic cells presenting different migrating behaviors and T cell activation capacities., J Immunol 2014 Dec; 193(12): 5883-93.
2014
Balan S, Ollion V, Colletti N, Chelbi R, Montanana-Sanchis F, Liu H, Vu Manh TP, Sanchez C, Savoret ..., Human XCR1+ dendritic cells derived in vitro from CD34+ progenitors closely resemble blood dendritic cells, including their adjuvant responsiveness, contrary to monocyte-derived dendritic cells., J Immunol 2014 Aug; 193(4): 1622-35.
2014
Javier Celis-Gutierrez, Marilyn Boyron, Thierry Walzer, Pier Paolo Pandolfi, Stipan Jonjić, Daniel ..., Dok1 and Dok2 proteins regulate natural killer cell development and function, <i>EMBO Journal</i>, 2014, 33 (17), pp.1928-40. <a target="_blank" href="https://dx.doi.org/10.15252/embj.201387404">⟨10.15252/embj.201387404⟩</a>.
2014
Dalod M, Chelbi R, Malissen B, Lawrence T, Dendritic cell maturation: functional specialization through signaling specificity and transcriptional programming., EMBO J 2014 May; 33(10): 1104-16.
2014
Dutertre CA, Jourdain JP, Rancez M, Amraoui S, Fossum E, Bogen B, Sanchez C, Couëdel-Courteille A, ..., TLR3-responsive, XCR1+, CD141(BDCA-3)+/CD8α+-equivalent dendritic cells uncovered in healthy and simian immunodeficiency virus-infected rhesus macaques., J Immunol 2014 May; 192(10): 4697-708.
2014
Vu Manh TP, Marty H, Sibille P, Le Vern Y, Kaspers B, Dalod M, Schwartz-Cornil I, Quéré P, Existence of conventional dendritic cells in Gallus gallus revealed by comparative gene expression profiling., J Immunol 2014 May; 192(10): 4510-7.
2014
Tomasello E, Pollet E, Vu Manh TP, Uzé G, Dalod M, Harnessing Mechanistic Knowledge on Beneficial Versus Deleterious IFN-I Effects to Design Innovative Immunotherapies Targeting Cytokine Activity to Specific Cell Types., Front Immunol 2014 ; 5(): 526.
2014
Alexandre YO, Cocita CD, Ghilas S, Dalod M, Deciphering the role of DC subsets in MCMV infection to better understand immune protection against viral infections., Front Microbiol 2014 ; 5(): 378.
2013
Tamoutounour S, Guilliams M, Montanana Sanchis F, Liu H, Terhorst D, Malosse C, Pollet E, Ardouin L,..., Origins and functional specialization of macrophages and of conventional and monocyte-derived dendritic cells in mouse skin., Immunity 2013 Nov; 39(5): 925-38.
2013
Ruscanu S, Jouneau L, Urien C, Bourge M, Lecardonnel J, Moroldo M, Loup B, Dalod M, Elhmouzi-Younes ..., Dendritic cell subtypes from lymph nodes and blood show contrasted gene expression programs upon Bluetongue virus infection., J Virol 2013 Aug; 87(16): 9333-43.
2013
Manh TP, Alexandre Y, Baranek T, Crozat K, Dalod M, Plasmacytoid, conventional, and monocyte-derived dendritic cells undergo a profound and convergent genetic reprogramming during their maturation., Eur J Immunol 2013 Jul; 43(7): 1706-15.
2013
Stefan Jordan, Zsolt Ruzsics, Maja Mitrović, Thomas Baranek, Jurica Arapović, Astrid Krmpotić, Er..., Natural killer cells are required for extramedullary hematopoiesis following murine cytomegalovirus infection., <i>Cell Host and Microbe</i>, 2013, 13 (5), pp.535-45. <a target="_blank" href="https://dx.doi.org/10.1016/j.chom.2013.04.007">⟨10.1016/j.chom.2013.04.007⟩</a>.
2013
Mancino A, Habbeddine M, Johnson E, Luron L, Bebien M, Memet S, Fong C, Bajenoff M, Wu X, Karin M, C..., I kappa B kinase alpha (IKKα) activity is required for functional maturation of dendritic cells and acquired immunity to infection., EMBO J 2013 Mar; 32(6): 816-28.
