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载 PEI/NONOates 的 PLGA 纳米粒通过与生物膜基质结合根除糖尿病伤口中耐甲氧西林金黄色葡萄球菌生物膜。

PEI/NONOates-doped PLGA nanoparticles for eradicating methicillin-resistant Staphylococcus aureus biofilm in diabetic wounds via binding to the biofilm matrix.

机构信息

Department of Manufacturing Pharmacy, College of Pharmacy, Pusan National University, Busan 46241, South Korea.

Department of Manufacturing Pharmacy, College of Pharmacy, Pusan National University, Busan 46241, South Korea; Department of Cogno-Mechatronics Engineering, College of Nanoscience & Nanotechnology, Pusan National University, Busan 46241, South Korea.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Oct;103:109741. doi: 10.1016/j.msec.2019.109741. Epub 2019 May 14.

Abstract

Wounds infected with methicillin-resistant Staphylococcus aureus (MRSA) biofilm represent a high risk in patients with diabetes. Nitric oxide (NO) has shown promise in dispersing biofilm and wound healing. For an effective treatment of MRSA biofilm-infected wounds, however, NO needs to be supplied to the biofilm matrix in a sustainable manner due to a short half-life and limited diffusion distance of NO. In this study, polyethylenimine/diazeniumdiolate (PEI/NONOate)-doped PLGA nanoparticles (PLGA-PEI/NO NPs) with an ability to bind to the biofilm matrix are developed to facilitate the NO delivery to MRSA biofilm-infected wound. In simulated wound fluid, PLGA-PEI/NO NPs show an extended NO release over 4 days. PLGA-PEI/NO NPs firmly bind to the MRSA biofilm matrix, resulting in a greatly enhanced anti-biofilm activity. Moreover, PLGA-PEI/NO NPs accelerate healing of MRSA biofilm-infected wounds in diabetic mice along with complete biofilm dispersal and reduced bacterial burden. These results suggest that the biofilm-binding NO-releasing NPs represent a promising NO delivery system for the treatments of biofilm-infected chronic wounds.

摘要

耐甲氧西林金黄色葡萄球菌(MRSA)生物膜感染的伤口对糖尿病患者来说是一个高风险因素。一氧化氮(NO)在分散生物膜和促进伤口愈合方面显示出了一定的前景。然而,由于 NO 的半衰期短且扩散距离有限,为了有效治疗 MRSA 生物膜感染的伤口,需要以可持续的方式向生物膜基质中提供 NO。在这项研究中,开发了具有结合生物膜基质能力的聚乙烯亚胺/叠氮化物(PEI/NONOate)掺杂的 PLGA 纳米颗粒(PLGA-PEI/NO NPs),以促进 NO 递送至 MRSA 生物膜感染的伤口。在模拟伤口液中,PLGA-PEI/NO NPs 可在 4 天内持续释放 NO。PLGA-PEI/NO NPs 可牢固地结合到 MRSA 生物膜基质上,从而大大增强了抗生物膜活性。此外,PLGA-PEI/NO NPs 可加速糖尿病小鼠 MRSA 生物膜感染伤口的愈合,同时完全分散生物膜并减少细菌负荷。这些结果表明,这种结合生物膜的、释放 NO 的纳米颗粒代表了一种有前途的用于治疗生物膜感染性慢性伤口的 NO 递送系统。

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