Advancements in nanosensors for detecting pathogens in healthcare environments†

IF 5.8 2区 环境科学与生态学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Antonia Bruno, Farida Tripodi, Alice Armanni, Linda Barbieri, Alessandro Colombo, Sara Fumagalli, Hind Moukham, Giulia Tomaino, Ekaterina Kukushkina, Roberto Lorenzi, Letizia Marchesi, Angelo Monguzzi, Alberto Paleari, Alessandra Ronchi, Valeria Secchi, Laura Sironi and Miriam Colombo
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Abstract

Hospitals serve as critical environments for the management of diverse medical conditions, ranging from routine illnesses to life-threatening emergencies. However, alongside providing healthcare services, hospitals represent reservoirs for the transmission of microbial pathogens. Understanding the distribution and dynamics of pathogens within hospital settings is crucial for effective infection control and prevention strategies. Concurrently, the integration of cutting-edge technologies for the early detection and monitoring of target bacteria stands as a pivotal strategy in this battle against nosocomial infections. This critical review aims to provide a systematic insight into the main threatening microbes in hospitals and the detection of pathogens in different environments, ranging from intensive care units to general wards, including hospital entrances, bathrooms, high-touch surfaces, patient bed rails, medical equipment, and floors, which are often contaminated. We discuss recent scientific and technological advances in pathogen detection by exploring innovative methods that leverage nanotechnology to improve biosensing effectiveness and selectivity. This review is divided into sections focusing on various types of hospital environments, classes of mostly represented pathogens and kinds of available nanobiosensors. We include two comprehensive tables summarizing bacterial contamination in hospital wards and the materials and substrates associated with the nanobiosensors that have been developed. Eventually, we highlight the open challenges and perspectives in nanotechnology-based healthcare-environment monitoring and remediation as a promising solution to counteract pathogen emergence and spread.

Abstract Image

Abstract Image

用于检测医疗环境中病原体的纳米传感器取得进展
医院是治疗各种病症的重要环境,从常规疾病到危及生命的急症,不一而足。然而,在提供医疗保健服务的同时,医院也是微生物病原体的传播源。了解病原体在医院环境中的分布和动态对于有效的感染控制和预防策略至关重要。与此同时,整合尖端技术对目标细菌进行早期检测和监控也是这场对抗院内感染战役中的关键策略。这篇评论旨在系统地介绍医院中的主要威胁微生物,以及从重症监护室到普通病房等不同环境中的病原体检测,包括医院入口、浴室、高接触表面、病人床栏、医疗设备和地板等经常受到污染的地方。通过探讨利用纳米技术提高生物传感有效性和选择性的创新方法,我们讨论了病原体检测领域最新的科学和技术进展。本综述分为几个部分,重点介绍各种类型的医院环境、主要病原体类别以及现有纳米生物传感器的种类。我们在两张综合表格中总结了医院病房的细菌污染情况以及与已开发的纳米生物传感器相关的材料和基底。最后,我们强调了在基于纳米技术的医疗环境监测和修复方面所面临的挑战和前景,认为这是应对病原体出现和传播的一种有前途的解决方案。
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来源期刊
Environmental Science: Nano
Environmental Science: Nano CHEMISTRY, MULTIDISCIPLINARY-ENVIRONMENTAL SCIENCES
CiteScore
12.20
自引率
5.50%
发文量
290
审稿时长
2.1 months
期刊介绍: Environmental Science: Nano serves as a comprehensive and high-impact peer-reviewed source of information on the design and demonstration of engineered nanomaterials for environment-based applications. It also covers the interactions between engineered, natural, and incidental nanomaterials with biological and environmental systems. This scope includes, but is not limited to, the following topic areas: Novel nanomaterial-based applications for water, air, soil, food, and energy sustainability Nanomaterial interactions with biological systems and nanotoxicology Environmental fate, reactivity, and transformations of nanoscale materials Nanoscale processes in the environment Sustainable nanotechnology including rational nanomaterial design, life cycle assessment, risk/benefit analysis
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