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首页> 外文期刊>International Journal of Nanomedicine >Chitosan-polyvinyl alcohol nanoscale liquid film-forming system facilitates MRSA-infected wound healing by enhancing antibacterial and antibiofilm properties
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Chitosan-polyvinyl alcohol nanoscale liquid film-forming system facilitates MRSA-infected wound healing by enhancing antibacterial and antibiofilm properties

机译:壳聚糖-聚乙烯醇纳米级液膜形成系统可通过增强抗菌和抗生物膜特性促进MRSA感染的伤口愈合

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Introduction: Methicillin-resistant Staphylococcus aureus (MRSA) is one of the most predominant and fatal pathogens at wound infection sites. MRSA is difficult to treat because of its antibiotic resistance and ability to form biofilms at the wound site. Methods: In this study, a novel nanoscale liquid film-forming system (LFFS) loaded with benzalkonium bromide was produced based on polyvinyl alcohol and chitosan. Results: This LFFS showed a faster and more potent effect against MRSA252 than benzalkonium bromide aqueous solution both in vitro and in?vivo. Additionally, the LFFS had a stronger ability to destroy biofilms (5 mg/mL) and inhibit their formation (1.33 μg/mL). The LFFS inflicted obvious damage to the structure and integrity of MRSA cell membranes and caused increases in the release of alkaline phosphate and lactate dehydrogenase in the relative electrical conductivity and in K+ and Mg2+ concentrations due to changes in the MRSA cell membrane permeability. Conclusion: The novel LFFS is promising as an effective system for disinfectant delivery and for application in the treatment of MRSA wound infections.
机译:简介:耐甲氧西林金黄色葡萄球菌(MRSA)是伤口感染部位最主要和致命的病原体之一。 MRSA由于其抗生素抗性和在伤口部位形成生物膜的能力而难以治疗。方法:本研究基于聚乙烯醇和壳聚糖,制备了一种新型的载有苯扎溴铵的纳米级液体成膜系统(LFFS)。结果:在体外和体内,该LFFS均比苯扎溴铵水溶液显示出对MRSA252更快,更有效的作用。此外,LFFS具有更强的破坏生物膜的能力(5 mg / mL)并抑制其形成(1.33μg/ mL)。 LFFS明显破坏了MRSA细胞膜的结构和完整性,并由于MRSA细胞膜通透性的变化而导致碱性磷酸根和乳酸脱氢酶释放的相对电导率以及K +和Mg2 +浓度增加。结论:新型LFFS有望成为一种有效的消毒剂递送系统,并用于治疗MRSA伤口感染。

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