高亲和嵌合抗结直肠癌抗体ccM4的构建与表征。

Molecular biotherapy Pub Date : 1992-12-01
J Xiang, T Moyana, J Kalra, T Hamilton, Y Qi
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引用次数: 0

摘要

我们通过构建两个表达载体,即嵌合重链表达载体mpSV2neo-EP1-Vm4Cr1和嵌合轻链表达载体mpSV2gpt-EP1-VKCK,制备了高亲和力的嵌合抗结直肠癌抗体ccM4。这些载体包含neo或gpt基因作为选择标记,小鼠免疫球蛋白启动子和增强子(EP1),人类免疫球蛋白恒定区基因组DNA片段(CK和C γ 1),以及小鼠VH和VK区cDNA片段,通过聚合链反应技术直接从B72.3杂杂瘤RNA中扩增而来。将这两种载体dna依次转染到SP2/0Ag14细胞系中。在含有G418和霉酚酸的培养基中选择转基因。ccM4抗体是从与TAG72抗原在蛋白a柱上的阳性结合反应的转染上清中纯化出来的。结果表明,ccM4抗体对TAG72抗原的结合活性与其对应的高亲和力嵌合重链cB72.3m4抗体相同。ccM4抗体特异性结合人结肠癌细胞,表现出与cB72.3m4抗体相似的生物分布模式,并介导有效的抗体依赖性细胞对人OVCAR3肿瘤细胞的细胞毒性。因此,高亲和力嵌合的ccM4抗体在肿瘤免疫治疗中具有重要的应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Construction and characterization of a high-affinity chimeric anti-colorectal carcinoma antibody ccM4.

We have produced a high-affinity chimeric anti-colorectal carcinoma antibody, ccM4, chimerized in both heavy and light chains by the construction of two expression vectors, the chimeric heavy-chain expression vector mpSV2neo-EP1-Vm4Cr1 and chimeric light-chain vector mpSV2gpt-EP1-VKCK. These vectors contained the neo or gpt gene as a selection marker, the murine immunoglobulin promoter and enhancer (EP1), the genomic DNA fragments of human immunoglobulin constant region (CK and C gamma 1), and murine cDNA fragments of VH and VK region amplified and cloned directly from the B72.3 hybridoma RNA by the polymer chain reaction technique. These two vector DNAs were sequentially transfected into the SP2/0Ag14 cell line. Transfectants were selected in media containing both G418 and mycophenolic acid. The ccM4 antibody was purified from transfectant supernatants with positive binding reactivity for the TAG72 antigen on a protein A column. We demonstrated that ccM4 antibody retained the same high binding reactivity for the TAG72 antigen as its counterpart, the high-affinity chimeric heavy-chain cB72.3m4 antibody. The ccM4 antibody bound specifically to human colon cancer cells, displayed biodistribution patterns similar to cB72.3m4 antibody, and mediated effective antibody-dependent cellular cytotoxicity to human OVCAR3 tumor cells. Therefore, the high-affinity chimeric ccM4 antibody should be useful in cancer immunotherapy.

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