2013
Tomasello E, Bedoui S, Intestinal innate immune cells in gut homeostasis and immunosurveillance., Immunol Cell Biol 2013 Mar; 91(3): 201-3.
2013
Segura E, Touzot M, Bohineust A, Cappuccio A, Chiocchia G, Hosmalin A, Dalod M, Soumelis V, Amigoren..., Human inflammatory dendritic cells induce Th17 cell differentiation., Immunity 2013 Feb; 38(2): 336-48.
2012
Baranek T, Manh TP, Alexandre Y, Maqbool MA, Cabeza JZ, Tomasello E, Crozat K, Bessou G, Zucchini N,..., Differential responses of immune cells to type I interferon contribute to host resistance to viral infection., Cell Host Microbe 2012 Oct; 12(4): 571-84.
2012
Dalod M, Professional cross-presenting CD8α-type CD141(hi) dendritic cells: we have got you in our skin!, Immunity 2012 Jul; 37(1): 3-5.
2012
Latil M, Rocheteau P, Châtre L, Sanulli S, Mémet S, Ricchetti M, Tajbakhsh S, Chrétien F, Skeletal muscle stem cells adopt a dormant cell state post mortem and retain regenerative capacity., Nat Commun 2012 Jun; 3(): 903.
2012
Mariem Ben-Abdallah, Aude Sturny-Leclère, Patrick Avé, Anne Louise, Frederique Moyrand, Falk Weih,..., Fungal-Induced Cell Cycle Impairment, Chromosome Instability and Apoptosis via Differential Activation of NF-κB, <i>PLoS Pathogens</i>, 2012, 8 (3), pp.e1002555. <a target="_blank" href="https://dx.doi.org/10.1371/journal.ppat.1002555">⟨10.1371/journal.ppat.1002555⟩</a>.
2012
Tomasello E, Yessaad N, Gregoire E, Hudspeth K, Luci C, Mavilio D, Hardwigsen J, Vivier E, Mapping of NKp46(+) Cells in Healthy Human Lymphoid and Non-Lymphoid Tissues., Front Immunol 2012 ; 3(): 344.
2012
Chiossone L, Audonnet S, Chetaille B, Chasson L, Farnarier C, Berda-Haddad Y, Jordan S, Koszinowski ..., Protection from inflammatory organ damage in a murine model of hemophagocytic lymphohistiocytosis using treatment with IL-18 binding protein., Front Immunol 2012 ; 3(): 239.
2011
Narni-Mancinelli E, Soudja SM, Crozat K, Dalod M, Gounon P, Geissmann F, Lauvau G, Inflammatory monocytes and neutrophils are licensed to kill during memory responses in vivo., PLoS Pathog 2011 Dec; 7(12): e1002457.
2011
Emilie Narni-Mancinelli, Julie Chaix, Aurore Fenis, Yann M Kerdiles, Nadia Yessaad, Ana Reynders, Cl..., Fate mapping analysis of lymphoid cells expressing the NKp46 cell surface receptor., <i>Proceedings of the National Academy of Sciences of the United States of America</i>, 2011, 108 (45), pp.18324-9. <a target="_blank" href="https://dx.doi.org/10.1073/pnas.1112064108">⟨10.1073/pnas.1112064108⟩</a>.
2011
Crozat K, Tamoutounour S, Vu Manh TP, Fossum E, Luche H, Ardouin L, Guilliams M, Azukizawa H, Bogen ..., Cutting edge: expression of XCR1 defines mouse lymphoid-tissue resident and migratory dendritic cells of the CD8α+ type., J Immunol 2011 Nov; 187(9): 4411-5.
2011
Defays A, David A, de Gassart A, De Angelis Rigotti F, Wenger T, Camossetto V, Brousset P, Petrella ..., BAD-LAMP is a novel biomarker of nonactivated human plasmacytoid dendritic cells., Blood 2011 Jul; 118(3): 609-17.
