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Thème

À propos

Le système immunitaire se met en place pendant la vie embryonnaire et la période néonatale selon une succession d’événements finement coordonnés. Des acteurs clés de cette construction sont les cellules lymphoïdes innées (ILC), spécifiquement les Lymphoid tissue inducer cells (LTi). Ces lymphocytes interagissent avec les cellules stromales « organisatrices » pour amorcer et et organiser le dévelopement des ganglions Lymphatiques au cours de l’embryogénèse.

Au Centre d’Immunologie de Marseille–Luminy (CIML), le laboratoire de Serge van de Pavert étudie comment les ILC contribuent au développement et à la maturation du système immunitaire in vivo. Nous explorons comment les signaux dévelopementaux très précoces — environnement maternel, nutriments et signaux neuronaux — vont influencer l’éfficacité du système immunitaire tout au long de la vie. Notre approche combine génétique de la souris, perturbations fonctionnelles, microscopie avancée et analyse d’images 3D.

SPlab 5-June-2025

Axes de recherche

  • Développement et fonctions des ILCs dans les tissus embryonnaires et au cours de la période néonatale et postnataux
  • Contrôle cellulaire et moléculaire de l’organogenèse des ganglions lymphatiques
  • Influence de l’environnement maternel (régimes alimentaire et signaux métaboliques) sur le développement du système immunitaire
  • Rôle des interactions neuro–immunes dans l’organisation tissulaire
  • Imagerie volumique et morphométrie computationnelle 3D


Approches & méthodes

  • Génétique murine, lignage et traçage cellulaire
  • Perturbations fonctionnelles in vivo (contrôle conditionnel/temporel)
  • Clarification tissulaire, microscopie confocale/feuille de lumière, reconstructions volumiques
  • Transcriptomique unicellulaire
  • Pipelines d’analyse d’images 3D et modélisation quantitative

Équipe & Collaborations

Nous collaborons étroitement avec des partenaires en immunologie, neurobiologie et calcul pour relier les mécanismes à plusieurs échelles — des réseaux transcriptionnels jusqu’à la morphogenèse des organes.

“Immunofluorescent staining of a complete mouse E13.5 embryo reveals neurons (labeled with BetaIII Tubulin), macrophages and lymphatic endothelial cells in red (labeled with Lyve-1), the nuclei of specific neurons and lymphatic endothelial cells are marked in blue (Prox1 labeling) and the vascular network in white (Pecam-1 labeling). The eye of the embryo and the nasal neurons can be seen in green. On the left, the spinal cord is marked in green. The vertebrae are visible through the marking of the dorsal root ganglia in green, and blood vessels marked in white. The heart is visible just above the liver which is labeled with LYVE-1 antibody. The embryonic intestine, not far from the liver, is visualized by the innervation of neurons in green. The umbilical cord can be observed by neighboring white blood vessels and macrophages in red. This picture was generated in the study on the formation of lymph nodes and lymphatic system. Their formation, initiated in the embryonic stage, can be modified by changing certain dietary factors affecting cell differentiation. These visualizations are therefore intended to analyze the movements of cells involved in the formation of the lymphatic system.” Image Serge van de Pavert/CIML.

Publications

2025
Serge A. van de Pavert, Daniela Talarico, Andrea Brendolan, Origin and differentiation of lymph node and spleen progenitors during embryonic development , Development (2025) 152 (15): dev204885..
2025
Bavais J, Chevallier J, Spinelli L, van de Pavert SA, Puthier D, SciGeneX: enhancing transcriptional analysis through gene module detection in single-cell and spatial transcriptomics data., NAR Genom Bioinform 2025 Jun; 7(2): lqaf043.
2025
Brouilly N, Pujol N, Richard F, Cazevieille C, Stone J, Eatock RA, Pujol R, A novel membrane contact site in vestibular hair cells., bioRxiv 2025 Mar; (): .
