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涂覆在可光交联壳聚糖水凝胶上的MDP1抗菌肽对万古霉素和耐甲氧西林菌的快速根除:抗菌和分子对接研究

Rapid eradication of vancomycin and methicillin-resistant by MDP1 antimicrobial peptide coated on photocrosslinkable chitosan hydrogel: antibacterial and molecular docking studies.

作者信息

Ekhtiari-Sadegh Sarvenaz, Samani Saeed, Barneh Farnoosh, Dashtbin Shirin, Shokrgozar Mohammad Ali, Pooshang Bagheri Kamran

机构信息

Venom and Biotherapeutics Molecules Lab, Medical Biotechnology Department, Biotechnology Research Center, Pasteur Institute of Iran, Tehran, Iran.

Department of Tissue Engineering, School of Advanced Technologies in Medicine, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Front Bioeng Biotechnol. 2024 Apr 11;12:1385001. doi: 10.3389/fbioe.2024.1385001. eCollection 2024.

Abstract

INTRODUCTION

Antibiotic resistance and weak bioavailability of antibiotics in the skin due to systemic administration leads to failure in eradication of vancomycin- and methicillin-resistant (VRSA and MRSA)-associated wound infections and subsequent septicemia and even death. Accordingly, this study aimed at designing a photocrosslinkable methacrylated chitosan (MECs) hydrogel coated by melittin-derived peptide 1 (MDP1) that integrated the antibacterial activity with the promising skin regenerative capacity of the hydrogel to eradicate bacteria by burst release strategy.

METHODS

The MECs was coated with MDP1 (MECs-MDP1), characterized, and the hydrogel-peptide interaction was evaluated by molecular docking. Antibacterial activities of MECs-MDP1 were evaluated against VRSA and MRSA bacteria and compared to MECs-vancomycin (MECs-vanco). Antibiofilm activity of MECs-MDP1 was studied by our novel ' biofilm inhibition zone (IBIZ)' assay, and SEM. Biocompatibility with human dermal fibroblast cells (HDFs) was also evaluated.

RESULTS AND DISCUSSION

Molecular docking showed hydrogen bonds as the most interactions between MDP1 and MECs at a reasonable affinity. MECs-MDP1 eradicated the bacteria rapidly by burst release strategy whereas MECs-vanco failed to eradicate them at the same time intervals. Antibiofilm activity of MECs-MDP1 were also proved successfully. As a novel report, molecular docking analysis has demonstrated that MDP1 covers the structure of MECs and also binds to lysozyme with a reasonable affinity, which may explain the inhibition of lysozyme. MECs-MDP1 was also biocompatible with human dermal fibroblast skin cells, which indicates its safe future application. The antibacterial properties of a photocrosslinkable methacrylated chitosan-based hydrogel coated with MDP1 antimicrobial peptide were successfully proved against the most challenging antibiotic-resistant bacteria causing nosocomial wound infections; VRSA and MRSA. Molecular docking analysis revealed that MDP1 interacts with MECs mainly through hydrogen bonds with reasonable binding affinity. MECs-MDP1 hydrogels eradicated the planktonic state of bacteria by burst release of MDP1 in just a few hours whereas MECs-vanco failed to eradicate them. inhibition zone assay showed the anti-biofilm activity of the MECs-MDP1 hydrogel too. These findings emphasize that MECs-MDP1 hydrogel would be suggested as a biocompatible wound-dressing candidate with considerable and rapid antibacterial activities to prevent/eradicate VRSA/MRSA bacterial wound infections.

摘要

引言

抗生素耐药性以及全身给药时抗生素在皮肤中的生物利用度较低,导致根除耐万古霉素和耐甲氧西林(VRSA和MRSA)相关伤口感染以及随后的败血症甚至死亡失败。因此,本研究旨在设计一种由蜂毒肽衍生肽1(MDP1)包被的可光交联甲基丙烯酸化壳聚糖(MECs)水凝胶,该水凝胶将抗菌活性与水凝胶有前景的皮肤再生能力相结合,通过突发释放策略根除细菌。

方法

用MDP1包被MECs(MECs-MDP1),对其进行表征,并通过分子对接评估水凝胶与肽的相互作用。评估MECs-MDP1对VRSA和MRSA细菌的抗菌活性,并与MECs-万古霉素(MECs-vanco)进行比较。通过我们新颖的“生物膜抑制区(IBIZ)”试验和扫描电子显微镜研究MECs-MDP1的抗生物膜活性。还评估了其与人皮肤成纤维细胞(HDFs)的生物相容性。

结果与讨论

分子对接显示氢键是MDP1与MECs之间最主要的相互作用,且亲和力合理。MECs-MDP1通过突发释放策略迅速根除细菌,而MECs-vanco在相同时间间隔内未能根除细菌。MECs-MDP1的抗生物膜活性也得到了成功证明。作为一项新的报告,分子对接分析表明MDP1覆盖了MECs的结构,并且还以合理的亲和力与溶菌酶结合,这可能解释了对溶菌酶的抑制作用。MECs-MDP1与人皮肤成纤维细胞也具有生物相容性,这表明其未来应用安全。成功证明了一种包被有MDP1抗菌肽的可光交联甲基丙烯酸化壳聚糖基水凝胶对导致医院获得性伤口感染的最具挑战性的耐药细菌VRSA和MRSA具有抗菌性能。分子对接分析表明MDP1与MECs主要通过氢键相互作用,结合亲和力合理。MECs-MDP1水凝胶在短短几个小时内通过MDP1的突发释放根除了浮游状态的细菌,而MECs-vanco未能根除它们。抑菌圈试验也显示了MECs-MDP1水凝胶的抗生物膜活性。这些发现强调,MECs-MDP1水凝胶将被建议作为一种具有相当快速抗菌活性的生物相容性伤口敷料候选物,以预防/根除VRSA/MRSA细菌性伤口感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e95/11047131/234543d1e71c/fbioe-12-1385001-g001.jpg

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