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免疫与微流控技术在单细胞分析中的整合。

Integrating Immunology and Microfluidics for Single Immune Cell Analysis.

机构信息

Laboratory of Immunoengineering, Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, Netherlands.

Institute for Complex Molecular Systems, Eindhoven University of Technology, Eindhoven, Netherlands.

出版信息

Front Immunol. 2018 Oct 16;9:2373. doi: 10.3389/fimmu.2018.02373. eCollection 2018.

Abstract

The field of immunoengineering aims to develop novel therapies and modern vaccines to manipulate and modulate the immune system and applies innovative technologies toward improved understanding of the immune system in health and disease. Microfluidics has proven to be an excellent technology for analytics in biology and chemistry. From simple microsystem chips to complex microfluidic designs, these platforms have witnessed an immense growth over the last decades with frequent emergence of new designs. Microfluidics provides a highly robust and precise tool which led to its widespread application in single-cell analysis of immune cells. Single-cell analysis allows scientists to account for the heterogeneous behavior of immune cells which often gets overshadowed when conventional bulk study methods are used. Application of single-cell analysis using microfluidics has facilitated the identification of several novel functional immune cell subsets, quantification of signaling molecules, and understanding of cellular communication and signaling pathways. Single-cell analysis research in combination with microfluidics has paved the way for the development of novel therapies, point-of-care diagnostics, and even more complex microfluidic platforms that aid in creating cellular microenvironments for applications in drug and toxicity screening. In this review, we provide a comprehensive overview on the integration of microsystems and microfluidics with immunology and focus on different designs developed to decode single immune cell behavior and cellular communication. We have categorized the microfluidic designs in three specific categories: microfluidic chips with cell traps, valve-based microfluidics, and droplet microfluidics that have facilitated the ongoing research in the field of immunology at single-cell level.

摘要

免疫工程领域旨在开发新的疗法和现代疫苗来操纵和调节免疫系统,并应用创新技术来增进对健康和疾病中免疫系统的理解。微流控技术已被证明是生物学和化学分析的优秀技术。从简单的微系统芯片到复杂的微流控设计,这些平台在过去几十年中见证了巨大的增长,新设计频繁涌现。微流控提供了一种高度稳健和精确的工具,使其广泛应用于免疫细胞的单细胞分析。单细胞分析允许科学家考虑免疫细胞的异质行为,而当使用传统的批量研究方法时,这种行为常常被掩盖。使用微流控的单细胞分析的应用促进了几个新型功能免疫细胞亚群的鉴定、信号分子的定量以及细胞间通讯和信号通路的理解。单细胞分析研究与微流控技术的结合为新型疗法、即时诊断以及更复杂的微流控平台的发展铺平了道路,这些平台有助于为药物和毒性筛选应用创建细胞微环境。在这篇综述中,我们全面概述了微系统和微流控与免疫学的整合,并重点介绍了为解码单个免疫细胞行为和细胞间通讯而开发的不同设计。我们将微流控设计分为三类:具有细胞捕获器的微流控芯片、基于阀的微流控和液滴微流控,这些设计促进了免疫学领域在单细胞水平上的研究。

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