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从单细胞分析到 3D 微生理系统:整合癌细胞靶点的微流控工具用于解析 NK 细胞生物学

英文原题:From single cell analysis to 3D micro physiological systems: microfluidic tools integrating cancer cell targets for delineating natural killer cell biology.

查看英文原题

From single cell analysis to 3D micro physiological systems: microfluidic tools integrating cancer cell targets for delineating natural killer cell biology.

PubMed 2026/07/06(内容时间) Microsyst Nanoeng Q1 · IF 11.1(JCR 2025)

研究概要

NK 细胞是我们免疫系统中的关键细胞类型。

中文摘要

NK 细胞是我们免疫系统中的关键细胞类型。其在新兴癌症免疫治疗开发中的治疗潜力正不断显现。能够通过微通道操控少量流体的微流控技术,正成为推进我们对NK 细胞生物学认知的新兴工具。然而,微流控装置设计、材料选择以及体外微环境精确工程化背后的原理,尚未通过以癌细胞作为激活靶点的复杂NK细胞生物学视角得到系统评估。这篇综合性综述评估了用于以下研究的微流控技术:单细胞水平NK细胞表型/功能研究、在存在或不存在生化线索条件下的迁移动力学、NK 细胞-靶细胞相互作用,以及在多因素复杂微环境中观察复杂细胞行为(浸润/细胞毒性)。装置复杂性的逐步提升,例如无细胞水凝胶或多细胞共培养系统的整合,凸显了在单细胞、组织和器官水平对NK 细胞特性进行更高分辨率分析的新兴需求。过去二十年间微流控技术在推进自然杀伤(NK)细胞生物学机制认知方面的进展。图使用BioRender生成。

展开英文摘要原文

Natural killer cell is a critical cell type in our immune system. Its therapeutic potential in the development of novel cancer immunotherapy has been emerging. Microfluidic technologies capable of manipulating small volumes of fluid through microchannels are emerging tools for advancing our knowledge of natural killer cell biology. However, the rationale behind microfluidic device design, material choice, and the precise engineering of in vitro microenvironments has yet to be systematically assessed through the lens of complex NK cell biology using cancer cells as targets for activation. This comprehensive review assesses microfluidic technologies designed for the study of NK cell phenotype/function at a single cell level, migration dynamics in the presence or absence of biochemical cues, natural killer-target cell interactions, and observation of sophisticated cellular behavior (infiltration/cytotoxicity) in multi-factorial complex microenvironments. Step by step advances in device complexity such as the integration of acellular hydrogels or multicellular co-culture systems highlight the emerging need for higher resolution analysis of natural killer cell properties at the single cell, tissue, and organ levels. The progression of microfluidic technologies for advancing knowledge of natural killer (NK) cell biological mechanisms within the last twenty years. Figure was generated using BioRender.

论文信息

作者
Hangad MV、Ma H、Kung SKP、Lin F
第一作者单位
Department of Immunology, University of Manitoba, Winnipeg, MB, Canada.Canada
通讯作者单位
Department of Immunology, University of Manitoba, Winnipeg, MB, Canada. francis.lin@umanitoba.ca.Canada
文献类型
综述
期刊
Microsystems & nanoengineering2026 Jul 6
原文标识
PubMed 42402596 · DOI 10.1038/s41378-026-01351-9