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CAR-T 细胞较 T 淋巴细胞更易受机械约束影响:一种基于微流控的方法

英文原题:CAR-T cells are more affected than T lymphocytes by mechanical constraints: A microfluidic-based approach.

查看英文原题

CAR-T cells are more affected than T lymphocytes by mechanical constraints: A microfluidic-based approach.

PubMed 2024/12/26(内容时间) Life Sci Q1 · IF 6.4(JCR 2025)

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中文摘要

CAR-T 细胞疗法因对血液系统恶性肿瘤疗效显著而备受关注,但由于实体瘤微环境中的不利条件,该免疫疗法治疗实体瘤效果有限。尽管相关生化因素已得到深入研究,关键的力学线索却受到忽视。 主要方法:研究者开发了一种创新微流控装置,用于重现实体瘤的生物力学特征,并利用该平台量化T细胞和CAR-T 细胞在不同限域条件下的迁移。 主要发现:CAR-T 细胞和普通T细胞的运动速度均受到所研究的生物力学和化学线索影响,而这些线索与实体瘤中的情况密切相关。在无生化刺激的条件下,T细胞速度不受微通道宽度影响;而在限域程度最高的通道中,CAR-T 细胞速度显著降低。加入趋化因子或肿瘤细胞后,免疫细胞在限域环境中的迁移速度增加。然而,存在免疫抑制性趋化因子时,T细胞迁移变慢,而CAR-T 细胞则通过嵌合细胞因子受体显著提高迁移速度。

该方法有助于深入理解免疫细胞迁移及机械限制的影响,可用于测试提高CAR-T 细胞向实体瘤内运输的新方法。因此,本研究揭示,在受限环境中CAR-T 细胞与普通T细胞的迁移行为不同;限域导致的细胞变形能力等生物力学线索,会影响免疫应答过程中免疫细胞正确浸润实体瘤。

展开英文摘要原文

AIMS: CAR-T cell therapy has attracted considerable attention in recent years owing to its well-known efficacy against haematopoietic malignancies. Nevertheless, this immunotherapy fails against solid tumours due to hostile conditions found in the tumour microenvironment. In this context, many relevant biochemical factors have been thoroughly studied, but crucial mechanical cues have been underestimated. MAIN METHODS: We developed an innovative approach using microfluidic devices, which recreate the biomechanical aspects of solid tumours.

Using these platforms, we quantified immune cell migration (T and CAR-T cells) under different confinement conditions. KEY FINDINGS: We found that both CAR-T cell and T cell velocities are affected by the biomechanical and chemical cues studied, which are closely related to those found in solid tumours.

Under biochemical stimulus-free conditions, the velocity of T cells is independent of the width of the microchannel, whereas the velocity of CAR-T cells is greatly reduced in the highest confinement channels. When chemoattractants or tumour cells are added, immune cells display increased confined migration velocity.

However, in the presence of immunosuppressive chemokines, T cells become slower, whereas CAR-T cells significantly increase their velocity via a chimeric cytokine receptor. SIGNIFICANCE: Our approach contributes to a better understanding of immune cell migration and the influence of mechanical constraints, which will allow the testing of new ways to improve CAR-T cell trafficking into solid tumours.

Therefore, our study revealed that the migratory behaviour of CAR-T cells differs from that of T cells under confined conditions and that biomechanical cues, such as cell deformability caused by confinement, can influence the correct infiltration of immune cells into solid tumours during the immune response.

论文信息

作者
Zhang-Zhou J、Movilla Meno N、Oñate Salafranca C、Gomez-Benito MJ、Guerrero PE、Pardo Jimeno J、García-Aznar JM
第一作者单位
Department of Mechanical Engineering, University of Zaragoza, Zaragoza, Spain. Electronic address: jzhang@unizar.es.Spain
通讯作者单位
Department of Mechanical Engineering, University of Zaragoza, Zaragoza, Spain; Instituto de Investigación en Ingeniería de Aragón (I3A), Zaragoza, Spain; Aragón Institute of Healthcare Research (IIS Aragón), Zaragoza, Spain. Electronic address: jmgaraz@unizar.es.Spain
期刊
Life sciences2025 Feb 15
原文标识
PubMed 39732363 · DOI 10.1016/j.lfs.2024.123335