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用于医疗保健应用的具有抗菌和抗病毒特性的协同聚合物涂层

Synergistic Polymer Coatings with Antibacterial and Antiviral Properties for Healthcare Applications.

作者信息

Duque-Sanchez Lina, Pasic Paul J, Esneau Camille, Batra Vishek, Tjandaputra Ghian, Tan Tony, Bartlett Nathan, Thissen Helmut

机构信息

CSIRO Manufacturing, Research Way, Clayton, VIC 3168, Australia.

Faculty of Pharmacy and Pharmaceutical Sciences, Monash University, Parkville, VIC 3052, Australia.

出版信息

ACS Omega. 2024 Jul 17;9(30):32662-32673. doi: 10.1021/acsomega.4c02235. eCollection 2024 Jul 30.

Abstract

The role of frequently touched surfaces in the transmission of infectious diseases is well-documented, and the urgent need for effective surface technologies with antipathogen activity has been highlighted by the recent global pandemic and rise in antimicrobial resistance. Here, we have explored combinations of up to 3 different classes of compounds within a polymeric matrix to enable the fabrication of coatings with broad-spectrum activity. Compounds were either based on metals or metal oxides, namely, copper, silver, and copper oxide, essential oils, namely, cinnamaldehyde, tea tree oil, and carvacrol oil, or cationic polymers, namely, poly(ε-lysine) and poly(hexamethylene biguanide). These compounds were mixed into a polymer matrix, coated, and dried to yield durable coatings. Coatings containing up to 7.5% (w/w) of the compounds were assessed in the zone of inhibition and biofilm assays using and , as well as infectivity assays using human coronavirus OC43. Our data demonstrate that a selected combination of additives was able to provide a 5-log reduction in the colony-forming units of both bacteria and a 4-log reduction in viral infectivity. This simple but highly effective technology is expected to find applications in environments such as hospitals, aged care facilities, or public transport.

摘要

频繁接触的表面在传染病传播中的作用已有充分记录,近期的全球大流行和抗菌药物耐药性的上升凸显了对具有抗病原体活性的有效表面技术的迫切需求。在此,我们探索了在聚合物基质中最多3种不同类别的化合物的组合,以制备具有广谱活性的涂层。这些化合物要么基于金属或金属氧化物,即铜、银和氧化铜,要么是精油,即肉桂醛、茶树油和香芹酚油,要么是阳离子聚合物,即聚(ε-赖氨酸)和聚(六亚甲基双胍)。将这些化合物混入聚合物基质中,进行涂布并干燥,以获得耐用涂层。使用[具体细菌]和[具体细菌]在抑菌圈和生物膜试验中,以及使用人冠状病毒OC43进行感染性试验,对含有高达7.5%(w/w)化合物的涂层进行了评估。我们的数据表明,选定的添加剂组合能够使细菌的菌落形成单位减少5个对数级,病毒感染性降低4个对数级。这种简单但高效的技术有望在医院、老年护理机构或公共交通等环境中得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/542a/11292814/a8cd5cfebd20/ao4c02235_0001.jpg

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