Efficient Synthesis of Mannopyranoside-based Fatty Acyl Esters: Effects of Acyl Groups on Antimicrobial Potential.

IF 1.9 4区 医学 Q3 CHEMISTRY, MEDICINAL
Md Lutfor Rahaman, Md Atiqur Rahman, Md Mohin Hasnain, Mohammad Amran, Talha Bin Emran, Md Ashikur Rahaman Khan, Md Abdul Majed Patwary, Mohsin Kazi, Mohammed Mahbubul Matin
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Abstract

Background: The approval of Sucrose Fatty Acid Esters (SFAEs) as food additives/ preservatives with antimicrobial potential has triggered enormous interest in discovering new biological applications. Accordingly, many researchers reported that SFAEs consist of various sugar moieties, and hydrophobic side chains are highly active against certain fungal species.

Objective: This study aimed to conduct aregioselective synthesis of SAFE and check the effect of chain length and site of acylation (i.e., C-6 vs. C-2, C-3, C-4, and long-chain vs. short-chain) on antimicrobial potency.

Methods: A direct acylation method maintaining several conditions was used for esterification. In vitro tests, molecular docking, and in silico studies were conducted using standard procedures.

Results: In vitro tests revealed that the fatty acid chain length in mannopyranoside esters significantly affects the antifungal activity, where C12 chains are more potent against Aspergillus species. In terms of acylation site, mannopyranoside esters with a C8 chain substituted at the C-6 position are more active in antifungal inhibition. Molecular docking also revealed that these mannopyranoside esters had comparatively better stable binding energy and hence better inhibition, with the fungal enzymes lanosterol 14-alpha-demethylase (3LD6), urate oxidase (1R51), and glucoamylase (1KUL) than the standard antifungal drug fluconazole. Additionally, the thermodynamic, orbital, drug-likeness, and safety profiles of these mannopyranoside esters were calculated and discussed, along with the Structure-Activity Relationships (SAR).

Conclusion: This study thus highlights the importance of the acylation site and lipid-like fatty acid chain length that govern the antimicrobial activity of mannopyranoside-based SFAE.

高效合成基于吡喃甘露糖苷的脂肪酸酰酯:酰基对抗菌潜力的影响。
背景:蔗糖脂肪酸酯(SFAEs)被批准用作具有抗菌潜力的食品添加剂/防腐剂后,引发了人们对发现新生物应用的极大兴趣。因此,许多研究人员报告说,SFAEs 由各种糖分子和疏水性侧链组成,对某些真菌具有很高的活性:本研究旨在进行 SAFE 的异基选择性合成,并检测链长和酰化位点(即 C-6 与 C-2、C-3、C-4,以及长链与短链)对抗菌效力的影响:方法:采用保持多种条件的直接酰化方法进行酯化。采用标准程序进行了体外测试、分子对接和硅学研究:体外测试表明,甘露糖苷酯中脂肪酸链的长度对抗真菌活性有显著影响,其中 C12 链对曲霉菌的抗真菌活性更强。就酰化位点而言,C8 链在 C-6 位被取代的甘露糖苷酯类具有更强的抗真菌活性。分子对接还显示,与标准抗真菌药物氟康唑相比,这些甘露糖苷酯与真菌酶羊毛甾醇 14-α-脱甲基酶(3LD6)、尿酸氧化酶(1R51)和葡萄糖淀粉酶(1KUL)的稳定结合能更高,因此抑制效果更好。此外,还计算并讨论了这些甘露糖苷酯的热力学、轨道、药物亲和性和安全性,以及结构-活性关系(SAR):因此,本研究强调了酰化位点和类脂脂肪酸链长度对基于甘露吡喃糖苷的 SFAE 的抗菌活性的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Medicinal Chemistry
Medicinal Chemistry 医学-医药化学
CiteScore
4.30
自引率
4.30%
发文量
109
审稿时长
12 months
期刊介绍: Aims & Scope Medicinal Chemistry a peer-reviewed journal, aims to cover all the latest outstanding developments in medicinal chemistry and rational drug design. The journal publishes original research, mini-review articles and guest edited thematic issues covering recent research and developments in the field. Articles are published rapidly by taking full advantage of Internet technology for both the submission and peer review of manuscripts. Medicinal Chemistry is an essential journal for all involved in drug design and discovery.
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