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手性分离和多糖手性固定相拆分去甲泽兰醇及其衍生物的分子模拟研究。

Chiral separation and molecular modeling study of decursinol and its derivatives using polysaccharide-based chiral stationary phases.

机构信息

College of Pharmacy, Chungnam National University, Daejeon, Republic of Korea.

College of Pharmacy, Kangwon National University, Gangwon-do, Republic of Korea.

出版信息

J Chromatogr A. 2023 Aug 30;1705:464165. doi: 10.1016/j.chroma.2023.464165. Epub 2023 Jun 17.

Abstract

Plant-based bioactive substances have long been used to treat inflammatory ailments, owing to their low toxicity and cost-effectiveness. To enhance plant treatment by eliminating undesirable isomers, optimizing the chiral separation techniques in pharmaceutical and clinical studies is important. This study reported a simple and effective method for chiral separation of decursinol and its derivatives, which are pyranocoumarin compounds with anti-cancer and anti-inflammatory properties. Baseline separation (Rs >1.5) was achieved using five different polysaccharide-based chiral stationary phases (CSPs) that differed in chiral origin, chiral selector chemistry, and preparation technique. To separate all six enantiomers simultaneously, n-hexane and three alcohol modifiers (ethanol, isopropanol, and n-butanol) were used as mobile phases in the normal-phase mode. The chiral separation ability of each column with various mobile phase compositions was compared and discussed. As a result, amylose-based CSPs with linear alcohol modifiers demonstrated superior resolution. Three cases of elution order reversal caused by modifications of CSPs and alcohol modifiers were observed and thoroughly analyzed. To elucidate the chiral recognition mechanism and enantiomeric elution order (EEO) reversal phenomenon, detailed molecular docking simulations were conducted. The R- and S-enantiomers of decursinol, epoxide, and CGK012 exhibited binding energies of -6.6, -6.3, -6.2, -6.3, -7.3, and -7.5 kcal/mol, respectively. The magnitude of the difference in binding energies was consistent with the elution order and enantioselectivity (α) of the analytes. The molecular simulation results demonstrated that hydrogen bonds, π-π interactions, and hydrophobic interactions have a significant impact on chiral recognition mechanisms. Overall, this study presented a novel and logical approach of optimizing chiral separation techniques in the pharmaceutical and clinical industries. Our findings could be further applied for screening and optimizing enantiomeric separation.

摘要

植物源生物活性物质由于其低毒性和成本效益,长期以来一直被用于治疗炎症性疾病。为了通过消除不理想的异构体来增强植物治疗效果,优化药物和临床研究中的手性分离技术非常重要。本研究报道了一种简单有效的手性分离方法,用于分离具有抗癌和抗炎特性的吡喃香豆素类化合物——蛇床子素及其衍生物。使用五种不同的多糖基手性固定相(CSP)实现了基线分离(Rs>1.5),这些 CSP 在手性起源、手性选择剂化学和制备技术上有所不同。为了同时分离所有六种对映异构体,在正相模式下使用正己烷和三种醇改性剂(乙醇、异丙醇和正丁醇)作为流动相。比较和讨论了每种柱在不同流动相组成下的手性分离能力。结果表明,带有线性醇改性剂的直链淀粉 CSP 具有更好的分辨率。观察到并彻底分析了由于 CSP 和醇改性剂的修饰而导致的三种洗脱顺序反转的情况。为了阐明手性识别机制和对映体洗脱顺序(EEO)反转现象,进行了详细的分子对接模拟。蛇床子素、环氧化物和 CGK012 的 R-和 S-对映异构体的结合能分别为-6.6、-6.3、-6.2、-6.3、-7.3 和-7.5 kcal/mol。结合能的差异大小与分析物的洗脱顺序和对映选择性(α)一致。分子模拟结果表明,氢键、π-π相互作用和疏水相互作用对手性识别机制有重大影响。总的来说,本研究提出了一种优化药物和临床行业手性分离技术的新方法。我们的研究结果可进一步应用于筛选和优化对映体分离。

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