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用于气管内导管的抗菌材料:过去二十年技术进展综述。

Antimicrobial materials for endotracheal tubes: A review on the last two decades of technological progress.

机构信息

CEB - Centre of Biological Engineering, University of Minho, 4710-057 Braga, Portugal; LABBELS - Associate Laboratory, Braga/Guimarães, Portugal.

出版信息

Acta Biomater. 2023 Mar 1;158:32-55. doi: 10.1016/j.actbio.2023.01.001. Epub 2023 Jan 9.

Abstract

Ventilator-associated pneumonia (VAP) is an unresolved problem in nosocomial settings, remaining consistently associated with a lack of treatment, high mortality, and prolonged hospital stay. The endotracheal tube (ETT) is the major culprit for VAP development owing to its early surface microbial colonization and biofilm formation by multiple pathogens, both critical events for VAP pathogenesis and relapses. To combat this matter, gradual research on antimicrobial ETT surface coating/modification approaches has been made. This review provides an overview of the relevance and implications of the ETT bioburden for VAP pathogenesis and how technological research on antimicrobial materials for ETTs has evolved. Firstly, certain main VAP attributes (definition/categorization; outcomes; economic impact) were outlined, highlighting the issues in defining/diagnosing VAP that often difficult VAP early- and late-onset differentiation, and that generate misinterpretations in VAP surveillance and discrepant outcomes. The central role of the ETT microbial colonization and subsequent biofilm formation as fundamental contributors to VAP pathogenesis was then underscored, in parallel with the uncovering of the polymicrobial ecosystem of VAP-related infections. Secondly, the latest technological developments (reported since 2002) on materials able to endow the ETT surface with active antimicrobial and/or passive antifouling properties were annotated, being further subject to critical scrutiny concerning their potentialities and/or constraints in reducing ETT bioburden and the risk of VAP while retaining/improving the safety of use. Taking those gaps/challenges into consideration, we discussed potential avenues that may assist upcoming advances in the field to tackle VAP rampant rates and improve patient care. STATEMENT OF SIGNIFICANCE: The use of the endotracheal tube (ETT) in patients requiring mechanical ventilation is associated with the development of ventilator-associated pneumonia (VAP). Its rapid surface colonization and biofilm formation are critical events for VAP pathogenesis and relapses. This review provides a comprehensive overview on the relevance/implications of the ETT biofilm in VAP, and on how research on antimicrobial ETT surface coating/modification technology has evolved over the last two decades. Despite significant technological advances, the limited number of gathered reports (46), highlights difficulty in overcoming certain hurdles associated with VAP (e.g., persistent colonization/biofilm formation; mechanical ventilation duration; hospital length of stay; VAP occurrence), which makes this an evolving, complex, and challenging matter. Challenges and opportunities in the field are discussed.

摘要

呼吸机相关性肺炎(VAP)是医院环境中未解决的问题,始终与治疗不足、高死亡率和住院时间延长有关。由于其早期表面微生物定植和多种病原体生物膜的形成,气管内导管(ETT)是 VAP 发展的主要罪魁祸首,这两个事件都是 VAP 发病机制和复发的关键。为了解决这个问题,人们逐渐研究了抗菌 ETT 表面涂层/修饰方法。这篇综述概述了 ETT 生物负荷对 VAP 发病机制的相关性和意义,以及 ETT 抗菌材料的技术研究是如何发展的。首先,概述了某些主要的 VAP 属性(定义/分类;结果;经济影响),强调了定义/诊断 VAP 中的问题,这些问题往往难以区分 VAP 的早发和迟发,并且导致 VAP 监测和不一致结果的误解。然后强调了 ETT 微生物定植和随后生物膜形成作为 VAP 发病机制的基本因素的核心作用,同时揭示了与 VAP 相关感染的多微生物生态系统。其次,标注了自 2002 年以来报道的能够赋予 ETT 表面主动抗菌和/或被动抗污特性的最新技术发展,进一步对它们在降低 ETT 生物负荷和 VAP 风险的同时保留/改善使用安全性方面的潜力和/或限制进行了批判性审查。考虑到这些差距/挑战,我们讨论了可能有助于解决 VAP 高发率和改善患者护理的领域未来进展的潜在途径。

意义

在需要机械通气的患者中使用气管内导管(ETT)与呼吸机相关性肺炎(VAP)的发生有关。其快速的表面定植和生物膜形成是 VAP 发病机制和复发的关键事件。这篇综述全面概述了 ETT 生物膜在 VAP 中的相关性/意义,以及过去二十年来抗菌 ETT 表面涂层/修饰技术的研究进展。尽管取得了重大技术进步,但收集到的报告数量有限(46 篇),这突出了与 VAP 相关的某些障碍(例如,持续定植/生物膜形成;机械通气时间;住院时间;VAP 发生)难以克服,这使得这是一个不断发展、复杂和具有挑战性的问题。讨论了该领域的挑战和机遇。

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