2011
Diana J, Brezar V, Beaudoin L, Dalod M, Mellor A, Tafuri A, von Herrath M, Boitard C, Mallone R, Leh..., Viral infection prevents diabetes by inducing regulatory T cells through NKT cell-plasmacytoid dendritic cell interplay., J Exp Med 2011 Apr; 208(4): 729-45.
2011
Dalod M, Pierre P, Integration of ER stress and viral nucleotide sensing in DCs: mounting a response commensurate to the threat?, Eur J Immunol 2011 Apr; 41(4): 898-901.
2011
Ana Reynders, Nadia Yessaad, Thien-Phong Vu Manh, Marc Dalod, Aurore Fenis, Camille Aubry, Georgios ..., Identity, regulation and in vivo function of gut NKp46(+)RORγt(+) and NKp46(+)RORγt(-) lymphoid cells., <i>EMBO Journal</i>, 2011, 30 (14), pp.2934-47. <a target="_blank" href="https://dx.doi.org/10.1038/emboj.2011.201">⟨10.1038/emboj.2011.201⟩</a>.
2011
Crozat K, Dalod M, [Human BDCA3 dendritic cells: a promising target for the design of innovative vaccines]., Med Sci (Paris) 2011 Jan; 27(1): 25-8.
2010
Ziegler-Heitbrock L, Ancuta P, Crowe S, Dalod M, Grau V, Hart DN, Leenen PJ, Liu YJ, MacPherson G, R..., Nomenclature of monocytes and dendritic cells in blood., Blood 2010 Oct; 116(16): e74-80.
2010
Contreras V, Urien C, Guiton R, Alexandre Y, Vu Manh TP, Andrieu T, Crozat K, Jouneau L, Bertho N, E..., Existence of CD8α-like dendritic cells with a conserved functional specialization and a common molecular signature in distant mammalian species., J Immunol 2010 Sep; 185(6): 3313-25.
2010
Guilliams M, Henri S, Tamoutounour S, Ardouin L, Schwartz-Cornil I, Dalod M, Malissen B, From skin dendritic cells to a simplified classification of human and mouse dendritic cell subsets., Eur J Immunol 2010 Aug; 40(8): 2089-94.
2010
Crozat K, Guiton R, Contreras V, Feuillet V, Dutertre CA, Ventre E, Vu Manh TP, Baranek T, Storset A..., The XC chemokine receptor 1 is a conserved selective marker of mammalian cells homologous to mouse CD8alpha+ dendritic cells., J Exp Med 2010 Jun; 207(6): 1283-92.
2010
Crozat K, Guiton R, Guilliams M, Henri S, Baranek T, Schwartz-Cornil I, Malissen B, Dalod M, Comparative genomics as a tool to reveal functional equivalences between human and mouse dendritic cell subsets., Immunol Rev 2010 Mar; 234(1): 177-98.
2010
Henri S, Guilliams M, Poulin LF, Tamoutounour S, Ardouin L, Dalod M, Malissen B, Disentangling the complexity of the skin dendritic cell network., Immunol Cell Biol 2010 ; 88(4): 366-75.
2009
Baranek T, Zucchini N, Dalod M, Plasmacytoid dendritic cells and the control of herpesvirus infections., Viruses 2009 Dec; 1(3): 383-419.
2009
Guiton R, Dalod M, How aging compromises antiviral defenses: a role for imbalanced innate cytokine production., Cell Host Microbe 2009 Nov; 6(5): 397-9.
2009
Tomasello E, Reynders A, Vivier E, A novel mucosal RORγtNKp46 cell subset is a source of interleukin-22., F1000 Biol Rep 2009 Apr; 1(): 28.
2009
Diana J, Griseri T, Lagaye S, Beaudoin L, Autrusseau E, Gautron AS, Tomkiewicz C, Herbelin A, Barouk..., NKT cell-plasmacytoid dendritic cell cooperation via OX40 controls viral infection in a tissue-specific manner., Immunity 2009 Feb; 30(2): 289-99.
2009
Luci C, Reynders A, Ivanov II, Cognet C, Chiche L, Chasson L, Hardwigsen J, Anguiano E, Banchereau J..., Influence of the transcription factor RORgammat on the development of NKp46+ cell populations in gut and skin., Nat Immunol 2009 Jan; 10(1): 75-82.
