凝胶在微型电泳。

Lisa A Holland, Laura D Casto-Boggess
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引用次数: 2

摘要

凝胶基质是微尺度通道中生物聚合物电泳分析的基础。毛细管凝胶和微通道凝胶电泳系统都在科学界取得了根本性进展。这些分析技术仍然是生物分析化学的基础工具,在生物治疗领域是不可或缺的。本文综述了微尺度通道中凝胶的现状,并简要介绍了凝胶中的电泳传输。除了对传统聚合物的讨论外,还介绍了几种非传统凝胶。重点介绍了凝胶基质的进展,包括改性为含有附加功能的选择性聚合物,以及通过自组装形成的热响应凝胶。这篇综述讨论了在DNA、RNA、蛋白质和聚糖分析中具有挑战性的发现领域的前沿应用。最后,确定了在毛细管和三维通道中进行实时生化处理的多功能分析的新兴技术。
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Gels in Microscale Electrophoresis.

Gel matrices are fundamental to electrophoresis analyses of biopolymers in microscale channels. Both capillary gel and microchannel gel electrophoresis systems have produced fundamental advances in the scientific community. These analytical techniques remain as foundational tools in bioanalytical chemistry and are indispensable in the field of biotherapeutics. This review summarizes the current state of gels in microscale channels and provides a brief description of electrophoretic transport in gels. In addition to the discussion of traditional polymers, several nontraditional gels are introduced. Advances in gel matrices highlighted include selective polymers modified to contain added functionality as well as thermally responsive gels formed through self-assembly. This review discusses cutting-edge applications to challenging areas of discovery in DNA, RNA, protein, and glycan analyses. Finally, emerging techniques that result in multifunctional assays for real-time biochemical processing in capillary and three-dimensional channels are identified.

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