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Piezo1 作为实体瘤 T 细胞免疫治疗中的机械检查点

英文原题:Piezo1 as a mechanical checkpoint in T cell immunotherapy for solid tumors.

查看英文原题

Piezo1 as a mechanical checkpoint in T cell immunotherapy for solid tumors.

PubMed 2026/02/09(内容时间) Front Pharmacol Q1 · IF 5.4(JCR 2025)

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中文摘要

T细胞免疫疗法对实体瘤的疗效有限,主要原因是肿瘤微环境(TME)具有免疫抑制性且机械环境不利。在此背景下,机械敏感离子通道Piezo1已成为TME的重要机械感受器,但其在调节T细胞介导的抗肿瘤免疫中的作用仍有待阐明。本综述旨在汇总Piezo1调节T细胞活化、增殖和浸润等功能的现有证据,并阐述其对实体瘤免疫治疗的更广泛影响。

我们重点讨论Piezo1在免疫环境中的双重调节作用:短暂激活可显著增强T细胞效应功能和细胞毒性;而在僵硬TME中的慢性刺激则反常地促进T细胞耗竭。

重要的是,临床前研究显示,调节Piezo1信号,尤其与基质正常化联合,可协同增强过继T细胞浸润、持久性和总体抗肿瘤效力,并改善内源性免疫应答。这些发现提示Piezo1是改善T细胞疗法的有前景机械检查点。

然而,临床应用仍面临显著挑战,包括机械信号的异质性以及Piezo1在不同细胞类型中的多效性。未来研究应着重开发T细胞特异性机械疗法、发现新靶点并验证机械生物标志物,以指导患者分层并加快“机械免疫学”的临床转化。

展开英文摘要原文

T cell-based immunotherapies exhibit limited efficacy against solid tumors, a challenge primarily attributed to the immunosuppressive and mechanically hostile tumor microenvironment (TME). Within this context, the mechanosensitive ion channel Piezo1 has emerged as a key TME mechanosensor, yet its role in modulating T cell-mediated anti-tumor immunity remains to be fully elucidated.

This review aims to synthesize existing evidence on Piezo1's regulation of T cell functions, including activation, proliferation, and infiltration, and its broader impact on immunotherapy for solid tumors.

We highlight Piezo1's dual regulatory function in the immune landscape: acute activation robustly enhances T cell effector functions and cytotoxicity, whereas chronic stimulation within the stiff TME paradoxically promotes T cell exhaustion.

Importantly, preclinical studies demonstrate that modulating Piezo1 signaling, particularly in combination with matrix normalization synergistically enhances the infiltration, persistence, and overall antitumor efficacy of adoptive T cells and endogenous immune responses.

These findings position Piezo1 as a promising mechanical checkpoint for improving T cell therapies. Nevertheless, significant challenges persist for clinical implementation, including the heterogeneity of mechanical signals and the pleiotropic nature of Piezo1 across different cell types. Future research should therefore focus on developing T cell-specific mechanotherapies, identifying novel targets, and validating mechanical biomarkers to guide patient stratification, thereby accelerating the clinical translation of "mechanoimmunology".

论文信息

作者
Cui X、Zhao J、Tian H
第一作者单位
Department of Medical Technology, Changchun Medical College, Changchun, China.China
通讯作者单位
Department of Hematology, Shuguang HospitaI Affiliated to Shanghai University of Traditional Chinese Medicine, Shanghai, China.China
文献类型
综述
期刊
Frontiers in pharmacology2026
原文标识
PubMed 41737555 · DOI 10.3389/fphar.2026.1722027