2009
Karine Crozat, Eric Vivier, Marc Dalod, Crosstalk between components of the innate immune system: promoting anti-microbial defenses and avoiding immunopathologies., <i>Immunological Reviews</i>, 2009, 227 (1), pp.129-49. <a target="_blank" href="https://dx.doi.org/10.1111/j.1600-065X.2008.00736.x">⟨10.1111/j.1600-065X.2008.00736.x⟩</a>.
2008
Zucchini N, Crozat K, Baranek T, Robbins SH, Altfeld M, Dalod M, Natural killer cells in immunodefense against infective agents., Expert Rev Anti Infect Ther 2008 Dec; 6(6): 867-85.
2008
Hall HT, Sjölin H, Brauner H, Tomasello E, Dalod M, Vivier E, Höglund P, Increased diabetes development and decreased function of CD4+CD25+ Treg in the absence of a functional DAP12 adaptor protein., Eur J Immunol 2008 Nov; 38(11): 3191-9.
2008
Helming L, Tomasello E, Kyriakides TR, Martinez FO, Takai T, Gordon S, Vivier E, Essential role of DAP12 signaling in macrophage programming into a fusion-competent state., Sci Signal 2008 Oct; 1(43): ra11.
2008
Baranek T, Dalod M, How opportunistic agents benefit from viral infections: the plasmacytoid dendritic cell connection., Cell Host Microbe 2008 Oct; 4(4): 305-7.
2008
Bonmort M, Dalod M, Mignot G, Ullrich E, Chaput N, Zitvogel L, Killer dendritic cells: IKDC and the others., Curr Opin Immunol 2008 Oct; 20(5): 558-65.
2008
Grégoire C, Cognet C, Chasson L, Coupet CA, Dalod M, Reboldi A, Marvel J, Sallusto F, Vivier E, Wal..., Intrasplenic trafficking of natural killer cells is redirected by chemokines upon inflammation., Eur J Immunol 2008 Aug; 38(8): 2076-84.
2008
Eric Vivier, Elena Tomasello, Myriam Baratin, Thierry Walzer, Sophie Ugolini, Functions of natural killer cells., <i>Nature Immunology</i>, 2008, 9 (5), pp.503-10. <a target="_blank" href="https://dx.doi.org/10.1038/ni1582">⟨10.1038/ni1582⟩</a>.
2008
Ferrero RL, Avé P, Ndiaye D, Bambou JC, Huerre MR, Philpott DJ, Mémet S, NF-kappaB activation during acute Helicobacter pylori infection in mice., Infect Immun 2008 Feb; 76(2): 551-61.
2008
Scott Robbins, Thierry Walzer, Doulaye Dembélé, Christelle Thibault, Axel Defays, Gilles Bessou, E..., Novel insights into the relationships between dendritic cell subsets in human and mouse revealed by genome-wide expression profiling., <i>Genome Biology</i>, 2008, 9 (1), pp.R17. <a target="_blank" href="https://dx.doi.org/10.1186/gb-2008-9-1-r17">⟨10.1186/gb-2008-9-1-r17⟩</a>.
2008
Luci C, Tomasello E, Natural killer cells: detectors of stress., Int J Biochem Cell Biol 2008 ; 40(11): 2335-40.
2008
Zucchini N, Bessou G, Robbins SH, Chasson L, Raper A, Crocker PR, Dalod M, Individual plasmacytoid dendritic cells are major contributors to the production of multiple innate cytokines in an organ-specific manner during viral infection., Int Immunol 2008 Jan; 20(1): 45-56.
2007
Dalod M, Studies of SARM1 uncover similarities between immune and neuronal responses to danger., Sci STKE 2007 Dec; 2007(417): pe73.
2007
Thierry Walzer, Laura Chiossone, Julie Chaix, Andrew Calver, Claude Carozzo, Laure Garrigue-Antar, Y..., Natural killer cell trafficking in vivo requires a dedicated sphingosine 1-phosphate receptor., <i>Nature Immunology</i>, 2007, 8 (12), pp.1337-44. <a target="_blank" href="https://dx.doi.org/10.1038/ni1523">⟨10.1038/ni1523⟩</a>.
