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用于研究机械压缩在 3D 细胞外基质中肿瘤-免疫细胞相互作用中作用的微流控平台

英文原题:A Microfluidic Platform for Studying Roles of Mechanical Compression in Tumor-Immune Cell Interactions in a 3D Extracellular Matrix.

查看英文原题

A Microfluidic Platform for Studying Roles of Mechanical Compression in Tumor-Immune Cell Interactions in a 3D Extracellular Matrix.

PubMed 2026/08/28(内容时间) J Vis Exp Q3 · IF 1.2(JCR 2025)

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中文摘要

机械力在细胞免疫治疗中显著影响免疫细胞杀伤肿瘤细胞的能力。为了杀死肿瘤细胞,免疫细胞必须对靶细胞施加力并形成免疫突触,通过该突触递送细胞毒性分子——包括颗粒酶B。尽管其重要性不言而喻,但如何利用机械线索增强免疫介导的杀伤仍知之甚少。这一知识空白部分是由于缺乏能够在生理逼真的环境中为细胞培养提供良好控制的机械应力的工具。

在此,我们描述了一种微流控压缩装置,该装置可以对嵌入细胞外基质(ECM)中的肿瘤球体施加静态或动态压缩,同时通过光学显微镜实现肿瘤-免疫相互作用的实时成像。该微流控平台由12个隔室组成(6个对照和6个功能)。每个隔室包含一个直接位于压力控制单元下方的细胞腔室。嵌入ECM中的球体被放置在细胞腔室内。利用该平台,我们研究了在确定的机械压缩下自然杀伤(NK)细胞对乳腺肿瘤球体(MCF-7)的杀伤效率。

结果显示,在1.5 mg/mL胶原中,无论机械压缩如何,NK细胞仍然是肿瘤球体死亡的主要驱动因素。因此,表明NK细胞可以在压缩应力下维持其抗肿瘤活性。这些发现证明了该平台在研究机械力在肿瘤-免疫相互作用中作用的实用性。正在进行的研究正在鉴定使免疫细胞适应压缩应力的分子机制。从这些研究中获得的见解可能揭示一个有前景的治疗途径。

展开英文摘要原文

Mechanical forces significantly influence the ability of immune cells to kill tumor cells in the context of cell-based immunotherapy. To kill tumor cells, immune cells must exert forces on the target cell and form an immune synapse, through which cytotoxic molecules -including granzyme B-are delivered.

Despite their importance, how mechanical cues can be leveraged to enhance immune-mediated killing remains poorly understood. This knowledge gap is partly due to the lack of tools capable of providing well-controlled mechanical stress to cell cultures in a physiologically realistic environment.

Here, we describe a microfluidic compression device that can apply static or dynamic compression to tumor spheroids embedded in extracellular matrix (ECM) while enabling real-time imaging of tumor-immune interactions via optical microscopy. The microfluidic platform consists of 12 compartments (6 control and 6 functional). Each compartment contains a cell chamber positioned directly beneath the pressure control unit.

Spheroids embedded in ECM are placed within the cell chamber. Using this platform, we investigated the killing efficiency of Natural Killer (NK) cells against breast tumor spheroids (MCF-7) under defined mechanical compression. The results showed that NK cells remained the primary drivers of tumor spheriods death regrardless of mechanical compression in 1. 5 mg/mL collagen.

Therefore, suggesting that NK cells can maintain their anti-tumor activity under compressive stress.

These findings demonstrate the utility of this platform for investigating the role of mechanical forces in tumor-immune interactions. Ongoing studies are identifying the molecular mechanisms that allow immune cells to adapt to compressive stress. Insights gained from these studies may reveal a promising therapeutic avenue.

论文信息

作者
Muriuki F、Roach K、Suh YJ、Pandey M、Cheung BCH、Segall JE、Wu M
第一作者单位
Department of Biomedical Engineering, Cornell University; Department of Biological and Environmental Engineering, Cornell University.
通讯作者单位
Department of Biological and Environmental Engineering, Cornell University; mw272@cornell.edu.
文献类型
音视频资料 · 非美国政府资助研究
期刊
Journal of visualized experiments : JoVE2026 Aug 28
原文标识
PubMed 42667217 · DOI 10.3791/72929