2025
Sonntag T, Omi S, Andreeva A, Valotteau C, Eichelbrenner J, Chisholm AD, Ward JD, Pujol N, A defining member of the new cysteine-cradle family is an aECM protein signalling skin damage in C. elegans., PLoS Genet 2025 Mar; 21(3): e1011593.
2025
Chauvet M, Bourges D, Scotet E, From ex vivo to in vitro models: towards a novel approach to investigate the efficacy of immunotherapies on exhausted Vγ9Vδ2 T cells?, Front Immunol 2025 ; 16(): 1556982.
2024
Guen VJ, André-Grégoire G, Beauvillain C, Boury F, Chauvet M, Dupuy AMM, Fonteneau JF, Gagne K, Ga..., CRCI2NA inaugural symposium: A meeting on tumor and immune ecosystems., Biol Cell 2024 Dec; 116(12): e2400111.
2024
Pooranachithra M, Jyo EM, Brouilly N, Pujol N, Ernst AM, Chisholm AD, C. elegans epicuticlins define specific compartments in the apical extracellular matrix and function in wound repair., Development 2024 Nov; 151(21): .
2024
Snacel-Fazy E, Soubéran A, Grange M, Joseph K, Colin C, Morando P, Luche H, Pagano A, Brustlein S, ..., SMAC mimetic drives microglia phenotype and glioblastoma immune microenvironment., Cell Death Dis 2024 Sep; 15(9): 676.
2024
Sundaram MV, Pujol N, The Caenorhabditis elegans cuticle and precuticle: a model for studying dynamic apical extracellular matrices in vivo., Genetics 2024 Aug; 227(4): .
2024
Pagneux Q, Garnier N, Fabregue M, Sharkaoui S, Mazzoli S, Engelmann I, Boukherroub R, Strecker M, Cr..., Neutralization of SARS-CoV-2 and Intranasal Protection of Mice with a nanoCLAMP Antibody Mimetic., ACS Pharmacol Transl Sci 2024 Mar; 7(3): 757-770.
2024
Siret C, van de Pavert SA, Three-Dimensional Imaging of Macrophages in Complete Organs., Methods Mol Biol 2024 ; 2713(): 297-306.
2024
Lola Boutin, Clement Barjon, Morgane Chauvet, Laura Lafrance, Eric Senechal, Dorothée Bourges, Emma..., Camelid‐derived T cell engagers harnessing human γδ T cells as promising antitumor immunotherapeutic agents, <i>European Journal of Immunology</i>, In press, <a target="_blank" href="https://dx.doi.org/10.1002/eji.202350773">⟨10.1002/eji.202350773⟩</a>.
2023
Weng JW, Park H, Valotteau C, Chen RT, Essmann CL, Pujol N, Sternberg PW, Chen CH, Body stiffness is a mechanical property that facilitates contact-mediated mate recognition in Caenorhabditis elegans., Curr Biol 2023 Sep; 33(17): 3585-3596.e5.
2023
van de Pavert SA, Layered origins of lymphoid tissue inducer cells., Immunol Rev 2023 May; 315(1): 71-78.
2023
Rejane Rua, Nathalie Pujol, Pathogen metabolite checkpoint: NHR on guard, <i>Immunity</i>, 2023, 56 (4), pp.744-746. <a target="_blank" href="https://dx.doi.org/10.1016/j.immuni.2023.03.004">⟨10.1016/j.immuni.2023.03.004⟩</a>.
2023
Aggad D, Brouilly N, Omi S, Essmann CL, Dehapiot B, Savage-Dunn C, Richard F, Cazevieille C, Politi ..., Meisosomes, folded membrane microdomains between the apical extracellular matrix and epidermis., Elife 2023 Mar; 12(): .
2023
Wang S, de Fabritus L, Kumar PA, Werner Y, Ma M, Li D, Siret C, Simic M, Li B, Kerdiles YM, Hou L, S..., Brain endothelial CXCL12 attracts protective natural killer cells during ischemic stroke., J Neuroinflammation 2023 Jan; 20(1): 8.
