首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A novel strategy for generating monoclonal antibodies from single isolated lymphocytes producing antibodies of defined specificities.
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A novel strategy for generating monoclonal antibodies from single isolated lymphocytes producing antibodies of defined specificities.

机译:从单个分离的淋巴细胞产生单克隆抗体的新颖策略该淋巴细胞产生确定的特异性抗体。

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摘要

We report a novel approach to the generation of monoclonal antibodies based on the molecular cloning and expression of immunoglobulin variable region cDNAs generated from single rabbit or murine lymphocytes that were selected for the production of specific antibodies. Single cells secreting antibodies for a specific peptide either from gp116 of the human cytomegalovirus or from gp120 of HIV-1 or for sheep red blood cells were selected using antigen-specific hemolytic plaque assays. Sheep red blood cells were coated with specific peptides in a procedure applicable to any antigen that can be biotinylated. Heavy- and light-chain variable region cDNAs were rescued from single cells by reverse transcription-PCR and expressed in the context of human immunoglobulin constant regions. These chimeric murine and rabbit monoclonal antibodies replicated the target specificities of the original antibody-forming cells. The selected lymphocyte antibody method exploits the in vivo mechanisms that generate high-affinity antibodies. This method can use lymphocytes from peripheral blood, can exploit a variety of procedures that identify individual lymphocytes producing a particular antibody, and is applicable to the generation of monoclonal antibodies from many species, including humans.
机译:我们报告了一种新的方法,用于基于分子克隆和免疫球蛋白可变区cDNA的表达的单克隆抗体的产生,该cDNA从选择用于产生特定抗体的单只兔或鼠淋巴细胞产生。使用抗原特异性溶血噬菌斑测定法选择分泌来自人巨细胞病毒gp116或HIV-1 gp120或绵羊红细胞的特定肽的抗体的单细胞。在适用于任何可被生物素化的抗原的过程中,用特定的肽包被绵羊红细胞。重链和轻链可变区cDNA通过逆转录PCR从单细胞中拯救出来,并在人免疫球蛋白恒定区的背景下表达。这些嵌合鼠和兔单克隆抗体复制了原始抗体形成细胞的靶标特异性。所选的淋巴细胞抗体方法利用了产生高亲和力抗体的体内机制。该方法可以使用来自外周血的淋巴细胞,可以利用多种程序来鉴定产生特定抗体的单个淋巴细胞,并且适用于从包括人类在内的许多物种产生单克隆抗体。

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