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水凝胶微滴微流控技术用于高通量单分子/细胞分析。

Hydrogel Droplet Microfluidics for High-Throughput Single Molecule/Cell Analysis.

机构信息

MOE Key Laboratory of Spectrochemical Analysis & Instrumentation, Collaborative Innovation Center of Chemistry for Energy Materials, Key Laboratory for Chemical Biology of Fujian Province, State Key Laboratory of Physical Chemistry of Solid Surfaces, College of Chemistry and Chemical Engineering, Xiamen University , Xiamen 361005, China.

出版信息

Acc Chem Res. 2017 Jan 17;50(1):22-31. doi: 10.1021/acs.accounts.6b00370. Epub 2016 Dec 28.

Abstract

Heterogeneity among individual molecules and cells has posed significant challenges to traditional bulk assays, due to the assumption of average behavior, which would lose important biological information in heterogeneity and result in a misleading interpretation. Single molecule/cell analysis has become an important and emerging field in biological and biomedical research for insights into heterogeneity between large populations at high resolution. Compared with the ensemble bulk method, single molecule/cell analysis explores the information on time trajectories, conformational states, and interactions of individual molecules/cells, all key factors in the study of chemical and biological reaction pathways. Various powerful techniques have been developed for single molecule/cell analysis, including flow cytometry, atomic force microscopy, optical and magnetic tweezers, single-molecule fluorescence spectroscopy, and so forth. However, some of them have the low-throughput issue that has to analyze single molecules/cells one by one. Flow cytometry is a widely used high-throughput technique for single cell analysis but lacks the ability for intercellular interaction study and local environment control. Droplet microfluidics becomes attractive for single molecule/cell manipulation because single molecules/cells can be individually encased in monodisperse microdroplets, allowing high-throughput analysis and manipulation with precise control of the local environment. Moreover, hydrogels, cross-linked polymer networks that swell in the presence of water, have been introduced into droplet microfluidic systems as hydrogel droplet microfluidics. By replacing an aqueous phase with a monomer or polymer solution, hydrogel droplets can be generated on microfluidic chips for encapsulation of single molecules/cells according to the Poisson distribution. The sol-gel transition property endows the hydrogel droplets with new functionalities and diversified applications in single molecule/cell analysis. The hydrogel can act as a 3D cell culture matrix to mimic the extracellular environment for long-term single cell culture, which allows further heterogeneity study in proliferation, drug screening, and metastasis at the single-cell level. The sol-gel transition allows reactions in solution to be performed rapidly and efficiently with product storage in the gel for flexible downstream manipulation and analysis. More importantly, controllable sol-gel regulation provides a new way to maintain phenotype-genotype linkages in the hydrogel matrix for high throughput molecular evolution. In this Account, we will review the hydrogel droplet generation on microfluidics, single molecule/cell encapsulation in hydrogel droplets, as well as the progress made by our group and others in the application of hydrogel droplet microfluidics for single molecule/cell analysis, including single cell culture, single molecule/cell detection, single cell sequencing, and molecular evolution.

摘要

个体分子和细胞的异质性给传统的批量分析带来了重大挑战,因为批量分析假设了平均行为,这将丢失异质性中的重要生物学信息,并导致误导性的解释。单细胞分析已成为生物学和生物医学研究中一个重要的新兴领域,它可以高分辨率地洞察大群体之间的异质性。与整体批量方法相比,单细胞分析探索了单个分子/细胞的时间轨迹、构象状态和相互作用的信息,这些都是化学和生物反应途径研究的关键因素。已经开发了各种强大的单细胞分析技术,包括流式细胞术、原子力显微镜、光学和磁性镊子、单分子荧光光谱等。然而,其中一些技术存在低通量问题,必须逐个分析单个分子/细胞。流式细胞术是一种广泛用于单细胞分析的高通量技术,但缺乏细胞间相互作用研究和局部环境控制的能力。液滴微流控技术因其能够对单个分子/细胞进行单独包封而变得具有吸引力,从而可以进行高通量分析和操作,并精确控制局部环境。此外,水凝胶是一种在存在水的情况下溶胀的交联聚合物网络,已被引入到液滴微流控系统中作为水凝胶液滴微流控技术。通过用单体或聚合物溶液代替水相,可以在微流控芯片上生成水凝胶液滴,根据泊松分布对单个分子/细胞进行包封。溶胶-凝胶转变特性赋予水凝胶液滴新的功能,并在单细胞分析中具有多样化的应用。水凝胶可以作为 3D 细胞培养基质,模拟细胞外环境,用于长期单细胞培养,从而可以在单细胞水平上进一步研究增殖、药物筛选和转移的异质性。溶胶-凝胶转变允许在溶液中进行快速高效的反应,并将产物储存在凝胶中,以便灵活的下游操作和分析。更重要的是,可控的溶胶-凝胶调节为在水凝胶基质中维持表型-基因型联系提供了一种新方法,用于高通量分子进化。在本综述中,我们将回顾微流控下水凝胶液滴的生成、水凝胶液滴中单分子/细胞的封装,以及我们小组和其他小组在水凝胶液滴微流控技术在单细胞分析中的应用方面的进展,包括单细胞培养、单细胞检测、单细胞测序和分子进化。

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