一种由骨髓瘤细胞分泌的基因工程单基因编码抗tag72嵌合抗体。

Human antibodies and hybridomas Pub Date : 1995-01-01
Y Qi, J Xiang
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引用次数: 0

摘要

SP2/0Ag14小鼠骨髓瘤细胞转染含有单基因FV- ch2 -3的表达载体mpSV2neo-EP-FV-CH2-3-PA后,分泌出单基因编码的嵌合抗体分子FV/M4。该单链蛋白由重链和轻链可变结构域(VH和VL)通过柔性连接肽共价连接而成,VL结构域的羧基端连接到ccM4重链铰链区的氨基端。我们的数据显示,FV/M4与亲本ccM4抗体一样,保留了对肿瘤相关的TAG72抗原的免疫反应性和对肿瘤细胞的细胞溶解活性。因此,这种单基因构建方法规避了将两个基因传递到哺乳动物细胞中组装功能性嵌合抗体所固有的低效率,并为嵌合抗体的构建提供了一种替代方法。它特别吸引人的是体外转染来自患者的细胞,用于某些基因治疗方式,不仅用于癌症,而且用于使用免疫治疗方法的一系列疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A genetically engineered single-gene-encoded anti-TAG72 chimeric antibody secreted from myeloma cells.

SP2/0Ag14 murine myeloma cells transfected with the expression vector mpSV2neo-EP-FV-CH2-3-PA containing the single gene FV-CH2-3 secreted a single-gene-encoded chimeric antibody molecule FV/M4. This single-chain protein consisted of the heavy- and light-chain variable (VH and VL) domains covalently joined through a flexible linker peptide, while the carboxyl end of VL domain was connected to the amino terminus of hinge region of the ccM4 heavy-chain. Our data showed that the FV/M4 retained both its immunoreactivity for tumor-associated TAG72 antigen and its cytolytic activity to tumor cells as did the parental ccM4 antibody. Therefore, this single-gene-construct approach circumvents inefficiencies inherent in delivering two genes into a mammalian cell for assembly of a functional chimeric antibody and provides an alternative for construction of chimeric antibodies. It is particularly attractive for ex vivo transfection of cells from patients for certain gene-therapy modalities not only for cancer but also for a range of diseases in which immunotherapeutic approaches are used.

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