يعرض 1 - 20 نتائج من 20 نتيجة بحث عن '"Memory Cd4(+) T Cell"', وقت الاستعلام: 0.54s تنقيح النتائج
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    Academic Journal
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    Academic Journal
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    Academic Journal

    المساهمون: Universität zu Köln = University of Cologne, Immunologie Translationnelle - Translational Immunology lab, Institut Pasteur Paris (IP)-Université Paris Cité (UPCité), HIV, Inflammation et persistance - HIV, Inflammation and Persistence, This research was funded by the German Center for Infection Research (grant nos 80185MDCAH, 8018804915, TI 07.001_IS_00 and TI 07.001_IS_01) and the French Agency for Research on AIDS and Viral Hepatitis (ANRS): maladies infectieuses émergentes and Institut Pasteur (grant no. 17066). For the remaining authors none are declared.

    المصدر: ISSN: 2076-0817 ; Pathogens ; https://hal.science/hal-03699427 ; Pathogens, 2022, 11 (4), pp.483. ⟨10.3390/pathogens11040483⟩.

    Relation: info:eu-repo/semantics/altIdentifier/pmid/35456158; PUBMED: 35456158; PUBMEDCENTRAL: PMC9027803

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    المساهمون: M. Engel, L. Falk, M. Albanese, O. Keppler, X. Sewald

    Relation: info:eu-repo/semantics/altIdentifier/pmid/35045303; info:eu-repo/semantics/altIdentifier/wos/WOS:000763707800006; volume:38; issue:3; firstpage:1; lastpage:17; numberofpages:17; journal:CELL REPORTS; https://hdl.handle.net/2434/982975; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85122834979

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    Academic Journal

    المساهمون: Universität zu Köln = University of Cologne, German Centre for Infection Research (DZIF), Faculty of Medicine Cologne, University Hospital of Cologne Cologne -Universität zu Köln = University of Cologne, Immunobiologie des Cellules dendritiques, Institut Pasteur Paris (IP)-Institut National de la Santé et de la Recherche Médicale (INSERM), University Hospital of Cologne Cologne, PAN Klinik Köln, Klinikum der Universität München, German Center for Infection Research, Partnersite Munich (DZIF), HIV, Inflammation et persistance - HIV, Inflammation and Persistence, Institut Pasteur Paris (IP), This work was supported by the German Center for Infection Research (grant nos 80185MDCAH to CH and 8018804915 to CL) and the French Agency for Research on AIDS and Viral Hepatitis (ANRS) (grant no. 17066 to MMT).

    المصدر: ISSN: 1464-2662.

    Relation: info:eu-repo/semantics/altIdentifier/pmid/33421299; PUBMED: 33421299

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    المصدر: Clin. Immunol. 188, 23-30 (2017)

    وصف الملف: application/pdf

    Relation: info:eu-repo/semantics/altIdentifier/pmid/29229565; info:eu-repo/semantics/altIdentifier/wos/WOS:000428360100005; info:eu-repo/semantics/altIdentifier/isbn/1521-6616; info:eu-repo/semantics; https://push-zb.helmholtz-muenchen.de/frontdoor.php?source_opus=52528; urn:isbn:1521-6616; urn:issn:1521-6616; urn:issn:1521-7035

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    المساهمون: University of Cologne, Immunologie Translationnelle - Translational Immunology lab, Institut Pasteur [Paris] (IP)-Université Paris Cité (UPCité), HIV, Inflammation et persistance - HIV, Inflammation and Persistence, This research was funded by the German Center for Infection Research (grant nos 80185MDCAH, 8018804915, TI 07.001_IS_00 and TI 07.001_IS_01) and the French Agency for Research on AIDS and Viral Hepatitis (ANRS): maladies infectieuses émergentes and Institut Pasteur (grant no. 17066). For the remaining authors none are declared.