2007
Grégoire C, Chasson L, Luci C, Tomasello E, Geissmann F, Vivier E, Walzer T, The trafficking of natural killer cells., Immunol Rev 2007 Dec; 220(1): 169-82.
2007
Scott H Robbins, Gilles Bessou, Amélie Cornillon, Nicolas Zucchini, Brigitte Rupp, Zsolt Ruzsics, T..., Natural killer cells promote early CD8 T cell responses against cytomegalovirus, <i>PLoS Pathogens</i>, 2007, 3 (8), pp.e123. <a target="_blank" href="https://dx.doi.org/10.1371/journal.ppat.0030123">⟨10.1371/journal.ppat.0030123⟩</a>.
2007
Walzer T, Bléry M, Chaix J, Fuseri N, Chasson L, Robbins SH, Jaeger S, André P, Gauthier L, Daniel..., Identification, activation, and selective in vivo ablation of mouse NK cells via NKp46., Proc Natl Acad Sci U S A 2007 Feb; 104(9): 3384-9.
2006
Allman D, Dalod M, Asselin-Paturel C, Delale T, Robbins SH, Trinchieri G, Biron CA, Kastner P, Chan ..., Ikaros is required for plasmacytoid dendritic cell differentiation., Blood 2006 Dec; 108(13): 4025-34.
2006
Mémet S, NF-kappaB functions in the nervous system: from development to disease., Biochem Pharmacol 2006 Oct; 72(9): 1180-95.
2006
Anthony R French, Hanna Sjölin, Sungjin Kim, Rima Koka, Liping Yang, Deborah A Young, Cristina Cerb..., DAP12 signaling directly augments proproliferative cytokine stimulation of NK cells during viral infections., <i>Journal of Immunology</i>, 2006, 177 (8), pp.4981-90. <a target="_blank" href="https://dx.doi.org/10.4049/jimmunol.177.8.4981">⟨10.4049/jimmunol.177.8.4981⟩</a>.
2006
Hanna Sjölin, Scott H Robbins, Gilles Bessou, Asa Hidmark, Elena Tomasello, Maria Johansson, Håkan..., DAP12 signaling regulates plasmacytoid dendritic cell homeostasis and down-modulates their function during viral infection., <i>Journal of Immunology</i>, 2006, 177 (5), pp.2908-16.
2006
Kaltschmidt B, Ndiaye D, Korte M, Pothion S, Arbibe L, Prüllage M, Pfeiffer J, Lindecke A, Staiger ..., NF-kappaB regulates spatial memory formation and synaptic plasticity through protein kinase A/CREB signaling., Mol Cell Biol 2006 Apr; 26(8): 2936-46.
2006
Chiesa S, Mingueneau M, Fuseri N, Malissen B, Raulet DH, Malissen M, Vivier E, Tomasello E, Multiplicity and plasticity of natural killer cell signaling pathways., Blood 2006 Mar; 107(6): 2364-72.
2006
Taieb J, Chaput N, Ménard C, Apetoh L, Ullrich E, Bonmort M, Péquignot M, Casares N, Terme M, Flam..., A novel dendritic cell subset involved in tumor immunosurveillance., Nat Med 2006 Feb; 12(2): 214-9.
2006
Julien Taieb, Nathalie Chaput, Cédric Ménard, Lionel Apetoh, Evelyn Ullrich, Mathieu Bonmort, Mari..., Caspase-dependent immunogenicity of doxorubicin-induced tumor cell death A novel dendritic cell subset involved in tumor immunosurveillance, <i>Nature Medicine</i>, 2006, 12 (2), pp.214-219. <a target="_blank" href="https://dx.doi.org/10.1038/nm1356">⟨10.1038/nm1356⟩</a>.
2005
Delale T, Paquin A, Asselin-Paturel C, Dalod M, Brizard G, Bates EE, Kastner P, Chan S, Akira S, Vic..., MyD88-dependent and -independent murine cytomegalovirus sensing for IFN-alpha release and initiation of immune responses in vivo., J Immunol 2005 Nov; 175(10): 6723-32.
