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新型季铵化木质素的合成及其抗菌性能

Synthesis and Antibacterial Properties of Novel Quaternary Ammonium Lignins.

作者信息

Mohan Mahendra K, Kaur Harleen, Rosenberg Merilin, Duvanova Ella, Lukk Tiit, Ivask Angela, Karpichev Yevgen

机构信息

Department of Chemistry and Biotechnology, Tallinn University of Technology (TalTech), 15 Akadeemia Road, 12618 Tallinn, Estonia.

Institute of Molecular and Cell Biology, University of Tartu, 23 Riia Street, 51010 Tartu, Estonia.

出版信息

ACS Omega. 2024 Sep 2;9(37):39134-39145. doi: 10.1021/acsomega.4c06000. eCollection 2024 Sep 17.

Abstract

The ongoing demand for effective antimicrobial materials persists, and lignin emerges as a promising natural antibacterial material with renewable properties. The adaptability of lignin to various chemical modifications offers avenues to enhance its antimicrobial activity. Here, we employed chloromethylation and subsequent functionalization with variable tertiary alkyl dimethyl amines to produce C6-C18 quaternary ammonium lignins (QALs) from hardwood (aspen), softwood (pine), and grass (barley straw). Successful synthesis of QALs was confirmed through NMR and FTIR analysis results along with an increase in the surface ζ-potential. Antibacterial activity of QALs against clinical strains of and methicillin-resistant was assessed using minimal bactericidal concentration (MBC) assay and agar growth inhibition zone (ZOI) test. The antibacterial activity of QALs was found to be higher than that of the unmodified lignins. QALs with longer alkyl chains demonstrated an MBC of 0.012 mg/L against already after 1 h of exposure with similar effect size reached after 24 h for . For all the lignins, an increase in alkyl chain length resulted in an increase in their bactericidal activity. MBC values of C14-C18 QALs were consistently lower than the MBC values of QALs with shorter alkyl chains. Besides the alkyl chain length, MBC values of barley and pine QALs were negatively correlated with the surface ζ-potential. While alkyl chain length was one of the key properties affecting the MBC values in a liquid-based test, the agar-based ZOI test demonstrated an antibacterial optimum of QALs at C12-C14, likely due to limited diffusion of QALs with longer alkyl chains in a semisolid medium.

摘要

对有效抗菌材料的持续需求依然存在,木质素作为一种具有可再生特性的天然抗菌材料崭露头角。木质素对各种化学修饰的适应性为增强其抗菌活性提供了途径。在此,我们采用氯甲基化以及随后用可变的叔烷基二甲基胺进行功能化,从硬木(白杨)、软木(松木)和草类(大麦秸秆)制备出C6 - C18季铵化木质素(QALs)。通过核磁共振(NMR)和傅里叶变换红外光谱(FTIR)分析结果以及表面ζ电位的增加,证实了QALs的成功合成。使用最低杀菌浓度(MBC)测定法和琼脂生长抑制圈(ZOI)试验评估了QALs对临床菌株和耐甲氧西林菌株的抗菌活性。发现QALs的抗菌活性高于未改性的木质素。具有较长烷基链的QALs在暴露1小时后对菌株的MBC为0.012 mg/L,对菌株在24小时后达到类似的效应大小。对于所有木质素,烷基链长度的增加导致其杀菌活性增强。C14 - C18 QALs的MBC值始终低于具有较短烷基链的QALs的MBC值。除了烷基链长度外,大麦和松木QALs的MBC值与表面ζ电位呈负相关。虽然烷基链长度是影响基于液体试验中MBC值的关键特性之一,但基于琼脂的ZOI试验表明QALs在C12 - C14时具有最佳抗菌效果,这可能是由于具有较长烷基链的QALs在半固体培养基中的扩散有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d5d/11411688/2b710959aa4c/ao4c06000_0006.jpg

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