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安诺伦(北京)生物科技有限公司 WSU Monoclonal Antibody Center 专业代理,ebioshop-e生物商城,科研试剂一体化解决方案平台提供商,产品信息欢迎电询:4009658633,010-56256916    

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       http://vmp.vetmed.wsu.edu/resources/monoclonal-antibody-center

 
       In the mid 70s, a group of investigators demonstrated in mice that it is possible to immortalize B  lymphocytes producing single monospecific antibodies (mAbs) by fusing B lymphocytes to tissue culture adapted myeloma (malignant form of an antibody producing cell) cells. The hybrid cells (hybridomas) were stable and could be maintained in culture indefinitely or preserved in liquid nitrogen for later use. These findings represented a major breakthrough in the way antibody reagents could be developed for basic and biomedical research. Mice could be immunized with antigens of interest and then used as a source of B lymphocytes to produce mAbs of known specificity. The spleen was shown to be the best source of B lymphocytes for making hybridomas. Hybridomas producing the desired mAbs could be identified by examining culture medium from primary cultures of fused cells. In subsequent investigations, myeloma fusion partners were developed that could only grow in selective growth medium if fused to a B lymphocyte, eliminating the problem of distinguishing hybridomas from cells that had not fused with a B lymphocyte. Myeloma fusion partners were later identified that could no longer produce their own antibody but could produce antibody derived from the B lymphocyte. These advances simplified and improved the methodology for producing mAbs.

       Research universities, research institutes and industry established core facilities to exploit mAb technology to develop mAbs for use as analytical tools in the biological and biomedical sciences, in the characterization of the immune system, study the mechanisms by which pathogens cause disease, develop improved diagnostic assays, and identify antigens from pathogens that can be used in subunit vaccines. Because of our research needs, we started developing mAbs for use in food and companion animal research and diagnostic medicine in 1979. To encourage other investigators to use mAb technology, we sponsored the first international symposium and workshop ‘Impact of Monoclonal Antibody Technology on Animal and Plant Agricultural Research’ in June of 1982. We also participated in a workshop sponsored by the National Research Council of the National Academy of Science on ‘Priorities in Biotechnology Research for International Development held in July of 1982, a symposium sponsored by the USDA ‘Hybridoma Technology in Agricultural and Veterinary Research’ held in Oct. of 1983 and an international conference sponsored by the International Laboratory for Research on Animal Diseases ‘The Ruminant Immune System In Health and Disease’ held in Kenya Africa in September 1983. In 1984, we co-sponsored a meeting with Australia ‘Characterization of the Bovine Immune System and the Genes Regulating Expression of Immunity with Particular Reference to their Role in Disease Resistance’ held in Honolulu, Hawaii. During this period of time, we developed some of the first sets of mAbs for use in the study of the immune system in food and companion animals. We also participated in all the international workshops to characterize the first sets of mAbs.
 
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抗体类:
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    多种试剂盒、PCR试剂盒、DNA提取试剂盒、RT实时定量试剂盒
蛋白类:
    重组蛋白/天然构象蛋白
    小分子抗原、细胞因子
多肽类:
化妆品肽
Fmoc-氨基酸
Boc-氨基酸
Z-氨基酸
短肽试剂
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    肿瘤细胞/传代细胞/原代细胞
    定制化的耐药细胞
    高品质血清
    常用培养基,分子细胞实验试剂
    合成引物/载体/质粒
化学品与试剂:
    化学中间体
    化学合成常用试剂
    定制中间体合成
    对照品/标准品
    液相/气相色谱实验佐剂

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