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基于定向进化的配体发现用于 CAR-T 细胞的体内再刺激

英文原题:Directed evolution-based discovery of ligands for in vivo restimulation of chimeric antigen receptor T cells.

查看英文原题

Directed evolution-based discovery of ligands for in vivo restimulation of chimeric antigen receptor T cells.

PubMed 2025/08/25(内容时间) Nat Biomed Eng Q1 · IF 26.3(JCR 2025)

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中文摘要

靶向 CD19 的 CAR-T 对 B 细胞恶性肿瘤具有显著临床疗效,但许多患者因 CAR-T 扩增失败和/或逐渐丢失而复发。研究者近期报告了一种在体内强效再刺激 CAR-T 的策略:给予类似疫苗的刺激物,其中 CAR 替代肽配体与靶向淋巴结的两亲性 PEG-脂质连接(amph-vax),可增强 CAR-T 功能。本文展示一种通用策略,用于发现和优化肽模拟表位,从而为任意 CAR 制备 amph-vax。研究者使用酵母表面展示鉴定结合 FMC63(临床 CD19 CAR 使用的 scFv)的肽,再通过定向进化提高亲和力。在 B 急性淋巴细胞白血病/淋巴瘤同基因和人源化小鼠模型中,采用这些优化模拟表位制备的 CAR-T 疫苗均可显著扩增 CD19 CAR-T 并促进记忆形成,且与单用 CD19 CAR-T 的小鼠相比,疾病进展控制更好。该方法使 amph-vax 加强策略可应用于任何临床相关 CAR-T 产品。

展开英文摘要原文

Chimeric antigen receptor (CAR) T cell therapy targeting CD19 elicits remarkable clinical efficacy in B cell malignancies, but many patients relapse owing to failed expansion and/or progressive loss of CAR-T cells.

We recently reported a strategy to potently restimulate CAR-T cells in vivo, enhancing their functionality by administration of a vaccine-like stimulus comprised of surrogate peptide ligands for a CAR linked to a lymph node-targeting amphiphilic PEG-lipid (amph-vax).

Here we demonstrate a general strategy to discover and optimize peptide mimotopes enabling amph-vax generation for any CAR.

We use yeast surface display to identify peptide binders to FMC63 (the scFv used in clinical CD19 CARs), which are then subsequently affinity matured by directed evolution.

CAR-T vaccines using these optimized mimotopes triggered marked expansion and memory development of CD19 CAR-T cells in both syngeneic and humanized mouse models of B-acute lymphoblastic leukaemia/lymphoma, and enhanced control of disease progression compared with CD19 CAR-T-only-treated mice. This approach enables amph-vax boosting to be applied to any clinically relevant CAR-T cell product.

论文信息

作者
Grzywa TM、Neeser A、Ramasubramanian R、Romanov A、Tannir R、Mehta NK、Cossette B、Morgan DM
第一作者单位
The Raymond G. Perelman Center for Cellular and Molecular Therapeutics, Children's Hospital of Philadelphia, Philadelphia, PA, USA.United States
通讯作者单位
David H. Koch Institute for Integrative Cancer Research, MIT, Cambridge, MA, USA. djirvine@scripps.edu.United Kingdom
期刊
Nature biomedical engineering2026 Apr
原文标识
PubMed 40855124 · DOI 10.1038/s41551-025-01470-0