2022
Guillot J, Dominici C, Lucchesi A, Nguyen HTT, Puget A, Hocine M, Rangel-Sosa MM, Simic M, Nigri J, ..., Sympathetic axonal sprouting induces changes in macrophage populations and protects against pancreatic cancer., Nat Commun 2022 Apr; 13(1): 1985.
2022
Lenti E, Genovese L, Bianchessi S, Maurizio A, Sain SB, di Lillo A, Mattavelli G, Harel I, Bernassol..., Fate mapping and scRNA sequencing reveal origin and diversity of lymph node stromal precursors., Immunity 2022 Apr; 55(4): 606-622.e6.
2022
Pujol N, Ewbank JJ, C. elegans: out on an evolutionary limb., Immunogenetics 2022 Feb; 74(1): 63-73.
2022
Bobe S, Beckmann D, Klump DM, Dierkes C, Kirschnick N, Redder E, Bauer N, Schäfers M, Erapaneedi R,..., Volumetric imaging reveals VEGF-C-dependent formation of hepatic lymph vessels in mice., Front Cell Dev Biol 2022 ; 10(): 949896.
2022
Wang S, van de Pavert SA, Innate Lymphoid Cells in the Central Nervous System., Front Immunol 2022 ; 13(): 837250.
2022
Martineau CN, Maynard CA, Pujol N, ATFS-1 plays no repressive role in the regulation of epidermal immune response., MicroPubl Biol 2022 ; 2022(): .
2021
Ting Wang, Zheng Wang, Lauriane de Fabritus, Jinglian Tao, Essa Saied, Ho-Joon Lee, Bulat Ramazanov,..., 1-deoxysphingolipids bind to COUP-TF to modulate lymphatic and cardiac cell development, <i>Developmental Cell</i>, 2021, 56 (22), pp.3128-3145.e15. <a target="_blank" href="https://dx.doi.org/10.1016/j.devcel.2021.10.018">⟨10.1016/j.devcel.2021.10.018⟩</a>.
2021
Zhang X, Harding BW, Aggad D, Courtine D, Chen JX, Pujol N, Ewbank JJ, Antagonistic fungal enterotoxins intersect at multiple levels with host innate immune defences., PLoS Genet 2021 Jun; 17(6): e1009600.
2021
Omi S, Zhang X, Thakur N, Pujol N, ifas-1 is upregulated by fungal infection in a GPA-12 and STA-2-independent manner in the Caenorhabditis elegans epidermis., MicroPubl Biol 2021 May; 2021(): .
2021
van de Pavert SA, Lymphoid Tissue inducer (LTi) cell ontogeny and functioning in embryo and adult., Biomed J 2021 Apr; 44(2): 123-132.
2021
Spanier B, Laurençon A, Weiser A, Pujol N, Omi S, Barsch A, Korf A, Meyer SW, Ewbank JJ, Paladino F..., Comparison of lipidome profiles of Caenorhabditis elegans-results from an inter-laboratory ring trial., Metabolomics 2021 Feb; 17(3): 25.
2021
Sinner MP, Masurat F, Ewbank JJ, Pujol N, Bringmann H, Innate Immunity Promotes Sleep through Epidermal Antimicrobial Peptides., Curr Biol 2021 Feb; 31(3): 564-577.e12.
2021
Omi S, Pujol N, unc-119 mutants have an increased fungal spore adhesion that is not rescued by Cb-unc-119., MicroPubl Biol 2021 Jan; 2021(): .
2021
Martineau CN, Kirienko NV, Pujol N, Innate immunity in C. elegans., Curr Top Dev Biol 2021 ; 144(): 309-351.
2020
Réjane Rua, Nathalie Pujol, IL-17: good fear no tears, <i>Nature Immunology</i>, 2020, 21 (11), pp.1315-1316. <a target="_blank" href="https://dx.doi.org/10.1038/s41590-020-0792-4">⟨10.1038/s41590-020-0792-4⟩</a>.
