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Dehydrated Culture Media
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- BD® OMICS-Guard Sample Preservation Buffer
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Regulatory Status Legend
Any use of products other than the permitted use without the express written authorization of Becton, Dickinson and Company is strictly prohibited.
The CD36 antibody, clone CLB-IVC7, is derived from the hybridization of Sp2/0 mouse myeloma cells with spleen cells isolated from BALB/c mice immunized with human monocytes.
The CD36 antibody specifically binds to the 88-kilodalton (kDa) glycoprotein IV of platelets. The antigen is also known as GPIV, GP4, GP3B, thrombospondin receptor, PASIV, FAT, and SCARB3.
Development References (15)
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Barclay AN, Brown MH, Law SKA, McKnight AJ, Tomlinson MG, van der Merwe PA. The Leucocyte Antigen FactsBook 2nd ed. San Diego: Academic Press; 1997.
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Centers for Disease Control. Update: universal precautions for prevention of transmission of human immunodeficiency virus, hepatitis B virus, and other bloodborne pathogens in healthcare settings. MMWR. 1988; 37:377-388. (Biology).
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Clinical and Laboratory Standards Institute. 2005. (Biology).
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Endemann G, Stanton LW, Madden KS, Bryant CM, White RT, Protter AA. CD36 is a receptor for oxidized low density lipoprotein. J Biol Chem. 1993; 268:11811-11816. (Biology).
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Garcon L, Lacout C, Svinartchouk F, et al. Gfi-1B plays a critical role in terminal differentiation of normal and transformed erythroid progenitor cells. Blood. 2005; 105:1448-1455. (Biology).
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Greenwalt DE, Lipsky RH, Ockenhouse CF, Ikeda H, Tandon NN, Jamieson GA. Membrane glycoprotein CD36: a review of its roles in adherence, signal transduction, and transfusion medicine.. Blood. 1992; 80(5):1105-15. (Biology). View Reference
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Handunnetti SM, van Schravendijk MR, Hasler T, Barnwell JW, Greenwalt DE, Howard RJ. Involvement of CD36 on erythrocytes as a rosetting receptor for Plasmodium falciparum-infected erythrocytes.. Blood. 1992; 80(8):2097-104. (Biology). View Reference
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Ockenhouse CF, Magowan C, Chulay JD. Activation of monocytes and platelets by monoclonal antibodies or malaria-infected erythrocytes binding to the CD36 surface receptor in vitro.. J Clin Invest. 1989; 84(2):468-75. (Biology). View Reference
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Ockenhouse CF, Tandon NN, Magowan C, Jamieson GA, Chulay JD. Identification of a platelet membrane glycoprotein as a falciparum malaria sequestration receptor.. Science. 1989; 243(4897):1469-71. (Biology). View Reference
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Scicchitano MS, McFarland DC, Tierney LA, Narayanan PK, Schwartz LW. In vitro expansion of human cord blood CD36+ erythroid progenitors: temporal changes in gene and protein expression. Exp Hematol. 2003; 31:760-769. (Biology).
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Tandon NN, Kralisz U, Jamieson GA. Identification of glycoprotein IV (CD36) as a primary receptor for platelet-collagen adhesion.. J Biol Chem. 1989; 264(13):7576-83. (Biology). View Reference
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Zola H, Swart B, Nicholson I, Voss E. Leukocyte and Stromal Cell Molecules: The CD Markers. 2007. (Biology).
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de Haas M, von dem Borne AEG. CD36 Workshop Panel report. In: Kishimoto T. Tadamitsu Kishimoto .. et al., ed. Leucocyte typing VI : white cell differentiation antigens : proceedings of the sixth international workshop and conference held in Kobe, Japan, 10-14 November 1996. New York: Garland Pub.; 1997:636-637.
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de Wolf JT, Muller EW, Hendriks DH, Halie RM, Vellenga E. Mast cell growth factor modulates CD36 antigen expression on erythroid progenitors from human bone marrow and peripheral blood associated with ongoing differentiation. Blood. 1994; 84:59-64. (Biology).
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van Dongen JJ, Lhermitte L, Böttcher S, et al. EuroFlow antibody panels for standardized n-dimensional flow cytometric immunophenotyping of normal, reactive and malignant leukocytes. Leukemia. 2012; 26(9):1908-1975. (Biology). View Reference
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