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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Antimicrobial surfaces and their potential in reducing the role of the inaiiimal environment in the incidence of hospital-acquired infections
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Antimicrobial surfaces and their potential in reducing the role of the inaiiimal environment in the incidence of hospital-acquired infections

机译:抗菌表面及其在减少医院获得性感染发生中的非正式环境中的作用的潜力

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摘要

Environmental surfaces and their role in the epidemiology of hospital-acquired infections (HAIs) have become an area of great scientific interest, particularly in light of the much publicised cases of infections due to methicillin-resistant Staphylococcus aureus (MRSA) and Clostridium difficile in UK hospitals. This feature article sets out to examine the role of surfaces and the inanimate environment in the spread of HAIs, and looks at various antimicrobial techniques being researched to reduce microbial contamination of surfaces. Preventative measures such as coatings which reduce initial microbial adhesion to surfaces will be considered alongside actively antimicrobial measures which inactivate microorganisms already adherent to a surface. The principal focus of this feature article will be given to light-activated antimicrobial surfaces such as the photocatalyst TiO2 and surfaces with embedded photosensitisers. Surfaces which release antimicrobial compounds or metal ions such as silver and copper are also examined, alongside materials which kill microbes upon contact. The widespread research and development of these antimicrobial surfaces is of great importance in maintaining acceptable levels of hygiene in hospitals and will help to fight the spread of HAIs via the contamination of inanimate surfaces in the healthcare environment.
机译:环境表面及其在医院获得性感染(HAIs)流行病学中的作用已成为具有重大科学意义的领域,尤其是鉴于在英国,因耐甲氧西林的金黄色葡萄球菌(MRSA)和艰难梭菌引起的感染广为人知医院。这篇专题文章着手研究表面和无生命环境在HAIs传播中的作用,并探讨了为减少表面微生物污染而研究的各种抗菌技术。可以考虑采取预防措施,例如减少初始微生物附着在表面上的涂层,以及可以使已经附着在表面上的微生物失活的主动抗菌措施。本专题文章的主要重点将放在光活化的抗菌表面(例如光催化剂TiO2)和带有嵌入式光敏剂的表面上。还检查了释放抗菌化合物或金属离子(如银和铜)的表面,以及与微生物接触后会杀死细菌的表面。这些抗微生物表面的广泛研究和开发对于保持医院可接受的卫生水平非常重要,并且将通过在医疗环境中污染无生命表面来帮助抵抗HAI的传播。

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