2020
Watts JS, Harrison HF, Omi S, Guenthers Q, Dalelio J, Pujol N, Watts JL, New Strains for Tissue-Specific RNAi Studies in Caenorhabditis elegans., G3 (Bethesda) 2020 Nov; 10(11): 4167-4176.
2020
Simic M, Manosalva I, Spinelli L, Gentek R, Shayan RR, Siret C, Girard-Madoux M, Wang S, de Fabritus..., Distinct Waves from the Hemogenic Endothelium Give Rise to Layered Lymphoid Tissue Inducer Cell Ontogeny, Cell Rep 2020 Aug; 32(6): 108004.
2020
Taffoni C, Omi S, Huber C, Mailfert S, Fallet M, Rupprecht JF, Ewbank JJ, Pujol N, Microtubule plus-end dynamics link wound repair to the innate immune response., Elife 2020 Jan; 9(): .
2019
Theissen A, Pujol N, Raspado O, Slim K, [“Hospital hotels”: One more step towards short stay and ambulatory surgery]., Presse Med 2019 Mar; 48(3 Pt 1): 219-222.
2019
Omi S, Pujol N, Inducible expression of F48C1.9 encoding a nematode specific secreted peptide in the adult epidermis upon Drechmeria fungal infection., MicroPubl Biol 2019 Feb; 2019(): .
2019
Siret C, Collignon A, Silvy F, Robert S, Cheyrol T, André P, Rigot V, Iovanna J, van de Pavert S, L..., Deciphering the Crosstalk Between Myeloid-Derived Suppressor Cells and Regulatory T Cells in Pancreatic Ductal Adenocarcinoma., Front Immunol 2019 ; 10(): 3070.
2018
Lee SH, Omi S, Thakur N, Taffoni C, Belougne J, Engelmann I, Ewbank JJ, Pujol N, Modulatory upregulation of an insulin peptide gene by different pathogens in C. elegans., Virulence 2018 Dec; 9(1): 648-658.
2018
Abe P, Wüst HM, Arnold SJ, van de Pavert SA, Stumm R, CXCL12-mediated feedback from granule neurons regulates generation and positioning of new neurons in the dentate gyrus., Glia 2018 Aug; 66(8): 1566-1576.
2018
Polanowska J, Chen JX, Soulé J, Omi S, Belougne J, Taffoni C, Pujol N, Selbach M, Zugasti O, Ewbank..., Evolutionary plasticity in the innate immune function of Akirin., PLoS Genet 2018 Jul; 14(7): e1007494.
2018
Dodd W, Tang L, Lone JC, Wimberly K, Wu CW, Consalvo C, Wright JE, Pujol N, Choe KP, A Damage Sensor Associated with the Cuticle Coordinates Three Core Environmental Stress Responses in Caenorhabditis elegans., Genetics 2018 Apr; 208(4): 1467-1482.
2018
E L, Zhou T, Koh S, Chuang M, Sharma R, Pujol N, Chisholm AD, Eroglu C, Matsunami H, Yan D, An Antimicrobial Peptide and Its Neuronal Receptor Regulate Dendrite Degeneration in Aging and Infection., Neuron 2018 Jan; 97(1): 125-138.e5.
2018
Carolyn A. Thomson, Serge A. van De Pavert, Michelle Stakenborg, Evelien Labeeuw, Gianluca Matteoli,..., Expression of the Atypical Chemokine Receptor ACKR4 Identifies a Novel Population of Intestinal Submucosal Fibroblasts That Preferentially Expresses Endothelial Cell Regulators, <i>Journal of Immunology</i>, 2018, 201 (1), pp.215-229. <a target="_blank" href="https://dx.doi.org/10.4049/jimmunol.1700967">⟨10.4049/jimmunol.1700967⟩</a>.