    المصدر: Pathogens
    Pathogens, 2022, 11 (4), pp.483. ⟨10.3390/pathogens11040483⟩

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    المساهمون: Universität zu Köln, German Centre for Infection Research (DZIF), Faculty of Medicine [Cologne], University Hospital of Cologne [Cologne]-University of Cologne, Immunobiologie des Cellules dendritiques, Institut Pasteur [Paris]-Institut National de la Santé et de la Recherche Médicale (INSERM), University Hospital of Cologne [Cologne], PAN Klinik [Köln], Klinikum der Universität [München], German Center for Infection Research, Partnersite Munich (DZIF), HIV, Inflammation et persistance, Institut Pasteur [Paris], This work was supported by the German Center for Infection Research (grant nos 80185MDCAH to CH and 8018804915 to CL) and the French Agency for Research on AIDS and Viral Hepatitis (ANRS) (grant no. 17066 to MMT)., Universität zu Köln = University of Cologne, Institut Pasteur [Paris] (IP)-Institut National de la Santé et de la Recherche Médicale (INSERM), HIV, Inflammation et persistance - HIV, Inflammation and Persistence, Institut Pasteur [Paris] (IP), Vougny, Marie-Christine

    المصدر: HIV Medicine
    HIV Medicine, Wiley, 2021, 22 (5), pp.397-408. ⟨10.1111/hiv.13031⟩
    HIV Medicine, 2021, 22 (5), pp.397-408. ⟨10.1111/hiv.13031⟩

    وصف الملف: application/pdf

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    المؤلفون: 葉子菱, Yeh, Tzu-Lin

