论文标题

两亲二嵌段共聚物作为蛋白质色谱的功能表面

Amphiphilic diblock copolymers as functional surfaces for protein chromatography

论文作者

Moorthy, Raghu K., D'Souza, Serena, Sunthar, P., Noronha, Santosh B.

论文摘要

固定相在蛋白质色谱柱的运行中起着至关重要的作用。由丙烯酸聚合物及其衍生物组成的常规树脂有助于这些柱内固定相的堆积的异质性。众所周知,通过定制的表面功能化方案通过定制的表面功能化方案进行替代聚合物组合是众所周知的。相比之下,假设单步方案足以获得多孔吸附剂作为调谐表面形态和蛋白质固定化的固定相。为了克服在实验室尺度上的异质堆积和易于制造的挑战,已经提出了分离材料形式的变化,以功能性共聚物表面的形式进行。在目前的工作中,已选择并完全表征其在蛋白质色谱中的潜在用法,并完全表征两性的,块共聚物,聚(甲基丙烯酸甲酯 - 甲基丙烯酸甲基丙烯酸)。通过接触角度测量,傅立叶变换红外(FTIR)和X射线光电学光谱(XPS)研究成功证明了丙烯酸共聚物的亲水性和羧基固有的羧基的丰度。形态学研究表明,在蛋白质色谱法中,作为阳离子交换介质作为阳离子交换培养基的存在可能是有益的,这可能是有益的。

Stationary phase plays a crucial role in the operation of a protein chromatography column. Conventional resins composed of acrylic polymers and their derivatives contribute to heterogeneity of the packing of stationary phase inside these columns. Alternative polymer combinations through customized surface functionalization schemes which consist of multiple steps using static coating techniques are well known. In comparison, it is hypothesized that a single-step scheme is sufficient to obtain porous adsorbents as stationary phase for tuning surface morphology and protein immobilization. To overcome the challenge of heterogeneous packing and ease of fabrication at a laboratory scale, a change in the form factor of separation materials has been proposed in the form of functional copolymer surfaces. In the present work, an amphiphilic, block copolymer, poly(methyl methacrylate-co-methacrylic acid) has been chosen and fully characterized for its potential usage in protein chromatography. Hydrophilicity of the acrylic copolymer and abundance of carboxyl groups inherently on the copolymer surface have been successfully demonstrated through contact angle measurements, Fourier transform infrared (FTIR) and X-ray photoelectron spectroscopy (XPS) studies. Morphological studies indicate presence of a microporous region (nearly 1 to 1.5 $μ$m pore size) that could be beneficial as a cation exchange media as part of the stationary phase in protein chromatography.

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