CD36 gene transfer confers capacity for phagocytosis of cells undergoing apoptosis
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[1] R. Silverstein,et al. Oxidized LDL binds to CD36 on human monocyte-derived macrophages and transfected cell lines. Evidence implicating the lipid moiety of the lipoprotein as the binding site. , 1995, Arteriosclerosis, thrombosis, and vascular biology.
[2] J. Sprent,et al. T-cell apoptosis detected in situ during positive and negative selection in the thymus , 1994, Nature.
[3] M. Salmon,et al. The specific recognition by macrophages of CD8+,CD45RO+ T cells undergoing apoptosis: a mechanism for T cell clearance during resolution of viral infections , 1994, The Journal of experimental medicine.
[4] S. Nagata,et al. Lethal effect of the anti-Fas antibody in mice , 1993, Nature.
[5] P. Grimaldi,et al. Cloning of a rat adipocyte membrane protein implicated in binding or transport of long-chain fatty acids that is induced during preadipocyte differentiation. Homology with human CD36. , 1993, The Journal of biological chemistry.
[6] J. Hickman,et al. bcl-2 modulation of apoptosis induced by anticancer drugs: resistance to thymidylate stress is independent of classical resistance pathways. , 1993, Cancer research.
[7] L. Stanton,et al. CD36 is a receptor for oxidized low density lipoprotein. , 1993, The Journal of biological chemistry.
[8] D. Carson,et al. Apoptosis and disease , 1993, The Lancet.
[9] C. Haslett,et al. Different populations of macrophages use either the vitronectin receptor or the phosphatidylserine receptor to recognize and remove apoptotic cells. , 1992, Journal of immunology.
[10] C. Haslett. Resolution of acute inflammation and the role of apoptosis in the tissue fate of granulocytes. , 1992, Clinical science.
[11] J Savill,et al. Thrombospondin cooperates with CD36 and the vitronectin receptor in macrophage recognition of neutrophils undergoing apoptosis. , 1992, The Journal of clinical investigation.
[12] L. Leung,et al. CD36 peptides enhance or inhibit CD36-thrombospondin binding. A two-step process of ligand-receptor interaction. , 1992, The Journal of biological chemistry.
[13] H. Ikeda,et al. Membrane glycoprotein CD36: a review of its roles in adherence, signal transduction, and transfusion medicine. , 1992, Blood.
[14] R. Silverstein,et al. Sense and antisense cDNA transfection of CD36 (glycoprotein IV) in melanoma cells. Role of CD36 as a thrombospondin receptor. , 1992, The Journal of biological chemistry.
[15] N. Berger,et al. Genome digestion is a dispensable consequence of physiological cell death mediated by cytotoxic T lymphocytes , 1992, Molecular and cellular biology.
[16] M. Raff,et al. Social controls on cell survival and cell death , 1992, Nature.
[17] V. Fadok,et al. Exposure of phosphatidylserine on the surface of apoptotic lymphocytes triggers specific recognition and removal by macrophages. , 1992, Journal of immunology.
[18] F. Maly,et al. Human monocytes CD36 and CD16 are signaling molecules. Evidence from studies using antibody-induced chemiluminescence as a tool to probe signal transduction. , 1990, Immunology.
[19] A. Frelinger,et al. Selective inhibition of integrin function by antibodies specific for ligand-occupied receptor conformers. , 1990, The Journal of biological chemistry.
[20] N. Hogg,et al. Vitronectin receptor-mediated phagocytosis of cells undergoing apoptosis , 1990, Nature.
[21] C. Haslett,et al. Phagocytosis of aged human neutrophils by macrophages is mediated by a novel "charge-sensitive" recognition mechanism. , 1989, The Journal of clinical investigation.
[22] M. Horton,et al. The osteoclast functional antigen, implicated in the regulation of bone resorption, is biochemically related to the vitronectin receptor , 1989, The Journal of cell biology.
[23] Brian Seed,et al. CD36 directly mediates cytoadherence of Plasmodium falciparum parasitized erythrocytes , 1989, Cell.
[24] N. Tandon,et al. Identification of glycoprotein IV (CD36) as a primary receptor for platelet-collagen adhesion. , 1989, The Journal of biological chemistry.
[25] C. Ockenhouse,et al. Identification of a platelet membrane glycoprotein as a falciparum malaria sequestration receptor. , 1989, Science.
[26] M. Walport,et al. Macrophage phagocytosis of aging neutrophils in inflammation. Programmed cell death in the neutrophil leads to its recognition by macrophages. , 1989, The Journal of clinical investigation.
[27] J. Barnwell,et al. Isolation of the thrombospondin membrane receptor. , 1987, The Journal of clinical investigation.
[28] V. Dixit,et al. Monoclonal antibodies that recognize calcium-dependent structures of human thrombospondin. Characterization and mapping of their epitopes. , 1986, The Journal of biological chemistry.
[29] N. Hogg,et al. Monoclonal antibodies specific for platelet glycoproteins react with human monocytes. , 1984, Blood.
[30] V. D’Agati,et al. Monoclonal anti-human monocyte antibodies OKM1 and OKM5 possess distinctive tissue distributions including differential reactivity with vascular endothelium. , 1984, Journal of immunology.
[31] Yingyu Ren,et al. Cd36 Gene Transfer Confers Capacity for Phagocytosis of Cells Undergoing Apoptosis , 1995 .
[32] Ez-Zoubir Amrill,et al. Cloning of a Rat Adipocyte Membrane Protein Implicated in Binding or Transport of Long-chain Fatty Acids That Is Induced during Preadipocyte , 1993 .
[33] C. Haslett,et al. Phagocyte recognition of cells undergoing apoptosis. , 1993, Immunology today.
[34] A. Wyllie,et al. Cell death: the significance of apoptosis. , 1980, International review of cytology.