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Influenza virus-infected dendritic cells stimulate strong proliferative and cytolytic responses from human CD8+ T cells
Nina Bhardwaj, Armin Bender, and Noemi Gonzalez
Bhardwaj, N., Bender, A., Gonzalez, N., Bui, L.K., Garrett, M.C., and Steinman, R.M. Influenza virus-infected dendritic cells stimulate strong proliferative and cytolytic responses from human CD8+ T cells. J. Clin. Invest. 94: 797-807,1994
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The tissue distribution of the B7-2 costimulator in mice: abundant expression on dendritic cells in situ and during maturation in vitro
Kayo Inaba, Margit D. Witmer-Pack, and Muneo M. Inaba
Inaba, K., Witmer-Pack, M., Inaba, M., Sakuta, H., Hathcock, K.S., Azuma, M., Yagita, H., Okumura, K., Linsley, P.S., Ikehara, S., Muramatsu, S., Hodes, R.J., and Steinman, R.M. The tissue distribution of the B7-2 costimulator in mice: abundant expression on dendritic cells in situ and during maturation in vitro. J. Exp. Med. 180: 1849-1860, 1994
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Proliferating dendritic cell progenitors in human blood
Nikolaus Romani, Stefan Gruner, and Daniela Brang
Romani, N., Gruner, S., Brang, D., Kampgen, E., Lenz, A., Trockenbacher, B., Konwalinka, G., Fritsch, P.O., Steinman, R.M., and Schuler, G. Proliferating dendritic cell progenitors in human blood. J. Exp. Med. 180:83-93, 1994
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Small amounts of superantigen on dendritic cells are sufficient to initiate T cell responses
Nina Bhardwaj, James W. Young, and Anahid J. Nisanian
Bhardwaj, N., Young, J.W., Nisanian, A.J., Baggers, J., and Steinman, R.M. Small amounts of superantigen on dendritic cells are sufficient to initiate T cell responses. J. Exp. Med. 178: 633-642, 1993
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Granulocytes, macrophages, and dendritic cells arise from a common major histocompatibility complex class II-negative progenitor in mouse bone marrow
Kayo Inaba, Muneo M. Inaba, and Masashi Deguchi
Inaba, K., Inaba, M., Deguchi, M., Hagi, K., Yasumizu, R., Ikehara, S., Muramatsu, S., and Steinman, R.M. Granulocytes, macrophages, and dendritic cells arise from a common major histocompatibility complex class II-negative progenitor in mouse bone marrow. Proc. Natl. Acad. Sci. USA. 90: 3038-3042, 1993
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Dendritic cell progenitors phagocytose particulates, including Bacillus Calmette-Guerin organisms, and sensitize mice to mycobacterial antigens in vivo
Kayo Inaba, Muneo M. Inaba, Makoto Naito, and Ralph M. Steinman
Inaba, K., Inaba, M., Naito, M., and Steinman, R.M. Dendritic cell progenitors phagocytose particulates, including Bacillus Calmette-Guerin organisms, and sensitize mice to mycobacterial antigens in vivo. J. Exp. Med. 178: 479-488, 1993
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Dendritic cells exposed to Human Immunodeficiency Virus-1 transmit a vigorous cytopathic infection to CD4+ T cells
Cameron Dale Bess, Peter S. Freudenthal, and J. M. Barker
Cameron, P.U., Freudenthal, P.S., Barker, J.M., Gezelter, S., Inaba, K., and Steinman, R.M. Dendritic cells exposed to Human Immunodeficiency Virus-1 transmit a vigorous cytopathic infection to CD4+ T cells. Science 257: 383-387, 1992
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Generation of large numbers of dendritic cells from mouse bone marrow cultures supplemented with granulocyte-macrophage colony stimulating factor
Kayo Inaba, Muneo M. Inaba, and Nikolaus Romani
Inaba, K., Inaba, M., Romani, N., Aya, H., Deguchi, M., Ikehara, S., Muramatsu, S., and Steinman, R.M. Generation of large numbers of dendritic cells from mouse bone marrow cultures supplemented with granulocyte-macrophage colony stimulating factor. J. Exp. Med. 176: 1693-1702, 1992
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Identification of proliferating dendritic cell precursors in mouse blood
Kayo Inaba, Ralph M. Steinman, and Margit D. Witmer-Pack
Inaba, K., Steinman, R.M., Witmer-Pack, M., Aya, H., Inaba, M., Sudo, T., Wolpe, S., and Schuler, G. Identification of proliferating dendritic cell precursors in mouse blood. J. Exp. Med. 175: 1157-1167, 1992
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Dendritic cells are the principal cell in mouse spleen bearing immunogenic fragments of foreign proteins
Mary T. Crowley, Kayo Inaba, and Ralph M. Steinman
Crowley, M.T., Inaba, K., and Steinman, R.M. Dendritic cells are the principal cell in mouse spleen bearing immunogenic fragments of foreign proteins. J. Exp. Med. 172: 383-386, 1990
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The distinct surface of human blood dendritic cells as observed following an improved isolation method
Peter S. Freudenthal and Ralph M. Steinman
Freudenthal, P.S., and Steinman, R.M. The distinct surface of human blood dendritic cells as observed following an improved isolation method. Proc. Natl. Acad. Sci. USA 87: 7698-7702, 1990
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Dendritic cells pulsed with protein antigens in vitro can prime antigen specific, MHC restricted T cells in situ
Kayo Inaba, Joshua P. Metlay, Mary T. Crowley, and Ralph M. Steinman