2005
Orabona C, Tomasello E, Fallarino F, Bianchi R, Volpi C, Bellocchio S, Romani L, Fioretti MC, Vivier..., Enhanced tryptophan catabolism in the absence of the molecular adapter DAP12., Eur J Immunol 2005 Nov; 35(11): 3111-8.
2005
Walzer T, Dalod M, Robbins SH, Zitvogel L, Vivier E, Natural-killer cells and dendritic cells: “l’union fait la force”., Blood 2005 Oct; 106(7): 2252-8.
2005
Coudert JD, Zimmer J, Tomasello E, Cebecauer M, Colonna M, Vivier E, Held W, Altered NKG2D function in NK cells induced by chronic exposure to NKG2D ligand-expressing tumor cells., Blood 2005 Sep; 106(5): 1711-7.
2005
Walzer T, Dalod M, Vivier E, Zitvogel L, Natural killer cell-dendritic cell crosstalk in the initiation of immune responses., Expert Opin Biol Ther 2005 Sep; 5 Suppl 1(): S49-59.
2005
Elena Tomasello, Eric Vivier, KARAP/DAP12/TYROBP: three names and a multiplicity of biological functions., <i>European Journal of Immunology</i>, 2005, 35 (6), pp.1670-7. <a target="_blank" href="https://dx.doi.org/10.1002/eji.200425932">⟨10.1002/eji.200425932⟩</a>.
2005
Chiesa S, Tomasello E, Vivier E, Vély F, Coordination of activating and inhibitory signals in natural killer cells., Mol Immunol 2005 Feb; 42(4): 477-84.
2005
Sabrina Chiesa, Elena Tomasello, Eric Vivier, Frédéric Vély, Coordination of activating and inhibitory signals in natural killer cells., <i>Molecular Immunology</i>, 2005, 42 (4), pp.477-84. <a target="_blank" href="https://dx.doi.org/10.1016/j.molimm.2004.07.030">⟨10.1016/j.molimm.2004.07.030⟩</a>.
2005
Nataf S, Anginot A, Vuaillat C, Malaval L, Fodil N, Chereul E, Langlois JB, Dumontel C, Cavillon G, ..., Brain and bone damage in KARAP/DAP12 loss-of-function mice correlate with alterations in microglia and osteoclast lineages., Am J Pathol 2005 Jan; 166(1): 275-86.
2005
Serge Nataf, Adrienne Anginot, Carine Vuaillat, Luc Malaval, Nassima Fodil, Emmanuel Chereul, Jean-B..., Brain and bone damage in KARAP/DAP12 loss-of-function mice correlate with alterations in microglia and osteoclast lineages., <i>American Journal of Pathology</i>, 2005, 166 (1), pp.275-86.
2004
Roumier A, Béchade C, Poncer JC, Smalla KH, Tomasello E, Vivier E, Gundelfinger ED, Triller A, Bess..., Impaired synaptic function in the microglial KARAP/DAP12-deficient mouse., J Neurosci 2004 Dec; 24(50): 11421-8.
2004
Viala J, Chaput C, Boneca IG, Cardona A, Girardin SE, Moran AP, Athman R, Mémet S, Huerre MR, Coyle..., Nod1 responds to peptidoglycan delivered by the Helicobacter pylori cag pathogenicity island., Nat Immunol 2004 Nov; 5(11): 1166-74.
2004
Anfossi N, Robbins SH, Ugolini S, Georgel P, Hoebe K, Bouneaud C, Ronet C, Kaser A, DiCioccio CB, To..., Expansion and function of CD8+ T cells expressing Ly49 inhibitory receptors specific for MHC class I molecules., J Immunol 2004 Sep; 173(6): 3773-82.
2004
Oberg L, Johansson S, Michaëlsson J, Tomasello E, Vivier E, Kärre K, Höglund P, Loss or mismatch of MHC class I is sufficient to trigger NK cell-mediated rejection of resting lymphocytes in vivo – role of KARAP/DAP12-dependent and -independent pathways., Eur J Immunol 2004 Jun; 34(6): 1646-53.