2017
Karpanen T, Padberg Y, van de Pavert SA, Dierkes C, Morooka N, Peterson-Maduro J, van de Hoek G, Adr..., An Evolutionarily Conserved Role for Polydom/Svep1 During Lymphatic Vessel Formation., Circ Res 2017 Apr; 120(8): 1263-1275.
2016
Kim KW, Thakur N, Piggott CA, Omi S, Polanowska J, Jin Y, Pujol N, Coordinated inhibition of C/EBP by Tribbles in multiple tissues is essential for Caenorhabditis elegans development., BMC Biol 2016 Dec; 14(1): 104.
2016
Eric Vivier, Serge A. van De Pavert, Max D. Cooper, Gabrielle T. Belz, The evolution of innate lymphoid cells, <i>Nature Immunology</i>, 2016, 17 (7), pp.790-794. <a target="_blank" href="https://dx.doi.org/10.1038/ni.3459">⟨10.1038/ni.3459⟩</a>.
2016
Zugasti O, Thakur N, Belougne J, Squiban B, Kurz CL, Soulé J, Omi S, Tichit L, Pujol N, Ewbank JJ, A quantitative genome-wide RNAi screen in C. elegans for antifungal innate immunity genes., BMC Biol 2016 Apr; 14(): 35.
2016
Ewbank JJ, Pujol N, Local and long-range activation of innate immunity by infection and damage in C. elegans., Curr Opin Immunol 2016 Feb; 38(): 1-7.
2016
Serge A. van De Pavert, Eric Vivier, Differentiation and function of group 3 innate lymphoid cells, from embryo to adult, <i>International Immunology</i>, 2016, 28 (1), pp.35-42. <a target="_blank" href="https://dx.doi.org/10.1093/intimm/dxv052">⟨10.1093/intimm/dxv052⟩</a>.
2016
Pujol N, Virulence profile: Nathalie Pujol., Virulence 2016 ; 7(1): 63-4.
2015
Santori FR, Huang P, van de Pavert SA, Douglass EF, Leaver DJ, Haubrich BA, Keber R, Lorbek G, Konij..., Identification of natural RORγ ligands that regulate the development of lymphoid cells., Cell Metab 2015 Feb; 21(2): 286-298.
2015
F.R. Santori, P. Huang, S.A. van de Pavert, E.F.J. Douglass, D.J. Leaver, B.A. Haubrich, R. Keber, G..., Identification of Natural RORy ligands that Regulate the Development of Lymphoid Cells, <i>Cell Metabolism</i>, 2015, 21 (2), pp.386-97.
2015
Taffoni C, Pujol N, Mechanisms of innate immunity in C. elegans epidermis., Tissue Barriers 2015 ; 3(4): e1078432.
2014
Burger NB, Stuurman KE, Kok E, Konijn T, Schooneman D, Niederreither K, Coles M, Agace WW, Christoff..., Involvement of neurons and retinoic acid in lymphatic development: new insights in increased nuchal translucency., Prenat Diagn 2014 Dec; 34(13): 1312-9.
2014
Thakur N, Pujol N, Tichit L, Ewbank JJ, Clone mapper: an online suite of tools for RNAi experiments in Caenorhabditis elegans., G3 (Bethesda) 2014 Sep; 4(11): 2137-45.
2014
Zugasti O, Bose N, Squiban B, Belougne J, Kurz CL, Schroeder FC, Pujol N, Ewbank JJ, Activation of a G protein-coupled receptor by its endogenous ligand triggers the innate immune response of Caenorhabditis elegans., Nat Immunol 2014 Sep; 15(9): 833-8.
2014
Rouger V, Bordet G, Couillault C, Monneret S, Mailfert S, Ewbank JJ, Pujol N, Marguet D, Independent synchronized control and visualization of interactions between living cells and organisms., Biophys J 2014 May; 106(10): 2096-104.
