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A viscosity-tunable polymer for DNA separation by microchip electrophoresis

机译:通过微芯片电泳进行DNA分离的粘度可调聚合物

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摘要

A thermo-responsive separation matrix, consisting of Pluronic F127 tri-block copolymers of poly(ethylene oxide) and poly(propylene oxide), was used to separate DNA fragments by microchip electrophoresis. At low temperature, the polymer matrix was low in viscosity and allowed rapid loading into a microchannel under low pressure. With increasing temperatures above 25C, the Pluronic F127 solution forms a liquid crystalline phase consisting of spherical micelles with diameters of 17-19 nm. The solution can be used to separate DNA fragments from 100 bp to 1500 bp on poly(methyl methacrylate) (PMMA) chips. This temperature-sensitive and viscosity-tunable polymer provided excellent resolution over a wide range of DNA sizes. Separation is based on a different mechanism compared with conventional matrices such as methylcellulose. To illustrate the separation mechanism of DNA in a Pluronic F127 solution, DNA molecular imaging was performed by fluorescence microscopy with F127 polymer as the separation matrix in microchip electrophoresis.
机译:由Pluronic F127三嵌段共聚物组成的热响应分离基质和聚(环氧丙烷)和聚(环氧丙烷),用于通过微芯片电泳分离DNA片段。在低温下,聚合物基质的粘度低,并且在低压下允许在微通道中加入微通道。随着25℃的提高温度,Pluronic F127溶液形成液晶相,由直径为17-19nm的球形胶束构成。该溶液可用于将DNA片段与100bp至1500bp的DNA片段分离在聚(甲基丙烯酸甲酯)(PMMA)芯片上。该温度敏感和粘度可调聚合物在各种DNA尺寸上提供了优异的分辨率。与诸如甲基纤维素的常规基质相比,分离基于不同的机制。为了说明Pluronic F127溶液中DNA的分离机制,通过荧光显微镜与F127聚合物作为微芯片电泳中的分离基质进行DNA分子成像。

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