抗独特型抗体促进scFv嵌合免疫受体基因转导和人淋巴细胞克隆扩增用于肿瘤治疗。

Nai-Kong V Cheung, Hong-Fen Guo, Shakeel Modak, Irene Y Cheung
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引用次数: 27

摘要

嵌合免疫受体(CIR)通过CD28/TCRzeta信号转导进入淋巴细胞,通过单链抗体Fv (scFv)连接目标识别并激活。作为替代抗原,抗独特型抗体可以促进人淋巴细胞的基因转导和克隆扩增,用于体内肿瘤治疗。小鼠单克隆抗体(MAb) 8H9与实体瘤上广泛表达的新抗原反应。构建了一个由人CD8-leader序列、8H9-scFv、CD28(跨膜和细胞质结构域)和TCR-zeta链组成的CIR,连接到pMSCVneo载体上,并用于转染具有两性亲和性包膜的包装系GP + envAM12。利用大鼠抗独特型单克隆抗体2E9 (IgG2a)克隆逆转录病毒生产细胞系,并扩增基因修饰的原代人淋巴细胞。使用亲和层析或使用抗独特型MAb 2E9进行细胞分选的顺序富集显著提高了8H9-scFv表面阳性的生产者克隆的百分比及其上清转导指示细胞系K562的效率。体外培养3周时,>95%转导的人原代淋巴细胞呈cirr阳性。在2E9的周期性刺激下,这些淋巴细胞在培养6个月后扩增>10(6)倍。它们介导抗原特异性非mhc限制细胞因子释放和肿瘤细胞毒性,并抑制SCID小鼠的人类异种移植物植入。抗独特型抗体可能为优化CIR融合构建体在人原代淋巴细胞中的基因转导及其在体外的持续扩增提供有用的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anti-idiotypic antibody facilitates scFv chimeric immune receptor gene transduction and clonal expansion of human lymphocytes for tumor therapy.

Chimeric immune receptors (CIR) transduced into lymphocytes link target recognition by single chain antibody Fv (scFv) to activation through CD28/TCRzeta signaling. As surrogate antigens, anti-idiotypic antibodies may facilitate gene-transduction and clonal expansion of human lymphocytes for in vivo tumor therapy. The murine monoclonal antibody (MAb) 8H9 reacts with a novel antigen widely expressed on solid tumors. A CIR consisting of human CD8-leader sequence, 8H9-scFv, CD28 (transmembrane and cytoplasmic domains), and TCR-zeta chain was constructed, ligated into the pMSCVneo vector, and used to transfect the packaging line GP + envAM12 bearing an amphotropic envelope. Rat anti-idiotypic MAb 2E9 (IgG2a) was used to clone retroviral producer line as well as to expand gene-modified primary human lymphocytes. Sequential enrichments using either affinity chromatography or cell sorting using anti-idiotypic MAb 2E9 significantly improved the percentage of producer clones positive for surface 8H9-scFv and the efficiency of their supernatant in transducing the indicator cell line K562. By 3 weeks of in vitro culture, >95% of transduced primary human lymphocytes were CIR-positive. Upon periodic stimulation with 2E9, these lymphocytes underwent >10(6)-fold expansion by 6 months in culture. They mediated antigen-specific non-MHC restricted cytokine release and tumor cytotoxicity, and inhibited human xenograft engraftment in SCID mice. Anti-idiotypic antibody may provide a useful tool for optimizing gene transduction of CIR fusion constructs into primary human lymphocytes and their continual expansion in vitro.

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