2014
van de Pavert SA, Ferreira M, Domingues RG, Ribeiro H, Molenaar R, Moreira-Santos L, Almeida FF, Ibi..., Maternal retinoids control type 3 innate lymphoid cells and set the offspring immunity., Nature 2014 Apr; 508(7494): 123-7.
2014
van de Pavert SA, Mebius RE, Development of secondary lymphoid organs in relation to lymphatic vasculature., Adv Anat Embryol Cell Biol 2014 ; 214(): 81-91.
2014
Ward JD, Mullaney B, Schiller BJ, He LD, Petnic SE, Couillault C, Pujol N, Bernal TU, Van Gilst MR, ..., Defects in the C. elegans acyl-CoA synthase, acs-3, and nuclear hormone receptor, nhr-25, cause sensitivity to distinct, but overlapping stresses., PLoS One 2014 ; 9(3): e92552.
2013
Kagoshima H, Cassata G, Tong YG, Pujol N, Niklaus G, Bürglin TR, The LIM homeobox gene ceh-14 is required for phasmid function and neurite outgrowth., Dev Biol 2013 Aug; 380(2): 314-23.
2012
Pujol N, Davis PA, Ewbank JJ, The Origin and Function of Anti-Fungal Peptides in C. elegans: Open Questions., Front Immunol 2012 ; 3(): 237.
2012
Labed SA, Omi S, Gut M, Ewbank JJ, Pujol N, The pseudokinase NIPI-4 is a novel regulator of antimicrobial peptide gene expression., PLoS One 2012 ; 7(3): e33887.
2011
Dierking K, Polanowska J, Omi S, Engelmann I, Gut M, Lembo F, Ewbank JJ, Pujol N, Unusual regulation of a STAT protein by an SLC6 family transporter in C. elegans epidermal innate immunity., Cell Host Microbe 2011 May; 9(5): 425-35.
2010
van de Pavert SA, Mebius RE, New insights into the development of lymphoid tissues., Nat Rev Immunol 2010 Sep; 10(9): 664-74.
2010
Jaissle GB, May CA, van de Pavert SA, Wenzel A, Claes-May E, Giessl A, Szurman P, Wolfrum U, Wijnhol..., Bone spicule pigment formation in retinitis pigmentosa: insights from a mouse model., Graefes Arch Clin Exp Ophthalmol 2010 Aug; 248(8): 1063-70.
2010
Ewbank JJ, Pujol N, Cellular homeostasis: coping with ER overload during an immune response., Curr Biol 2010 May; 20(10): R452-5.
2010
Engelmann I, Pujol N, Innate immunity in C. elegans., Adv Exp Med Biol 2010 ; 708(): 105-21.
2010
Lee KZ, Kniazeva M, Han M, Pujol N, Ewbank JJ, The fatty acid synthase fasn-1 acts upstream of WNK and Ste20/GCK-VI kinases to modulate antimicrobial peptide expression in C. elegans epidermis., Virulence 2010 ; 1(3): 113-22.
2009
van de Pavert SA, Olivier BJ, Goverse G, Vondenhoff MF, Greuter M, Beke P, Kusser K, Höpken UE, Lip..., Chemokine CXCL13 is essential for lymph node initiation and is induced by retinoic acid and neuronal stimulation., Nat Immunol 2009 Nov; 10(11): 1193-9.
2009
Fischer MD, Huber G, Beck SC, Tanimoto N, Muehlfriedel R, Fahl E, Grimm C, Wenzel A, Remé CE, van d..., Noninvasive, in vivo assessment of mouse retinal structure using optical coherence tomography., PLoS One 2009 Oct; 4(10): e7507.
2009
Drennan MB, Franki AS, Dewint P, Van Beneden K, Seeuws S, van de Pavert SA, Reilly EC, Verbruggen G,..., Cutting edge: the chemokine receptor CXCR3 retains invariant NK T cells in the thymus., J Immunol 2009 Aug; 183(4): 2213-6.
2009
Ziegler K, Pujol N, [C. elegans defence mechanisms]., Med Sci (Paris) 2009 May; 25(5): 497-503.
