用于生化应用的液滴操控中的光响应材料。

Light-Responsive Materials in Droplet Manipulation for Biochemical Applications.

作者信息

Cheng Guangyao, Kuan Chit Yau, Lou Kuan Wen, Ho Yi-Ping

机构信息

Department of Biomedical Engineering, The Chinese University of Hong Kong, Hong Kong SAR, 999077, China.

State Key Laboratory of Marine Pollution, City University of Hong Kong, Hong Kong SAR, 999077, China.

出版信息

Adv Mater. 2025 Jan;37(2):e2313935. doi: 10.1002/adma.202313935. Epub 2024 Mar 1.

Abstract

Miniaturized droplets, characterized by well-controlled microenvironments and capability for parallel processing, have significantly advanced the studies on enzymatic evolution, molecular diagnostics, and single-cell analysis. However, manipulation of small-sized droplets, including moving, merging, and trapping of the targeted droplets for complex biochemical assays and subsequent analysis, is not trivial and remains technically demanding. Among various techniques, light-driven methods stand out as a promising candidate for droplet manipulation in a facile and flexible manner, given the features of contactless interaction, high spatiotemporal resolution, and biocompatibility. This review therefore compiles an in-depth discussion of the governing mechanisms underpinning light-driven droplet manipulation. Besides, light-responsive materials, representing the core of light-matter interaction and the key character converting light into different forms of energy, are particularly assessed in this review. Recent advancements in light-responsive materials and the most notable applications are comprehensively archived and evaluated. Continuous innovations and rational engineering of light-responsive materials are expected to propel the development of light-driven droplet manipulation, equip droplets with enhanced functionality, and broaden the applications of droplets for biochemical studies and routine biochemical investigations.

摘要

微型液滴具有可控的微环境和并行处理能力,极大地推动了酶进化、分子诊断和单细胞分析等研究。然而,对小尺寸液滴进行操作,包括移动、合并以及捕获目标液滴以进行复杂的生化分析和后续检测,并非易事,在技术上仍然具有挑战性。在各种技术中,光驱动方法因其具有非接触相互作用、高时空分辨率和生物相容性等特点,成为以简便灵活方式操纵液滴的有前景的候选方法。因此,本综述深入讨论了光驱动液滴操纵的控制机制。此外,光响应材料作为光与物质相互作用的核心以及将光转化为不同形式能量的关键特性,在本综述中受到特别评估。对光响应材料的最新进展和最显著的应用进行了全面的存档和评估。光响应材料的持续创新和合理设计有望推动光驱动液滴操纵的发展,赋予液滴增强的功能,并拓宽液滴在生化研究和常规生化检测中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6011/11733724/bd6aeb3a9209/ADMA-37-2313935-g009.jpg

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