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面向单细胞封装的微流控技术及其流动机理综述OA

A review on techniques and their flow mechanisms in microfluidics for single-cell encapsulation

中文摘要英文摘要

精准的细胞分析是当代生命科学研究的核心目标之一,而单细胞封装作为实现这一目标的关键前提,核心在于将单个细胞从复杂的细胞群体中有效隔离.微流控技术对微尺度流动行为的精准操控,为高效、可控的单细胞隔离与封装提供了有力的技术支撑.本文从微尺度流动的角度,系统综述了单细胞封装领域的微流控技术,重点阐述了单细胞封装的实现方法,以及封装效率增强技术中的流动机理、技术演进和性能调控策略.其中,单细胞封装借助低雷诺数流动、界面不稳定性等流体动力学效应实现细胞的捕获与包裹;封装增强技术则通过调控细胞分离与聚焦等过程突破传统封装效率的限制,实现细胞的高效封装.本文深入剖析了流动机理,系统梳理了各类方法的流动特性差异,阐明了其核心优势与内在局限,可为单细胞封装技术的流动机理研究与实验设计提供理论指导,推动微流控方法在生物流体力学领域的深入应用.

Precise cellular analysis is one of the core goals in contemporary life science research.As a key prerequisite for achieving this goal,single-cell encapsulation effectively isolates individual cells from complex cell populations.Microfluidic technology,by precisely manipulating microscale flow dynamics,provides robust technical support for efficient and controllable single-cell isolation or encapsulation.From the perspective of microscale flow,this work systematically reviews microfluidic technologies for single-cell encapsulation,focusing on flow mechanisms,technological evolution,and performance regulation strategies for encapsulation methods and for enhancing encapsulation efficiency.Single-cell encapsulation achieves cell capture and encapsulation through hydrodynamic effects such as low-Reynolds-number flow and interface instability,while encapsulation enhancement technologies overcome the limitations of conventional encapsulation efficiency by regulating processes like cell separation and focusing,thereby enabling efficient cell encapsulation.Understanding flow mechanisms helps improve encapsulation performance.By elucidating flow mechanisms to enhance encapsulation efficacy,this study collates hydrodynamic distinctions across methodologies,articulates their cardinal advantages and inherent limitations,furnishes theoretical guidance for mechanistic research and experimental design in single-cell encapsulation,and fosters deeper integration of microfluidic approaches within biofluid mechanics.

刘安迪;胡国辉

上海大学 力学与工程科学学院,上海 200072||上海大学 上海市应用数学和力学研究所,上海 200072上海大学 力学与工程科学学院,上海 200072||上海大学 上海市应用数学和力学研究所,上海 200072

数理科学

微流控技术单细胞封装界面不稳定流动聚焦惯性聚焦

microfluidic technologysingle-cell encapsulationinterface instabilityflow focusinginertial focusing

《实验流体力学》 2026 (4)

前插1-前插2,1-21,23

国家自然科学基金项目(12332016,12402323)

10.11729/syltlx20250127

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