2009
Ziegler K, Kurz CL, Cypowyj S, Couillault C, Pophillat M, Pujol N, Ewbank JJ, Antifungal innate immunity in C. elegans: PKCdelta links G protein signaling and a conserved p38 MAPK cascade., Cell Host Microbe 2009 Apr; 5(4): 341-52.
2009
Tong A, Lynn G, Ngo V, Wong D, Moseley SL, Ewbank JJ, Goncharov A, Wu YC, Pujol N, Chisholm AD, Negative regulation of Caenorhabditis elegans epidermal damage responses by death-associated protein kinase., Proc Natl Acad Sci U S A 2009 Feb; 106(5): 1457-61.
2009
Vondenhoff MF, van de Pavert SA, Dillard ME, Greuter M, Goverse G, Oliver G, Mebius RE, Lymph sacs are not required for the initiation of lymph node formation., Development 2009 Jan; 136(1): 29-34.
2008
Pujol N, Zugasti O, Wong D, Couillault C, Kurz CL, Schulenburg H, Ewbank JJ, Anti-fungal innate immunity in C. elegans is enhanced by evolutionary diversification of antimicrobial peptides., PLoS Pathog 2008 Jul; 4(7): e1000105.
2008
Pujol N, Cypowyj S, Ziegler K, Millet A, Astrain A, Goncharov A, Jin Y, Chisholm AD, Ewbank JJ, Distinct innate immune responses to infection and wounding in the C. elegans epidermis., Curr Biol 2008 Apr; 18(7): 481-9.
2007
van de Pavert SA, Sanz AS, Aartsen WM, Vos RM, Versteeg I, Beck SC, Klooster J, Seeliger MW, Wijnhol..., Crb1 is a determinant of retinal apical Müller glia cell features., Glia 2007 Nov; 55(14): 1486-97.
2007
Pradel E, Zhang Y, Pujol N, Matsuyama T, Bargmann CI, Ewbank JJ, Detection and avoidance of a natural product from the pathogenic bacterium Serratia marcescens by Caenorhabditis elegans., Proc Natl Acad Sci U S A 2007 Feb; 104(7): 2295-300.
2007
van de Pavert SA, Meuleman J, Malysheva A, Aartsen WM, Versteeg I, Tonagel F, Kamphuis W, McCabe CJ,..., A single amino acid substitution (Cys249Trp) in Crb1 causes retinal degeneration and deregulates expression of pituitary tumor transforming gene Pttg1., J Neurosci 2007 Jan; 27(3): 564-73.
2007
Wong D, Bazopoulou D, Pujol N, Tavernarakis N, Ewbank JJ, Genome-wide investigation reveals pathogen-specific and shared signatures in the response of Caenorhabditis elegans to infection., Genome Biol 2007 ; 8(9): R194.
2006
Aartsen WM, Kantardzhieva A, Klooster J, van Rossum AG, van de Pavert SA, Versteeg I, Cardozo BN, To..., Mpp4 recruits Psd95 and Veli3 towards the photoreceptor synapse., Hum Mol Genet 2006 Apr; 15(8): 1291-302.
2005
Seeliger MW, Beck SC, Pereyra-Muñoz N, Dangel S, Tsai JY, Luhmann UF, van de Pavert SA, Wijnholds J..., In vivo confocal imaging of the retina in animal models using scanning laser ophthalmoscopy., Vision Res 2005 Dec; 45(28): 3512-9.
2005
Cardoso C, Couillault C, Mignon-Ravix C, Millet A, Ewbank JJ, Fontés M, Pujol N, XNP-1/ATR-X acts with RB, HP1 and the NuRD complex during larval development in C. elegans., Dev Biol 2005 Feb; 278(1): 49-59.
