From the Department of Critical Medicine, First People's Hospital of Linping District, Hangzhou, China.
Saudi Med J. 2024 Aug;45(8):759-770. doi: 10.15537/smj.2024.45.8.20240069.
To maintain a clean and hygienic environment in the intensive care unit (ICU) is crucial for ensuring patient safety, preventing infections, and reducing healthcare-associated complications. With the increasing prevalence of infections and the emergence of viral and bacterial resistance to standard antiseptics, there is a pressing need for innovative antiseptic solutions. Nanotechnology is increasingly being employed in medicine, particularly focusing on mitigating the activities of various pathogens, including those associated with hospital-acquired infections. This paper explores the current impact of nanotechnology, with a particular focus on bacterial infections and SARS-CoV-2, which significantly strain healthcare systems, and then discusses how nanotechnology can enhance existing treatment methodologies. We highlight the effectiveness of the nanotechnology-based bactericide Bio-Kil in reducing bacterial counts in an ICU. The aim is to educate healthcare professionals on the existing role and prospects of nanotechnology in addressing prevalent infectious diseases.
保持重症监护病房(ICU)的清洁和卫生环境对于确保患者安全、预防感染和减少与医疗保健相关的并发症至关重要。随着感染的日益流行以及病毒和细菌对标准防腐剂的耐药性出现,人们迫切需要创新的防腐剂解决方案。纳米技术越来越多地应用于医学领域,特别是侧重于减轻各种病原体的活动,包括与医院获得性感染相关的病原体。本文探讨了纳米技术的当前影响,特别是针对细菌感染和 SARS-CoV-2 的影响,这些感染严重影响了医疗保健系统,然后讨论了纳米技术如何增强现有的治疗方法。我们强调了基于纳米技术的杀菌剂 Bio-Kil 在降低 ICU 中细菌数量方面的有效性。目的是让医疗保健专业人员了解纳米技术在应对当前传染病方面的现有作用和前景。