Reactivity of presumed anti-natural killer cell antibody Leu 7 with intrafollicular T lymphocytes
Poppema, S.; Visser, L.; De Leij, L.
Clinical and Experimental Immunology 54(3): 834-837
1983
ISSN/ISBN: 0009-9104 PMID: 6360450 Document Number: 203636
This report describes the presence of a T lymphocyte subpopulation in germinal centres of lymph follicles. This subpopulation is defined by reactivity with Leu 7 antibody, in addition to OKT11, OKT1, OKT3 and OKT4 positivity. The functional activity of this T lymphocyte subpopulation is a matter of discussion and has to be clarified by functional studies of purified populations of these cells.
Document emailed within 1 workday
Related Documents
Miller, V.E.; Pohajdak, B.; Greenberg, A.H. 1983: Murine natural antitumor antibodies. III. Interferon treatment of a natural killer-resistant lymphoma: augmentation of natural antibody reactivity and susceptibility to in vivo natural resistance Journal of the National Cancer Institute 71(2): 377-384Schmidt, A.; Ortaldo, J.R.; Herberman, R.B. 1984: Inhibition of human natural killer cell reactivity by exogenous adenosine 5'-triphosphate Journal of Immunology 132(1): 146-150
Djeu, J.Y. 1982: Antibody-dependent cell-mediated cytotoxicity and natural killer-cell phenomenon Journal of the American Veterinary Medical Association 181(10): 1043-1048
Goldfarb, R.H.; Herberman, R.B. 1981: Natural killer cell reactivity: regulatory interactions and among phorbol ester, interferon, cholera toxin, and retinoic acid Journal of Immunology 126(6): 2129-2135
Wolf, S.F.; Temple, P.A.; Kobayashi, M.; Young, D.; Dicig, M.; Lowe, L.; Dzialo, R.; Fitz, L.; Ferenz, C.; Hewick, R.M. 1991: Cloning of cDNA for natural killer cell stimulatory factor, a heterodimeric cytokine with multiple biologic effects on T and natural killer cells Journal of Immunology 146(9): 3074-3081
Itoh, K.; Tilden, A.B.; Kumagai, K.; Balch, C.M. 1985: Leu-11+ lymphocytes with natural killer (NK) activity are precursors of recombinant interleukin 2 (rIL 2)-induced activated killer (AK) cells Journal of Immunology 134(2): 802-807
Burton, R.C.; Winn, H.J. 1981: Studies on natural killer (NK) cells. I. NK cell specific antibodies in CE anti-CBA serum Journal of Immunology 126(5): 1985-1989
West, W.H.; Cannon, G.B.; Kay, H.D.; Bonnard, G.D.; Herberman, R.B. 1977: Natural cytotoxic reactivity of human lymphocytes against a myeloid cell line: characterization of effector cells Journal of Immunology 118(1): 355-361
Hayakawa, K.; Salmeron, M.A.; Kornbluth, J.; Bucana, C.; Itoh, K. 1991: The role of IL-4 in proliferation and differentiation of human natural killer cells. Study of an IL-4-dependent versus an IL-2-dependent natural killer cell clone Journal of Immunology 146(7): 2453-2460
Satoh, M.; Seki, S.; Hashimoto, W.; Ogasawara, K.; Kobayashi, T.; Kumagai, K.; Matsuno, S.; Takeda, K. 1996: Cytotoxic gammadelta or alphabeta T cells with a natural killer cell marker, CD56, induced from human peripheral blood lymphocytes by a combination of IL-12 and IL-2 Journal of Immunology 157(9): 3886-3892
Shirakawa, F.; Tanaka, Y.; Eto, S.; Suzuki, H.; Yodoi, J.; Yamashita, U. 1986: Effect of interleukin 1 on the expression of interleukin 2 receptor (Tac antigen) on human natural killer cells and natural killer-like cell line (YT cells) Journal of Immunology 137(2): 551-556
Murphy, J.W.; McDaniel, D.O. 1982: In vitro reactivity of natural killer (NK) cells against Cryptococcus neoformans Journal of Immunology 128(4): 1577-1583
Sugamura, K.; Tanaka, Y.; Hinuma, Y. 1982: Two distinct human cloned T cell lines that exhibit natural killer-like and anti-human effector activities Journal of Immunology 128(4): 1749-1752
Perussia, B.; Acuto, O.; Terhorst, C.; Faust, J.; Lazarus, R.; Fanning, V.; Trinchieri, G. 1983: Human natural killer cells analyzed by B73.1, a monoclonal antibody blocking Fc receptor functions. II. Studies of B73.1 antibody-antigen interaction on the lymphocyte membrane Journal of Immunology 130(5): 2142-2148
Ohara, J.; Kishimoto, T.; Yamamura, Y. 1978: In vitro immune response of human peripheral lymphocytes. III. Effect of anti-mu or anti-delta antibody on PWM-induced increase of cyclic nucleotides in human B lymphocytes Journal of Immunology 121(5): 2088-2096
Hauzenberger, E.; Hauzenberger, D.; Hultenby, K.; Holgersson, J. 2000: Porcine endothelium supports transendothelial migration of human leukocyte subpopulations: anti-porcine vascular cell adhesion molecule antibodies as species-specific blockers of transendothelial monocyte and natural killer cell migration Transplantation 69(9): 1837-1849
Ryffel, B.; Müller, S.; Foxwell, B. 1987: Cyclosporine a allows the expression of high affinity interleukin 2 binding sites on anti-T-cell antibody activated human T lymphocytes Transplantation Proceedings 19(1 Part 2): 1199-1201
Vasil'eva, L.F.; Kushner, S.G.; Selezneva, N.D. 1998: System of natural killer lymphocytes in Alzheimer's type dementias Zhurnal Nevrologii i Psikhiatrii Imeni S.S. Korsakova 98(10): 41-44
Willcox, H.N.; Newsom-Davis, J.; Calder, L.R. 1984: Cell types required for anti-acetylcholine receptor antibody synthesis by cultured thymocytes and blood lymphocytes in myasthenia gravis Clinical and Experimental Immunology 58(1): 97-106
Kuwajima, S. 1986: Studies on the interaction between cells infected with measles virus and anti-measles antibody. I. Cytotoxic antibody activity of sera obtained from patients with natural measles and subacute sclerosing panencephalitis by use of chronically infected cell lines Hokkaido Journal of Medical Science 61(1): 5-14