首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Dielectrophoretic behavior of PEGylated RNase A inside a microchannel with diamond-shaped insulating posts
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Dielectrophoretic behavior of PEGylated RNase A inside a microchannel with diamond-shaped insulating posts

机译:聚乙二醇化RNase A在具有菱形绝缘柱的微通道内的介电泳行为

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摘要

Ribonuclease A (RNase A) has proven potential as a therapeutic agent, especially in its PEGylated form. Grafting of PEG molecules to this protein yields mono-PEGylated (mono-PEG) and di-PEGylated (di-PEG) RNase A conjugates, and the unreacted protein. Mono-PEG RNase A is of great interest. The use of electrokinetic forces in microdevices represents a novel alternative to chromatographic methods to separate this specie. This work describes the dielectrophoretic behavior of the main protein products of the RNase A PEGylation inside a microchannel with insulators under direct current electric fields. This approach represents the first step in route to design micro-bioprocesses to separate PEGylated RNase A from unreacted native protein. The three proteins exhibited different dielectrophoretic behaviors. All of them experienced a marked streaming pattern at 3000 V consistent with positive dielectrophoresis. Native protein was not captured at any of the conditions tested, while mono-PEG RNase A and di-PEG RNase A were captured presumably due to positive dielectrophoresis at 4000 and 2500 V, respectively. Concentration of mono-PEG RNase A with a maximal enrichment efficiency of approximate to 9.6 times the feed concentration was achieved in few seconds. These findings open the possibility of designing novel devices for rapid separation, concentration, and recovery of PEGylated RNase A in a one-step operation.
机译:核糖核酸酶A(核糖核酸酶A)已被证明具有作为治疗剂的潜力,尤其是其PEG化形式。将PEG分子接枝到该蛋白质上会产生单聚乙二醇化(mono-PEG)和双聚乙二醇化(di-PEG)RNase A偶联物,以及未反应的蛋白质。 Mono-PEG RNase A非常令人感兴趣。在微型设备中使用电动势代表了一种色谱法分离该物种的新颖替代方法。这项工作描述了在直流电场下,带有绝缘子的微通道内部RNase A PEG化的主要蛋白质产物的介电电泳行为。这种方法代表了设计微生物过程以从未反应的天然蛋白分离PEG化RNase A的第一步。这三种蛋白质表现出不同的介电泳行为。他们都在3000 V电压下经历了明显的流型,与正介电电泳相一致。在任何测试条件下均未捕获天然蛋白,而推测分别由于在4000和2500 V上的正介电电泳而捕获了单PEG RNase A和di-PEG RNaseA。在几秒钟内即可达到最大浓缩效率约为进料浓度9.6倍的单PEG RNase A浓度。这些发现打开了设计新颖装置以一步操作快速分离,浓缩和回收PEG化RNase A的可能性。

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