    المساهمون: 孔祥智, 臺灣大學:免疫學研究所

    وصف الملف: 578924 bytes; application/pdf

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Science 297, 2060-2063. Brenner, B., Koppenhoefer, U., Grassme, H., Kun, J., Lang, F., and Gulbins, E. (1997). Evidence for a novel function of the CD40 ligand as a signalling molecule in T-lymphocytes. FEBS Lett 417, 301-306. Chambers, C. A., and Allison, J. P. (1997). Co-stimulation in T cell responses. Curr Opin Immunol 9, 396-404. Chang, J. F., Thomas, C. A., 3rd, and Kung, J. T. (1991). Induction of high level IL-2 production in CD4+8- T helper lymphocytes requires post-thymic development. J Immunol 147, 851-859. Chen, F. L., and Kung, J. T. (1996). Deficient CD4+ T cell proliferation in the class 1 MHC-restricted 2C TCR-transgenic mouse. J Immunol 156, 2036-2044. Croft, M., Bradley, L. M., and Swain, S. L. (1994). Naive versus memory CD4 T cell response to antigen. Memory cells are less dependent on accessory cell costimulation and can respond to many antigen-presenting cell types including resting B cells. J Immunol 152, 2675-2685. Del Prete, G., De Carli, M., D'Elios, M. M., Daniel, K. C., Almerigogna, F., Alderson, M., Smith, C. A., Thomas, E., and Romagnani, S. (1995). CD30-mediated signaling promotes the development of human T helper type 2-like T cells. J Exp Med 182, 1655-1661. Evans, D. E., Prell, R. A., Thalhofer, C. J., Hurwitz, A. A., and Weinberg, A. D. (2001). Engagement of OX40 enhances antigen-specific CD4(+) T cell mobilization/memory development and humoral immunity: comparison of alphaOX-40 with alphaCTLA-4. J Immunol 167, 6804-6811. Futagawa, T., Akiba, H., Kodama, T., Takeda, K., Hosoda, Y., Yagita, H., and Okumura, K. (2002). Expression and function of 4-1BB and 4-1BB ligand on murine dendritic cells. Int Immunol 14, 275-286. Gascan, H., Gauchat, J. F., Aversa, G., Van Vlasselaer, P., and de Vries, J. E. (1991). Anti-CD40 monoclonal antibodies or CD4+ T cell clones and IL-4 induce IgG4 and IgE switching in purified human B cells via different signaling pathways. J Immunol 147, 8-13. Gimmi, C. D., Freeman, G. J., Gribben, J. G., Gray, G., and Nadler, L. M. (1993). Human T-cell clonal anergy is induced by antigen presentation in the absence of B7 costimulation. Proc Natl Acad Sci U S A 90, 6586-6590. Grakoui, A., Bromley, S. K., Sumen, C., Davis, M. M., Shaw, A. S., Allen, P. M., and Dustin, M. L. (1999). The immunological synapse: a molecular machine controlling T cell activation. Science 285, 221-227. Hendriks, J., Gravestein, L. A., Tesselaar, K., van Lier, R. A., Schumacher, T. N., and Borst, J. (2000). CD27 is required for generation and long-term maintenance of T cell immunity. Nat Immunol 1, 433-440. Hintzen, R. Q., Lens, S. M., Beckmann, M. P., Goodwin, R. G., Lynch, D., and van Lier, R. A. (1994). Characterization of the human CD27 ligand, a novel member of the TNF gene family. J Immunol 152, 1762-1773. Huang, L. R., Chen, F. L., Chen, Y. T., Lin, Y. M., and Kung, J. T. (2000). Potent induction of long-term CD8+ T cell memory by short-term IL-4 exposure during T cell receptor stimulation. Proc Natl Acad Sci U S A 97, 3406-3411. Hutloff, A., Dittrich, A. M., Beier, K. C., Eljaschewitsch, B., Kraft, R., Anagnostopoulos, I., and Kroczek, R. A. (1999). ICOS is an inducible T-cell co-stimulator structurally and functionally related to CD28. Nature 397, 263-266. Kelly, J. M., Darcy, P. K., Markby, J. L., Godfrey, D. I., Takeda, K., Yagita, H., and Smyth, M. J. (2002). Induction of tumor-specific T cell memory by NK cell-mediated tumor rejection. Nat Immunol 3, 83-90. Khayyamian, S., Hutloff, A., Buchner, K., Grafe, M., Henn, V., Kroczek, R. A., and Mages, H. W. (2002). ICOS-ligand, expressed on human endothelial cells, costimulates Th1 and Th2 cytokine secretion by memory CD4+ T cells. Proc Natl Acad Sci U S A 99, 6198-6203. Kim, J., Choi, S. P., La, S., Seo, J. S., Kim, K. K., Nam, S. H., and Kwon, B. (2003). Constitutive expression of 4-1BB on T cells enhances CD4+ T cell responses. Exp Mol Med 35, 509-517. Kim, M. Y., Bekiaris, V., McConnell, F. M., Gaspal, F. M., Raykundalia, C., and Lane, P. J. (2005). OX40 signals during priming on dendritic cells inhibit CD4 T cell proliferation: IL-4 switches off OX40 signals enabling rapid proliferation of Th2 effectors. J Immunol 174, 1433-1437. Koppenhoefer, U., Brenner, B., Lang, F., and Gulbins, E. (1997). The CD40-ligand stimulates T-lymphocytes via the neutral sphingomyelinase: a novel function of the CD40-ligand as signalling molecule. FEBS Lett 414, 444-448. Lee, H. W., Nam, K. O., Seo, S. K., Kim, Y. H., Kang, H., and Kwon, B. S. (2003). 