2005
Mathias Seeliger, Susanne Beck, Naira Pereyra-Muñoz, Susann Dangel, Jen-Yue Tsai, Ulrich Luhmann, S..., In vivo confocal imaging of the retina in animal models using scanning laser ophthalmoscopy, <i>Vision Research</i>, 2005, 45 (28), pp.3512-3519. <a target="_blank" href="https://dx.doi.org/10.1016/j.visres.2005.08.014">⟨10.1016/j.visres.2005.08.014⟩</a>.
2004
Meuleman J, van de Pavert SA, Wijnholds J, Crumbs homologue 1 in polarity and blindness., Biochem Soc Trans 2004 Nov; 32(Pt 5): 828-30.
2004
van de Pavert SA, Kantardzhieva A, Malysheva A, Meuleman J, Versteeg I, Levelt C, Klooster J, Geiger..., Crumbs homologue 1 is required for maintenance of photoreceptor cell polarization and adhesion during light exposure., J Cell Sci 2004 Aug; 117(Pt 18): 4169-77.
2004
Couillault C, Pujol N, Reboul J, Sabatier L, Guichou JF, Kohara Y, Ewbank JJ, TLR-independent control of innate immunity in Caenorhabditis elegans by the TIR domain adaptor protein TIR-1, an ortholog of human SARM., Nat Immunol 2004 May; 5(5): 488-94.
2004
S.A. van de Pavert, A. Kantardzhieva, A. Malysheva, J. Meuleman, I. Versteeg, C. Levelt, J. Klooster..., Crumbs homologue 1 is required for maintenance of photoreceptor cell polarization and adhesion during light exposure, <i>Journal of Cell Science</i>, 2004, 117, pp.4169-4177.
2003
Pujol N, Ewbank JJ, [A worm’s life]., Med Sci (Paris) 2003 Dec; 19(12): 1209-17.
2002
Mallo GV, Kurz CL, Couillault C, Pujol N, Granjeaud S, Kohara Y, Ewbank JJ, Inducible antibacterial defense system in C. elegans., Curr Biol 2002 Jul; 12(14): 1209-14.
2002
Stringham E, Pujol N, Vandekerckhove J, Bogaert T, unc-53 controls longitudinal migration in C. elegans., Development 2002 Jul; 129(14): 3367-79.
2002
Terranova R, Pujol N, Fasano L, Djabali M, Characterisation of set-1, a conserved PR/SET domain gene in Caenorhabditis elegans., Gene 2002 Jun; 292(1-2): 33-41.
2001
van den Hurk R, Van de Pavert SA, Localization of an activin/activin receptor system in the porcine ovary., Mol Reprod Dev 2001 Dec; 60(4): 463-71.
2001
van de Pavert SA, Boerjan ML, Stroband HW, Taverne MA, van den Hurk R, Uterine-embryonic interaction in pig: activin, follistatin, and activin receptor II in uterus and embryo during early gestation., Mol Reprod Dev 2001 Aug; 59(4): 390-9.
2001
van de Pavert SA, Schipper H, de Wit AA, Soede NM, van den Hurk R, Taverne MA, Boerjan ML, Stroband ..., Comparison of anterior-posterior development in the porcine versus chicken embryo, using goosecoid expression as a marker., Reprod Fertil Dev 2001 ; 13(2-3): 177-85.
2000
Meijer HA, Van De Pavert SA, Stroband HW, Boerjan ML, Expression of the organizer specific homeobox gene goosecoid (gsc) in porcine embryos., Mol Reprod Dev 2000 Jan; 55(1): 1-7.
1998
Schwartz J, Van de Pavert S, Clarke I, Rao A, Ray D, Vrana K, Paracrine interactions within the pituitary gland., Ann N Y Acad Sci 1998 May; 839(): 239-43.
1997
van de Pavert SA, Clarke IJ, Rao A, Vrana KE, Schwartz J, Effects of vasopressin and elimination of corticotropin-releasing hormone-target cells on pro-opiomelanocortin mRNA levels and adrenocorticotropin secretion in ovine anterior pituitary cells., J Endocrinol 1997 Jul; 154(1): 139-47.

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