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聚乙二醇化壳聚糖和乙二醇化壳聚糖用于改善胡萝卜软腐欧文氏菌重组L-天冬酰胺酶的生物药剂学性质

PEG-chitosan and glycol-chitosan for improvement of biopharmaceutical properties of recombinant L-asparaginase from Erwinia carotovora.

作者信息

Sukhoverkov K V, Kudryashova E V

机构信息

Lomonosov Moscow State University, Chemical Faculty, Moscow, 119991, Russia.

出版信息

Biochemistry (Mosc). 2015 Jan;80(1):113-9. doi: 10.1134/S0006297915010137.

Abstract

Conjugation with the new branched copolymers, PEG-chitosan and glycol-chitosan, is suggested to improve the therapeutic properties of L-asparaginase from Erwinia carotovora (EwA). The structure and composition of such conjugates were optimized for maximal catalytic efficiency (kcat/KM) under physiological conditions, yielding improvement by a factor of 3-6 compared to the native enzyme. This effect is attributed mainly to the shift of pH activity profile towards lower pH values due to the polycationic nature of the copolymer. The thermostability of EwA conjugates was also considerably improved. Chito-PEGylation, similarly to PEGylation, can be expected to improve pharmacokinetic properties and to reduce immunogenicity of this medically relevant enzyme. It is worth mentioning that a new versatile approach based on IR spectroscopy has been developed to determine PEG-chitosan copolymer composition as well as composition of copolymer-enzyme conjugates. The proposed analytic method is "reagent-free" and allows fast and reliable determination of parameters of interest from the single IR spectrum in contrast to laborious and unreliable methods based on polymer free amino group titration with TNBS and OPA.

摘要

与新型支链共聚物聚乙二醇-壳聚糖和乙二醇-壳聚糖结合,有望改善胡萝卜软腐欧文氏菌L-天冬酰胺酶(EwA)的治疗特性。此类结合物的结构和组成经过优化,以在生理条件下实现最大催化效率(kcat/KM),与天然酶相比,催化效率提高了3至6倍。这种效果主要归因于共聚物的聚阳离子性质使pH活性曲线向较低pH值偏移。EwA结合物的热稳定性也有显著提高。与聚乙二醇化类似,壳聚糖-聚乙二醇化有望改善这种医学相关酶的药代动力学性质并降低其免疫原性。值得一提的是,已开发出一种基于红外光谱的新型通用方法来测定聚乙二醇-壳聚糖共聚物的组成以及共聚物-酶结合物的组成。与基于用三硝基苯磺酸(TNBS)和邻苯二甲醛(OPA)滴定聚合物游离氨基的繁琐且不可靠的方法相比,所提出的分析方法“无需试剂”,并且能够从单个红外光谱快速可靠地测定感兴趣的参数。

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