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流体剪切应力作为共刺激信号增强 T 细胞致敏并恢复癌症患者 T 细胞的活化

英文原题:Fluid shear stress as a co-stimulatory cue to enhance T cell priming and restore activation in cancer patient T cells.

查看英文原题

Fluid shear stress as a co-stimulatory cue to enhance T cell priming and restore activation in cancer patient T cells.

PubMed 2026/08/04(内容时间) J Immunol Q2 · IF 4(JCR 2025)

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中文摘要

癌症患者来源的T细胞常因慢性抗原暴露和治疗诱导的免疫失调而表现出激活和功能反应性受损,限制了当前免疫疗法的疗效。机械力,如流体剪切应力(FSS),正逐渐被认为是免疫细胞激活的关键调节因素,但其在调节患者来源T细胞激活中的作用仍很大程度上未被探索。

在本研究中,从转移性前列腺癌患者中分离的原代T细胞在离体激活过程中,在存在和不存在珠结合抗CD3/CD28单克隆抗体的条件下,通过锥板粘度计暴露于FSS。单独FSS足以诱导NF-κB磷酸化和细胞内细胞因子合成,表明机械刺激可以独立启动T细胞激活信号。

此外,FSS与抗CD3/CD28刺激联合产生了激活信号、IL-2和IFN-γ产生以及CD25/CD69表达的协同增加。虽然总体趋势在各供者间一致,但患者间差异反映了基线T细胞表型的差异,其中naïve样细胞表现出更大的机械敏感性。这些结果表明,尽管抗原反应性降低,癌症患者来源的T细胞仍保留机械转导能力。在离体扩增过程中将FSS作为共刺激信号纳入,可能更有效地启动患者T细胞的激活,增强效应功能,并提高过继细胞疗法的疗效。

展开英文摘要原文

Cancer patient-derived T cells often exhibit impaired activation and functional responsiveness due to chronic antigen exposure and therapy-induced immune dysregulation, limiting the efficacy of current immunotherapies. Mechanical forces, such as fluid shear stress (FSS), are emerging as critical regulators of immune cell activation, yet their role in modulating activation of patient-derived T cells remains largely unexplored.

In this study, primary T cells isolated from patients with metastatic prostate cancer were exposed to FSS using a cone-and-plate viscometer during ex vivo activation in the presence and absence of bead-bound anti-CD3/CD28 monoclonal antibodies. FSS alone was sufficient to induce NF-κB phosphorylation and intracellular cytokine synthesis, demonstrating that mechanical stimulation can independently initiate T cell activation signaling.

Moreover, FSS combined with anti-CD3/CD28 stimulation produced a synergistic increase in activation signaling, IL-2 and IFN-γ production, and CD25/CD69 expression. While trends were consistent across donors overall, inter-patient variability reflected differences in baseline T cell phenotype, with naïve-like cells displaying greater mechanosensitivity.

These results indicate that cancer patient-derived T cells retain mechanotransduction capacity despite reduced antigen responsiveness. Incorporating FSS as a co-stimulatory signal during ex vivo expansion may be more effective at priming patient T cells for activation, enhancing effector function, and improving the efficacy of adoptive cell therapies.

论文信息

作者
Sarna NS、Antunovic M、Hurley PJ、Schaffer KR、King MR
单位
Department of Bioengineering, Rice University, Houston, TX, United States.United States
期刊
Journal of immunology (Baltimore, Md. : 1950)2026 Aug 4
原文标识
PubMed 42560365 · DOI 10.1093/jimmun/vkag166