单克隆抗体
表位
抗体
肽
体内
化学
T细胞
抗原
组合化学
癌症研究
分子生物学
免疫系统
生物
生物化学
免疫学
生物技术
作者
Fuxin Xue,Haochen Yao,Linjie Cui,Yue Huang,Changlu Shao,Na Shen,Junli Hu,Zhaohui Tang,Xuesi Chen
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-05-15
卷期号:23 (10): 4191-4200
被引量:6
标识
DOI:10.1021/acs.nanolett.3c00071
摘要
Multispecific antibodies (MsAbs) maintain the specificity of versatile antibodies while simultaneously addressing different epitopes for a cumulative, collaborative effect. They could be an alternative treatment to chimeric antigen receptor-T cell therapy by helping to redirect T cells to tumors in vivo. However, one major limitation of their development is their relatively complex production process, which involves performance of a massive screen with low yield, inconsistent quality, and nonnegligible impurities. Here, a poly(l-glutamic acid)-conjugated multiple Fc binding peptide-based synthesis nanoplatform was proposed, in which MsAbs were constructed by mixing the desired monoclonal antibodies (mAbs) with polymeric Fc binding peptides in aqueous solution without purification. To determine its efficacy, a dual immune checkpoint-based PD1/OX40 bispecific antibody and PDL1/CD3e/4-1BB trispecific antibody-based T cell engager were generated to trigger antitumor CD8+ T responses in mice, showing superior tumor suppression over free mixed mAbs. In this study, a facile, versatile build platform for MsAbs was established.
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