通过多用途微流控平台及其不同应用进行适配体选择。

IF 6.1 2区 工程技术 Q1 BIOCHEMICAL RESEARCH METHODS
Lab on a Chip Pub Date : 2025-01-08 DOI:10.1039/d4lc00859f
Yi-Da Chung, Yi-Cheng Tsai, Chi-Hung Wang, Gwo-Bin Lee
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引用次数: 0

摘要

适配体是一种合成的寡核苷酸,具有高亲和力和特异性与各种靶标结合,使其在诊断,治疗和生物传感方面具有不可估量的价值。微流控平台可以提高适体选择的效率和可扩展性,特别是通过指数富集(SELEX)方法在配体系统进化方面的进步。微流体SELEX方法耗时少,劳动密集,包括文库制备,结合,分区和扩增等关键步骤。本文综述了微流体技术对基于SELEX的适配体鉴定的贡献,以及选择适配体的替代方法,如条件SELEX,体内SELEX和非SELEX,并讨论了过去十年中SELEX的关键步骤。这项工作还研究了SELEX的集成微流控系统,突出了条件SELEX和体内SELEX等创新。这些进步为使用传统SELEX进行适体选择的现有挑战提供了潜在的解决方案,特别是在生物样品方面。对非selex方法的趋势也进行了回顾和讨论,其中消除了核酸扩增以提高适体选择。微流控平台不仅在适配体选择方面具有通用性,而且在各种检测应用中也具有通用性;它们允许精确控制液体流动,并且在治疗适体的进步中至关重要,促进准确筛选,增强药物输送系统,并实现有针对性的治疗干预。尽管微流控技术的进步有望增强基于适配体的诊断、治疗和生物传感,但挑战仍然存在,特别是在各种临床应用的大规模微流控系统方面。进一步阐述了微流控平台与适配体开发集成的优点和局限性,强调了未来的研究领域。我们还提出了对未来的微流体系统和适配体技术的看法,强调了它们在医疗保健和诊断中的日益重要的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aptamer selection via versatile microfluidic platforms and their diverse applications.

Aptamers are synthetic oligonucleotides that bind with high affinity and specificity to various targets, making them invaluable for diagnostics, therapeutics, and biosensing. Microfluidic platforms can improve the efficiency and scalability of aptamer selection, especially through advancements in systematic evolution of ligands by exponential enrichment (SELEX) methods. Microfluidic SELEX methods are less time-consuming and labor-intensive and include critical steps like library preparation, binding, partitioning, and amplification. This review examines the contributions of microfluidic technology to SELEX-based aptamer identification, with alternative methods like conditional SELEX, in vivo-like SELEX and Non-SELEX for selecting aptamers and also discusses critical SELEX steps over the past decade. This work also examined the integrated microfluidic systems for SELEX, highlighting innovations such as conditional SELEX and in vivo-like SELEX. These advancements provide potential solutions to existing challenges in aptamer selection using conventional SELEX, especially concerning biological samples. A trend toward non-SELEX methods was also reviewed and discussed, wherein nucleic acid amplification was eliminated to improve aptamer selection. Microfluidic platforms have demonstrated versatility not only in aptamer selection but also in various detection applications; they allow for precise control of liquid flow and have been essential in the advancement of therapeutic aptamers, facilitating accurate screening, enhancing drug delivery systems, and enabling targeted therapeutic interventions. Although advances in microfluidic technology are expected to enhance aptamer-based diagnostics, therapeutics, and biosensing, challenges still persist, especially in up-scaling microfluidic systems for various clinical applications. The advantages and limitations of integrating microfluidic platforms with aptamer development are further addressed, emphasizing areas for future research. We also present a perspective on the future of microfluidic systems and aptamer technologies, highlighting their increasing significance in healthcare and diagnostics.

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来源期刊
Lab on a Chip
Lab on a Chip 工程技术-化学综合
CiteScore
11.10
自引率
8.20%
发文量
434
审稿时长
2.6 months
期刊介绍: Lab on a Chip is the premiere journal that publishes cutting-edge research in the field of miniaturization. By their very nature, microfluidic/nanofluidic/miniaturized systems are at the intersection of disciplines, spanning fundamental research to high-end application, which is reflected by the broad readership of the journal. Lab on a Chip publishes two types of papers on original research: full-length research papers and communications. Papers should demonstrate innovations, which can come from technical advancements or applications addressing pressing needs in globally important areas. The journal also publishes Comments, Reviews, and Perspectives.
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