新兴的3d打印材料对细菌生物膜生长在医疗保健设置表面的全面审查。

Shristi Panigrahi, Shraavani Konatam, Antara Tandi, Dijendra Nath Roy
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引用次数: 0

摘要

生物医学表面的微生物污染可导致医院获得性疾病,这是医疗保健系统的一个重大负担。细菌、病毒和真菌可在表面存活数天或数月,并传播给患者和医务人员。本文介绍了3D打印技术,如熔融沉积建模、生物打印、粘合剂喷射/喷墨、聚射流、电子束制造、立体光刻、选择性激光烧结和层压物体制造,这些技术用于制造医疗保健环境的表面,通过探索抗生物膜活性来减少细菌污染,对抗导致感染的不同细菌物种,基于已发表报告的关键评估。这一策略具有巨大的潜力,将成为医疗环境中推进材料表面涂层概念的一种即将到来的方法。我们的文献评估确定了有益的3D打印材料和相关技术,以对抗微生物的生长,主要是涉及植入物感染的细菌,强调了抗生物膜3D打印表面的发展。此外,作者还确定了几个关键领域,在这些领域中,研究和开发对于在医疗保健环境中推进3d打印技术至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comprehensive review of emerging 3D-printing materials against bacterial biofilm growth on the surface of healthcare settings.

A significant burden on the healthcare system, microbial contamination of biomedical surfaces can result in hospital-acquired illnesses. Bacteria, viruses, and fungi may live on surfaces for days or months and spread to patients and medical personnel. This article describes the 3D printing technologies, such as fused deposition modeling, bioprinting, binder jetting/inkjet, poly-jet, electron beam manufacturing, stereolithography, selective laser sintering, and laminated object manufacturing used for manufacturing the healthcare setting's surface to reduce bacterial contamination with exploring anti-biofilm activity against different bacterial species responsible for infections, based on the critical evaluation of published reports. This strategy has immense potential to become an upcoming approach for advancing the coating concept on the material's surface in healthcare settings. Our literature evaluation identifies beneficial 3D printing materials and associated technologies against microorganisms' growth, mainly bacteria involved in implant-based infection, emphasizing the development of anti-biofilm 3D-printed surfaces. Additionally, the authors have identified a few key areas where research and development are critically required to advance 3D-printing technology in healthcare settings.

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