Expression of the Ag-F differentiation antigen on T-lymphocyte blasts and cytotoxic cells
Terranova, C.M.; Carpenter, C.B.; Milford, E.L.; Lowry, R.P.
Transplantation Proceedings 11(3): 1639-1641
1979
ISSN/ISBN: 0041-1345 PMID: 92085 Document Number: 147547
In conclusion, we have demonstrated that Ag-F antigen is not present on cytotoxic splenocytes generated in vivo. Furthermore, we have preliminary evidence that mitogen- and MLR-activated T cells are both Ag-F negative and positive; however, proliferation of some Ag-F-positive precursors may be inhibited in whole lymph node populations.
Document emailed within 1 workday
Related Documents
Schmid, D.S.; Rouse, B.T. 1983: Cellular interactions in the cytotoxic T lymphocyte response to herpes simplex virus antigens: differential antigen activation requirements for the helper T lymphocyte and cytotoxic T lymphocyte precursors Journal of Immunology 131(1): 479-484Okada, M.; Henney, C.S. 1980: The differentiation of cytotoxic T cells in vitro. II. Amplifying factor(s) produced in primary mixed lymphocyte cultures against K/D stimuli require the presence of Lyt 2+ cells but not Lyt 1+ cells Journal of Immunology 125(1): 300-307
Smyth, M.J.; Kelly, J.M. 1999: Accessory function for NK1.1+ natural killer cells producing interferon-gamma in xenospecific cytotoxic T lymphocyte differentiation Transplantation 68(6): 840-843
Xiang, J.; Moyana, T. 1998: Cytotoxic CD4+ T cells associated with the expression of major histocompatibility complex class II antigen of mouse myeloma cells secreting interferon-gamma are cytolytic in vitro and tumoricidal in vivo Cancer Gene Therapy 5(5): 313-320
Klein, J.R.; Lefrancois, L.; Kagnoff, M.F. 1985: A murine cytotoxic T lymphocyte clone from the intestinal mucosa that is antigen specific for proliferation and displays broadly reactive inducible cytotoxic activity Journal of Immunology 135(6): 3697-3703
Ojima, T.; Iwahashi, M.; Nakamura, M.; Matsuda, K.; Nakamori, M.; Ueda, K.; Naka, T.; Katsuda, M.; Miyazawa, M.; Iida, T.; Yamaue, H. 2008: Streptococcal preparation OK-432 promotes the capacity of dendritic cells (DCs) to prime carcinoembryonic antigen (CEA)-specific cytotoxic T lymphocyte responses induced with genetically modified DCs that express CEA International Journal of Oncology 32(2): 459-466
Schweitzer, A.N.; Borriello, F.; Wong, R.C.; Abbas, A.K.; Sharpe, A.H. 1997: Role of costimulators in T cell differentiation: studies using antigen-presenting cells lacking expression of CD80 or CD86 Journal of Immunology 158(6): 2713-2722
Fan, J.; Bonavida, B. 1981: Studies on the induction and expression of T cell-mediated immunity. XII. The concomitant loss and recovery of membrane-associated Lyt-2 antigens, lymphocyte-target cell binding, and the antigen-specific and -nonspecific cytotoxic activity of alloimmune T lymphocytes after treatment with trypsin Journal of Immunology 127(5): 1856-1864
Hildreth, J.E.; August, J.T. 1985: The human lymphocyte function-associated (HLFA) antigen and a related macrophage differentiation antigen (HMac-1): functional effects of subunit-specific monoclonal antibodies Journal of Immunology 134(5): 3272-3280
Warren, H.S. 1984: Differentiation of NK-like cells from OKT3-, OKT11+, and OKM1+ small resting lymphocytes by culture with autologous T cell blasts and lymphokine Journal of Immunology 132(6): 2888-2894
Hattori, N.; Niimi, T.; Sato, S.; Achiwa, H.; Maeda, H.; Oguri, T.; Bessho, Y.; Ito, H.; Shimizu, S.; Ueda, R. 2005: Cytotoxic T-lymphocyte antigen 4 gene polymorphisms in sarcoidosis patients Sarcoidosis Vasculitis and Diffuse Lung Diseases: Official Journal of Wasog 22(1): 27-32
Wagner, H. 1983: On the role of the thymus during the generation of antigen-specific MHC-restricted cytotoxic T-lymphocyte precursors Transplantation Proceedings 15(2): 1693-1697
Wagner, H. 1983: On the role of the thymus during the generation of antigen-specific MHC-restricted cytotoxic T-lymphocyte precursors Transplantation Proceedings 15(2): 1693-1697
Yano, A.; Aosai, F.; Ohta, M.; Hasekura, H.; Sugane, K.; Hayashi, S. 1989: Antigen presentation by Toxoplasma gondii-infected cells to CD4+ proliferative T cells and CD8+ cytotoxic cells Journal of Parasitology 75(3): 411-416
Wagner, H.; Hardt, C.; Bartlett, R.; Röllinghoff, M.; Pfizenmaier, K. 1980: Intrathymic differentiation of cytotoxic T lymphocyte (CTL) precursors. I. the CTL immunocompetence of peanut agglutinin-positive (cortical) and negative (medullary) Lyt 123 thymocytes Journal of Immunology 125(6): 2532-2538
Kane, K.P.; Mescher, M.F. 1993: Activation of CD8-dependent cytotoxic T lymphocyte adhesion and degranulation by peptide class I antigen complexes Journal of Immunology 150(11): 4788-4797
Dong, H.-l.; Sui, Y.-f.; Ye, J.; Li, Z.-s.; Qu, P.; Zhang, X.-m.; Chen, G.-s.; Lu, S.-y. 2003: Prediction synthesis and identification of HLA-A2-restricted cytotoxic T lymphocyte epitopes of the tumor antigen MAGE-n Zhonghua Yi Xue Za Zhi 83(12): 1080-1083
Dumont, F.J. 1987: Stimulation of murine T cells via the Ly-6C antigen: lack of proliferative response in aberrant T cells from lpr/lpr and gld/gld mice despite high Ly-6C antigen expression Journal of Immunology 138(12): 4106-4113
Geppert, T.D.; Lipsky, P.E. 1985: Antigen presentation by interferon-gamma-treated endothelial cells and fibroblasts: differential ability to function as antigen-presenting cells despite comparable Ia expression Journal of Immunology 135(6): 3750-3762
Bertotto, A.; Rambotti, A.; Gentilini, F.; Stefanelli, M.; Zucchetti, P.; Vaccaro, R. 1984: Immunoregulatory T cells in measles. the relationship between reduced lymphocyte proliferative response to PHA and increased proportion of circulating suppressor-cytotoxic T cells Microbiologica 7(1): 21-27