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用完全人源化 B 细胞成熟抗原特异性 T 细胞抗原偶联受体改造的 T 细胞有效靶向多发性骨髓瘤

英文原题:T-cell engineered with a fully humanized B-cell maturation antigen-specific T-cell antigen coupler receptor effectively target multiple myeloma.

查看英文原题

T-cell engineered with a fully humanized B-cell maturation antigen-specific T-cell antigen coupler receptor effectively target multiple myeloma.

PubMed 2023/02/11(内容时间) Cytotherapy Q1 · IF 4.5(JCR 2025)

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中文摘要

B细胞成熟抗原(BCMA)是多个骨髓瘤经临床验证的靶点。用针对BCMA的嵌合抗原受体(CAR)工程化的T细胞在临床试验中已显示出强大的治疗活性,但毒性仍是部分患者的重要问题,这支持继续研究其他可能提供同等疗效且毒性特征改善的工程化T细胞平台。作者最近描述了一种BCMA特异性的、以T细胞为中心的合成抗原受体,即T细胞抗原偶联器(TAC)受体,可用于工程化具有强大抗骨髓瘤活性的T细胞。

在此,作者描述了全人源化BCMA特异性TAC受体的创建。单链可变片段(scFv)由在全人源噬菌体展示库中鉴定出的BCMA特异性F(ab)开发而来。使用原代T细胞对24种F(ab)构型进行了中通量筛选评估,其中单一F(ab),TRAC 3625,在体外和体内评估后显示出最强的效果。通过迭代BCMA-TAC设计,评估了下一代TAC支架序列、连接TAC与3625 scFv的不同结构域以及TRAC 3625重链和轻链可变区的不同方向,从而开发出优化的BCMA特异性TAC受体。

展开英文摘要原文

B-cell maturation antigen (BCMA) is a clinically validated target for multiple myeloma. T-cell engineered with chimeric antigen receptors (CARs) directed against BCMA have demonstrated robust therapeutic activity in clinical trials, but toxicities remain a significant concern for a subset of patients, supporting continued investigation of other engineered T-cell platforms that may offer equal efficacy with an improved toxicity profile.

The authors recently described a BCMA-specific, T-cell-centric synthetic antigen receptor, the T-cell antigen coupler (TAC) receptor, that can be used to engineer T-cell with robust anti-myeloma activity.

Here the authors describe the creation of a fully humanized BCMA-specific TAC receptor. Single-chain variable fragments (scFvs) were developed from BCMA-specific F(ab)s that were identified in a fully human phage display library. Twenty-four configurations of the F(ab)s were evaluated in a medium-throughput screening using primary T-cell, and a single F(ab), TRAC 3625, emerged as the most robust following in vitro and in vivo evaluation.

An optimized BCMA-specific TAC receptor was developed through iterations of the BCMA-TAC design that evaluated a next-generation TAC scaffold sequence, different domains connecting the TAC to the 3625 scFv and different orientations of the TRAC 3625 heavy and light variable regions.

论文信息

作者
Bezverbnaya K、Hammill JA、Cummings D、Bojovic B、Groisman B、Baker CL、Aarts C、Hayes DL
第一作者单位
McMaster Immunology Research Center, McMaster University, Hamilton, Canada; Department of Medicine, McMaster University, Hamilton, Canada.Canada
通讯作者单位
McMaster Immunology Research Center, McMaster University, Hamilton, Canada; Department of Medicine, McMaster University, Hamilton, Canada; Center for Discovery in Cancer Research, McMaster University, Hamilton, Canada; Office of the Vice Dean, Research, Faculty of Health Sciences, McMaster University, Hamilton, Canada. Electronic address: bramsonj@mcmaster.ca.Canada
文献类型
非美国政府资助研究
期刊
Cytotherapy2023 May
原文标识
PubMed 36781360 · DOI 10.1016/j.jcyt.2023.01.002