4-1BB cross-linking enhances the survival and cell cycle progression of CD4 T lymphocytes. Cell Immunol 223, 143-150. Lenschow, D. J., Walunas, T. L., and Bluestone, J. A. (1996). CD28/B7 system of T cell costimulation. Annu Rev Immunol 14, 233-258. Lenz, D. C., Kurz, S. K., Lemmens, E., Schoenberger, S. P., Sprent, J., Oldstone, M. B., and Homann, D. (2004). IL-7 regulates basal homeostatic proliferation of antiviral CD4+T cell memory. Proc Natl Acad Sci U S A 101, 9357-9362. Liu, Y., Jones, B., Brady, W., Janeway, C. A., Jr., and Linsley, P. S. (1992). Co-stimulation of murine CD4 T cell growth: cooperation between B7 and heat-stable antigen. Eur J Immunol 22, 2855-2859. Liu, Y., Wenger, R. H., Zhao, M., and Nielsen, P. J. (1997). Distinct costimulatory molecules are required for the induction of effector and memory cytotoxic T lymphocytes. J Exp Med 185, 251-262. McAdam, A. J., Chang, T. T., Lumelsky, A. E., Greenfield, E. A., Boussiotis, V. A., Duke-Cohan, J. S., Chernova, T., Malenkovich, N., Jabs, C., Kuchroo, V. K., et al. (2000). Mouse inducible costimulatory molecule (ICOS) expression is enhanced by CD28 costimulation and regulates differentiation of CD4+ T cells. J Immunol 165, 5035-5040. Ohshima, Y., Tanaka, Y., Tozawa, H., Takahashi, Y., Maliszewski, C., and Delespesse, G. (1997). Expression and function of OX40 ligand on human dendritic cells. J Immunol 159, 3838-3848. Okamoto, N., Nukada, Y., Tezuka, K., Ohashi, K., Mizuno, K., and Tsuji, T. (2004). AILIM/ICOS signaling induces T-cell migration/polarization of memory/effector T-cells. Int Immunol 16, 1515-1522. Podack, E. R., Strbo, N., Sotosec, V., and Muta, H. (2002). CD30-governor of memory T cells? Ann N Y Acad Sci 975, 101-113. Rogers, N. J., Jackson, I. M., Jordan, W. J., Lombardi, G., Delikouras, A., and Lechler, R. I. (2003). CD40 can costimulate human memory T cells and favors IL-10 secretion. Eur J Immunol 33, 1094-1104. Rogers, P. R., Dubey, C., and Swain, S. L. (2000). Qualitative changes accompany memory T cell generation: faster, more effective responses at lower doses of antigen. J Immunol 164, 2338-2346. Rogers, P. R., Song, J., Gramaglia, I., Killeen, N., and Croft, M. (2001). OX40 promotes Bcl-xL and Bcl-2 expression and is essential for long-term survival of CD4 T cells. Immunity 15, 445-455. Seder, R. A., and Ahmed, R. (2003). Similarities and differences in CD4+ and CD8+ effector and memory T cell generation. Nat Immunol 4, 835-842. Sprent, J., and Surh, C. D. (2002). T cell memory. Annu Rev Immunol 20, 551-579. Suresh, M., Whitmire, J. K., Harrington, L. E., Larsen, C. P., Pearson, T. C., Altman, J. D., and Ahmed, R. (2001). Role of CD28-B7 interactions in generation and maintenance of CD8 T cell memory. J Immunol 167, 5565-5573. Veldhoen, M., Magee, A. I., Penha-Goncalves, M. N., and Stockinger, B. (2005). Transduction of naive CD4 T cells with kinase-deficient Lck-HIV-Tat fusion protein dampens T cell activation and provokes a switch to regulatory function. Eur J Immunol 35, 207-216. Watts, T. H., and DeBenedette, M. A. (1999). T cell co-stimulatory molecules other than CD28. Curr Opin Immunol 11, 286-293. Whitmire, J. K., and Ahmed, R. (2000). Costimulation in antiviral immunity: differential requirements for CD4(+) and CD8(+) T cell responses. Curr Opin Immunol 12, 448-455. Yamamoto, J., Adachi, Y., Onoue, Y., Kanegane, H., Miyawaki, T., Toyoda, M., Seki, T., and Morohashi, M. (2000). CD30 expression on circulating memory CD4+ T cells as a Th2-dominated situation in patients with atopic dermatitis. Allergy 55, 1011-1018. Zhang, N., and He, Y. W. (2005). The antiapoptotic protein Bcl-xL is dispensable for the development of effector and memory T lymphocytes. J Immunol 174, 6967-6973.; en-US; http://ntur.lib.ntu.edu.tw/handle/246246/63342; http://ntur.lib.ntu.edu.tw/bitstream/246246/63342/1/ntu-94-R92449004-1.pdf

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    المصدر: Bell , E , Bell , E B , Hayes , S , McDonagh , M , Bunce , C , Yang , C P & Sparshott , S M 2001 , ' Both CD45Rlow and CD45Rhigh "revertant" CD4 memory T cells provide help for memory B cells ' , European journal of immunology , vol. 31 , no. 6 , pp. 1685-1695 . https://doi.org/10.1002/1521-4141(200106)31:63.0.CO;2-V

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    Dissertation/ Thesis