2004
Terme M, Tomasello E, Maruyama K, Crépineau F, Chaput N, Flament C, Marolleau JP, Angevin E, Wagner..., IL-4 confers NK stimulatory capacity to murine dendritic cells: a signaling pathway involving KARAP/DAP12-triggering receptor expressed on myeloid cell 2 molecules., J Immunol 2004 May; 172(10): 5957-66.
2004
Serge Nataf, A. Anginot, C. Vuaillat, L. Malaval, N. Fodil, E. Chereul, J.B. Langlois, C. Dumontel, ..., Brain and bone damage in KARAP/DAP12 loss-of-function mice correlate with alterations in microglia and osteoclast lineages, <i>American Journal of Pathology</i>, 2004, 166, pp.275-286.
2003
Goudeau B, Huetz F, Samson S, Di Santo JP, Cumano A, Beg A, Israël A, Mémet S, IkappaBalpha/IkappaBepsilon deficiency reveals that a critical NF-kappaB dosage is required for lymphocyte survival., Proc Natl Acad Sci U S A 2003 Dec; 100(26): 15800-5.
2003
Anfossi N, Lucas M, Diefenbach A, Bühring HJ, Raulet D, Tomasello E, Vivier E, Contrasting roles of DAP10 and KARAP/DAP12 signaling adaptors in activation of the RBL-2H3 leukemic mast cell line., Eur J Immunol 2003 Dec; 33(12): 3514-22.
2003
, Forebrain-specific neuronal inhibition of nuclear factor-kappaB activity leads to loss of neuroprotection., J Neurosci 2003 Oct; 23(28): 9403-8.
2003
Bras-Gonçalves R, Le Gal FA, Avril MF, Dalod M, Connan F, Chaboissier A, Choppin J, Guillet JG, In situ detection of antigen-specific tumor-infiltrating lymphocytes using newly designed tetramers., J Immunol Methods 2003 Sep; 280(1-2): 103-11.
2003
Dalod M, Hamilton T, Salomon R, Salazar-Mather TP, Henry SC, Hamilton JD, Biron CA, Dendritic cell responses to early murine cytomegalovirus infection: subset functional specialization and differential regulation by interferon alpha/beta., J Exp Med 2003 Apr; 197(7): 885-98.
2003
Lacabaratz-Porret C, Urrutia A, Doisne JM, Goujard C, Deveau C, Dalod M, Meyer L, Rouzioux C, Delfra..., Impact of antiretroviral therapy and changes in virus load on human immunodeficiency virus (HIV)-specific T cell responses in primary HIV infection., J Infect Dis 2003 Mar; 187(5): 748-57.
2002
Diefenbach A, Tomasello E, Lucas M, Jamieson AM, Hsia JK, Vivier E, Raulet DH, Selective associations with signaling proteins determine stimulatory versus costimulatory activity of NKG2D., Nat Immunol 2002 Dec; 3(12): 1142-9.
2002
Nguyen KB, Salazar-Mather TP, Dalod MY, Van Deusen JB, Wei XQ, Liew FY, Caligiuri MA, Durbin JE, Bir..., Coordinated and distinct roles for IFN-alpha beta, IL-12, and IL-15 regulation of NK cell responses to viral infection., J Immunol 2002 Oct; 169(8): 4279-87.
2002
Cohen WM, Bianco A, Connan F, Camoin L, Dalod M, Lauvau G, Ferriès E, Culmann-Penciolelli B, van En..., Study of antigen-processing steps reveals preferences explaining differential biological outcomes of two HLA-A2-restricted immunodominant epitopes from human immunodeficiency virus type 1., J Virol 2002 Oct; 76(20): 10219-25.
2002
Lucas M, Daniel L, Tomasello E, Guia S, Horschowski N, Aoki N, Figarella-Branger D, Gomez S, Vivier ..., Massive inflammatory syndrome and lymphocytic immunodeficiency in KARAP/DAP12-transgenic mice., Eur J Immunol 2002 Sep; 32(9): 2653-63.
2002
Vivier E, Tomasello E, Paul P, Lymphocyte activation via NKG2D: towards a new paradigm in immune recognition?, Curr Opin Immunol 2002 Jun; 14(3): 306-11.
