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纳米技术在快速检测和抗菌耐药菌感染治疗中的应用

Nanotechnology Approaches for Rapid Detection and Theranostics of Antimicrobial Resistant Bacterial Infections.

机构信息

Nanomedicine Lab, Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Mumbai 400076, India.

出版信息

ACS Biomater Sci Eng. 2022 Jun 13;8(6):2232-2257. doi: 10.1021/acsbiomaterials.1c01516. Epub 2022 May 12.

Abstract

As declared by WHO, antimicrobial resistance (AMR) is a high priority issue with a pressing need to develop impactful technologies to curb it. The rampant and inappropriate use of antibiotics due to the lack of adequate and timely diagnosis is a leading cause behind AMR evolution. Unfortunately, populations with poor economic status and those residing in densely populated areas are the most affected ones, frequently leading to emergence of AMR pathogens. Classical approaches for AMR diagnostics like phenotypic methods, biochemical assays, and molecular techniques are cumbersome and resource-intensive and involve a long turnaround time to yield confirmatory results. In contrast, recent emergence of nanotechnology-assisted approaches helps to overcome challenges in classical approaches and offer simpler, more sensitive, faster, and more affordable solutions for AMR diagnostics. Nanomaterial platforms (metallic, quantum-dot, carbon-based, upconversion, etc.), nanoparticle-based rapid point-of-care platforms, nano-biosensors (optical, mechanical, electrochemical), microfluidic-assisted devices, and importantly, nanotheranostic devices for diagnostics with treatment of AMR infections are examples of rapidly growing nanotechnology approaches used for AMR management. This review comprehensively summarizes the past 10 years of research progress on nanotechnology approaches for AMR diagnostics and for estimating antimicrobial susceptibility against commonly used antibiotics. This review also highlights several bottlenecks in nanotechnology approaches that need to be addressed prior to considering their translation to clinics.

摘要

世界卫生组织宣布,抗菌药物耐药性(AMR)是一个高度优先事项,迫切需要开发有影响力的技术来遏制它。由于缺乏充分和及时的诊断,抗生素的广泛和不当使用是 AMR 进化的主要原因。不幸的是,经济状况较差的人群和人口密集地区的人群受影响最大,经常导致 AMR 病原体的出现。用于 AMR 诊断的经典方法,如表型方法、生化分析和分子技术,繁琐且资源密集,需要很长的周转时间才能得出确认结果。相比之下,最近出现的纳米技术辅助方法有助于克服经典方法的挑战,并为 AMR 诊断提供更简单、更灵敏、更快和更经济实惠的解决方案。纳米材料平台(金属、量子点、碳基、上转换等)、基于纳米颗粒的即时护理点平台、纳米生物传感器(光学、机械、电化学)、微流控辅助设备,以及重要的是,用于 AMR 感染诊断和治疗的纳米治疗诊断设备,是用于 AMR 管理的快速发展的纳米技术方法的示例。这篇综述全面总结了过去 10 年在用于 AMR 诊断和评估常用抗生素抗菌药物敏感性的纳米技术方法方面的研究进展。本文还强调了纳米技术方法中需要解决的几个瓶颈问题,这些问题在考虑将其转化为临床应用之前需要解决。

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