Inaba, K., Metlay, J.P., Crowley, M.T., and Steinman, R.M. Dendritic cells pulsed with protein antigens in vitro can prime antigen specific, MHC restricted T cells in situ. J. Exp. Med. 172: 631-640, 1990
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Migration and maturation of Langerhans cells in skin transplants and explants
Christian P. Larsen, Ralph M. Steinman, and Margit D. Witmer-Pack
Larsen, C.P., Steinman, R.M., Witmer-Pack, M.D., Hankins, D.F., Morris, P.J., and Austyn, J.M. Migration and maturation of Langerhans cells in skin transplants and explants. J. Exp. Med. 172: 1483-1493, 1990
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The distinct leukocyte integrins of mouse spleen dendritic cells as identified with new hamster monoclonal antibodies
Joshua P. Metlay, Margit D. Witmer-Pack, and Ralf Agger
Metlay, J.P., Witmer-Pack, M.D., Agger, R., Crowley, M.T., Lawless, D., and Steinman, R.M. The distinct leukocyte integrins of mouse spleen dendritic cells as identified with new hamster monoclonal antibodies. J. Exp. Med. 171: 1753-1771, 1990
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Antigen processing by epidermal Langerhans cells correlates with the level of biosynthesis of MHC class II molecules and expression of invariant chain
Ellen Puré, Kayo Inaba, and Mary T. Crowley
Puré, E., Inaba, K., Crowley, M.T., Tardelli, L., Witmer-Pack, M.D., Ruberti, G., Fathman, G., and Steinman, R.M. Antigen processing by epidermal Langerhans cells correlates with the level of biosynthesis of MHC class II molecules and expression of invariant chain. J. Exp. Med. 172: 1459-1469, 1990
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Dendritic cells stimulate primary human cytolytic lymphocyte responses in the absence of CD4+ helper T cells
James W. Young and Ralph M. Steinman
Young, J.W., and Steinman, R.M. Dendritic cells stimulate primary human cytolytic lymphocyte responses in the absence of CD4+ helper T cells. J. Exp. Med. 171: 1315-1332, 1990
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A small number of anti-CD3 molecules on dendritic cells stimulates DNA synthesis in mouse T lymphocytes
Nikolaus Romani, Kayo Inaba, and Ellen Puré
Romani, N., Inaba, K., Puré, E., Crowley, M., Witmer-Pack, M., and Steinman, R.M. A small number of anti-CD3 molecules on dendritic cells stimulates DNA synthesis in mouse T lymphocytes. J. Exp. Med. 169: 1153-1168, 1989
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Presentation of exogenous protein antigens by dendritic cells to T cell clones: intact protein is presented best by immature, epidermal Langerhans cells
Nikolaus Romani, Sumil Koide, and Mary T. Crowley
Romani, N., Koide, S., Crowley, M., Witmer-Pack, M., Livingston, A.M., Fathman, C.G., Inaba, K., and Steinman, R.M. Presentation of exogenous protein antigens by dendritic cells to T cell clones: intact protein is presented best by immature, epidermal Langerhans cells. J. Exp. Med. 169: 1169-1178, 1989
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Direct activation of CD8+ cytotoxic T lymphocytes by dendritic cells
Kayo Inaba, James W. Young, and Ralph M. Steinman
Inaba, K., Young, J.W., and Steinman, R.M. Direct activation of CD8+ cytotoxic T lymphocytes by dendritic cells. J. Exp. Med. 166: 182-194, 1987
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Granulocyte-macrophage colony stimulating factor is essential for the viability and function of cultured murine epidermal Langerhans cells
Margit D. Witmer-Pack, Wendy A. Olivier, and Jay E. Valinsky
Witmer-Pack, M.D., Olivier, W., Valinsky, J., Schuler, G., and Steinman, R.M. Granulocyte-macrophage colony stimulating factor is essential for the viability and function of cultured murine epidermal Langerhans cells. J. Exp. Med. 166: 1484-1498, 1987
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Immunologic properties of purified epidermal Langerhans cells: Distinct requirements for stimulation of unprimed and sensitized T lymphocytes
Kayo Inaba, Gerold Schuler, and Margit D. Witmer
Inaba, K., Schuler, G., Witmer, M., Valinsky, J., Atassi, B., and Steinman, R.M. Immunologic properties of purified epidermal Langerhans cells: Distinct requirements for stimulation of unprimed and sensitized T lymphocytes. J. Exp. Med. 164: 605-613, 1986.
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Accessory cell - T lymphocyte interactions: antigen dependent and independent clustering
Kayo Inaba and Ralph M. Steinman
Inaba, K., and Steinman, R.M. Accessory cell - T lymphocyte interactions: antigen dependent and independent clustering. J. Exp. Med. 163: 247-261, 1986
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Murine Kupffer cells: mononuclear phagocytes deficient in the generation of reactive oxygen intermediates
David A. Lepay, Carl F. Nathan, and Ralph M. Steinman
Lepay, D.A., Nathan, C.F., Steinman, R.M., Murray, H.W., and Cohn, Z.A. Murine Kupffer cells: mononuclear phagocytes deficient in the generation of reactive oxygen intermediates. J. Exp. Med. 161: 1079-1096, 1985
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Murine epidermal Langerhans cells mature into potent immunostimulatory dendritic cells in vitro
Gerold Schuler and Ralph M. Steinman
Schuler, G., and Steinman, R.M. Murine epidermal Langerhans cells mature into potent immunostimulatory dendritic cells in vitro. J. Exp. Med. 161: 526-546, 1985
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