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酯化聚氧乙烯链的胶束溶剂可及性作为聚山梨酯氧化的关键因素:密度泛函理论、分子动力学模拟及液相色谱/质谱研究

Micellar Solvent Accessibility of Esterified Polyoxyethylene Chains as Crucial Element of Polysorbate Oxidation: A Density Functional Theory, Molecular Dynamics Simulation and Liquid Chromatography/Mass Spectrometry Investigation.

作者信息

Weber Johanna, Pedri Leonardo, Peters Luis P, Quoika Patrick K, Dinu Dennis F, Liedl Klaus R, Tautermann Christofer S, Diederichs Tim, Garidel Patrick

机构信息

Institute of Pharmacy, Faculty of Biosciences, Martin-Luther-University Halle-Wittenberg, Wolfgang-Langenbeck-Strasse 4, Halle 06120, Germany.

Department of General, Inorganic and Theoretical Chemistry, University of Innsbruck, Innrain 80, Innsbruck 6020, Austria.

出版信息

Mol Pharm. 2025 Mar 3;22(3):1348-1364. doi: 10.1021/acs.molpharmaceut.4c01015. Epub 2025 Feb 3.

Abstract

Given that the amphiphilicity of polysorbates represents a key factor in the protection of proteins from particle formation, the loss of this property through degradative processes is a significant concern. Therefore, the present study sought to identify the factors that contribute to the oxidative cleavage of the polysorbate (PS) molecule and to ascertain the preferred sites of degradation. In order to gain insight into the radical susceptibility of the individual polysorbate segments and their accessibility to water, conceptual density functional theory calculations and molecular dynamics simulations were performed. The behavior of monoesters and diesters was examined in both monomer form and within the context of micelles. The theoretical results were corroborated by experimental findings, wherein polysorbate 20 was subjected to 50 ppb Fe and 100,000 lx·h of visible light, and subsequently stored at 25 °C/60% r.h. or 40 °C/75% r.h. for a period of 3 months. Molecular dynamics simulations demonstrated that unesterified polyoxyethylene(POE) chains within a polysorbate 20 molecule exhibited the greatest water accessibility, indicating their heightened susceptibility to oxidation. Nevertheless, the oxidative cleavage of esterified polyoxyethylene chains of a polysorbate 20 molecule is highly detrimental to the protective effect on protein particle formation. This occurs presumably at the oxyethylene (OE) units in the vicinity of the sorbitan ring, leaving a nonamphiphilic molecule in the worst case. Consequently, the critical degradation sites were identified, resulting in the formation of degradation products that indicate a loss of amphiphilicity in PS.

摘要

鉴于聚山梨酯的两亲性是保护蛋白质免于形成颗粒的关键因素,通过降解过程失去该性质是一个重大问题。因此,本研究旨在确定导致聚山梨酯(PS)分子氧化裂解的因素,并确定优先的降解位点。为了深入了解各个聚山梨酯片段的自由基敏感性及其对水的可及性,进行了概念密度泛函理论计算和分子动力学模拟。在单体形式以及胶束环境中研究了单酯和二酯的行为。理论结果得到了实验结果的证实,其中将聚山梨酯20置于50 ppb铁和100,000 lx·h可见光下,随后在25℃/60%相对湿度或40℃/75%相对湿度下储存3个月。分子动力学模拟表明,聚山梨酯20分子内未酯化的聚氧乙烯(POE)链表现出最大的水可及性,表明它们对氧化的敏感性增强。然而,聚山梨酯20分子的酯化聚氧乙烯链的氧化裂解对蛋白质颗粒形成的保护作用极为不利。这可能发生在脱水山梨醇环附近的氧乙烯(OE)单元处,在最坏的情况下会留下一个非两亲性分子。因此,确定了关键的降解位点,导致形成表明PS两亲性丧失的降解产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13ea/11881146/d30f99d40fb2/mp4c01015_0001.jpg

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