2002
Sjölin H, Tomasello E, Mousavi-Jazi M, Bartolazzi A, Kärre K, Vivier E, Cerboni C, Pivotal role of KARAP/DAP12 adaptor molecule in the natural killer cell-mediated resistance to murine cytomegalovirus infection., J Exp Med 2002 Apr; 195(7): 825-34.
2002
Colucci F, Schweighoffer E, Tomasello E, Turner M, Ortaldo JR, Vivier E, Tybulewicz VL, Di Santo JP, Natural cytotoxicity uncoupled from the Syk and ZAP-70 intracellular kinases., Nat Immunol 2002 Mar; 3(3): 288-94.
2002
Dalod M, Salazar-Mather TP, Malmgaard L, Lewis C, Asselin-Paturel C, Brière F, Trinchieri G, Biron ..., Interferon alpha/beta and interleukin 12 responses to viral infections: pathways regulating dendritic cell cytokine expression in vivo., J Exp Med 2002 Feb; 195(4): 517-28.
2001
Asselin-Paturel C, Boonstra A, Dalod M, Durand I, Yessaad N, Dezutter-Dambuyant C, Vicari A, O'Garra..., Mouse type I IFN-producing cells are immature APCs with plasmacytoid morphology., Nat Immunol 2001 Dec; 2(12): 1144-50.
2001
Su HC, Nguyen KB, Salazar-Mather TP, Ruzek MC, Dalod MY, Biron CA, NK cell functions restrain T cell responses during viral infections., Eur J Immunol 2001 Oct; 31(10): 3048-55.
2001
Choppin J, Cohen W, Bianco A, Briand JP, Connan F, Dalod M, Guillet JG, Characteristics of HIV-1 Nef regions containing multiple CD8+ T cell epitopes: wealth of HLA-binding motifs and sensitivity to proteasome degradation., J Immunol 2001 May; 166(10): 6164-9.
1999
Dalod M, Dupuis M, Deschemin JC, Goujard C, Deveau C, Meyer L, Ngo N, Rouzioux C, Guillet JG, Delfra..., Weak anti-HIV CD8(+) T-cell effector activity in HIV primary infection., J Clin Invest 1999 Nov; 104(10): 1431-9.
1999
Dalod M, Dupuis M, Deschemin JC, Sicard D, Salmon D, Delfraissy JF, Venet A, Sinet M, Guillet JG, Broad, intense anti-human immunodeficiency virus (HIV) ex vivo CD8(+) responses in HIV type 1-infected patients: comparison with anti-Epstein-Barr virus responses and changes during antiretroviral therapy., J Virol 1999 Sep; 73(9): 7108-16.
1999
Dalod M, Sinet M, Deschemin JC, Fiorentino S, Venet A, Guillet JG, Altered ex vivo balance between CD28+ and CD28- cells within HIV-specific CD8+ T cells of HIV-seropositive patients., Eur J Immunol 1999 Jan; 29(1): 38-44.
1998
Dalod M, Harzic M, Pellegrin I, Dumon B, Hoen B, Sereni D, Deschemin JC, Levy JP, Venet A, Gomard E, Evolution of cytotoxic T lymphocyte responses to human immunodeficiency virus type 1 in patients with symptomatic primary infection receiving antiretroviral triple therapy., J Infect Dis 1998 Jul; 178(1): 61-9.
1998
Durali D, Morvan J, Letourneur F, Schmitt D, Guegan N, Dalod M, Saragosti S, Sicard D, Levy JP, Goma..., Cross-reactions between the cytotoxic T-lymphocyte responses of human immunodeficiency virus-infected African and European patients., J Virol 1998 May; 72(5): 3547-53.
1996
Dalod M, Fiorentino S, Delamare C, Rouzioux C, Sicard D, Guillet JG, Gomard E, Delayed virus-specific CD8+ cytotoxic T lymphocyte activity in an HIV-infected individual with high CD4+ cell counts: correlations with various parameters of disease progression., AIDS Res Hum Retroviruses 1996 Apr; 12(6): 497-506.
1996
Fiorentino S, Dalod M, Olive D, Guillet JG, Gomard E, Predominant involvement of CD8+CD28- lymphocytes in human immunodeficiency virus-specific cytotoxic activity., J Virol 1996 Mar; 70(3): 2022-6.