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基于微流控技术的即时检测(POCT)设备应对新冠疫情浪潮:新兴解决方案

Microfluidics-Based Point-of-Care Testing (POCT) Devices in Dealing with Waves of COVID-19 Pandemic: The Emerging Solution.

作者信息

Kumar Avinash, Parihar Arpana, Panda Udwesh, Parihar Dipesh Singh

机构信息

Department of Mechanical Engineering, Indian Institute of Information Technology Design & Manufacturing Kancheepuram, Chennai 600127, India.

Industrial Waste Utilization, Nano and Biomaterials, CSIR-Advanced Materials and Processes Research Institute (AMPRI), Hoshangabad Road, Bhopal, Madhya Pradesh 462026, India.

出版信息

ACS Appl Bio Mater. 2022 May 16;5(5):2046-2068. doi: 10.1021/acsabm.1c01320. Epub 2022 Apr 27.

Abstract

Recent advances in microfluidics-based point-of-care testing (POCT) technology such as paper, array, and beads have shown promising results for diagnosing various infectious diseases. The fast and timely detection of viral infection has proven to be a critical step for deciding the therapeutic outcome in the current COVID-19 pandemic, which in turn not only enhances the patient survival rate but also reduces the disease-associated comorbidities. In the present scenario, rapid, noninvasive detection of the virus using low cost and high throughput microfluidics-based POCT devices embraces the advantages over existing diagnostic technologies, for which a centralized lab facility, expensive instruments, sample pretreatment, and skilled personnel are required. Microfluidic-based multiplexed POCT devices can be a boon for clinical diagnosis in developing countries that lacks a centralized health care system and resources. The microfluidic devices can be used for disease diagnosis and exploited for the development and testing of drug efficacy for disease treatment in model systems. The havoc created by the second wave of COVID-19 led several countries' governments to the back front. The lack of diagnostic kits, medical devices, and human resources created a huge demand for a technology that can be remotely operated with single touch and data that can be analyzed on a phone. Recent advancements in information technology and the use of smartphones led to a paradigm shift in the development of diagnostic devices, which can be explored to deal with the current pandemic situation. This review sheds light on various approaches for the development of cost-effective microfluidics POCT devices. The successfully used microfluidic devices for COVID-19 detection under clinical settings along with their pros and cons have been discussed here. Further, the integration of microfluidic devices with smartphones and wireless network systems using the Internet-of-things will enable readers for manufacturing advanced POCT devices for remote disease management in low resource settings.

摘要

基于微流控的即时检测(POCT)技术,如试纸、阵列和微珠等方面的最新进展,已在诊断各种传染病方面显示出令人鼓舞的成果。事实证明,在当前的新冠疫情中,快速及时地检测病毒感染是决定治疗结果的关键一步,这不仅能提高患者生存率,还能降低疾病相关的合并症。在当前情况下,使用低成本、高通量的基于微流控的POCT设备进行病毒的快速、无创检测,相比现有的诊断技术具有优势,因为现有技术需要集中的实验室设施、昂贵的仪器、样本预处理和技术人员。基于微流控的多重POCT设备对于缺乏集中医疗保健系统和资源的发展中国家的临床诊断可能是一大福音。微流控设备可用于疾病诊断,并可用于模型系统中疾病治疗药物疗效的开发和测试。新冠疫情第二波造成的破坏使一些国家的政府陷入困境。诊断试剂盒、医疗设备和人力资源的短缺,使得人们对一种可以单触远程操作且数据能在手机上分析的技术产生了巨大需求。信息技术的最新进展和智能手机的使用导致了诊断设备开发的范式转变,可利用这一点来应对当前的疫情形势。本综述阐述了开发具有成本效益的微流控POCT设备的各种方法。这里讨论了在临床环境中成功用于新冠病毒检测的微流控设备及其优缺点。此外,将微流控设备与智能手机和使用物联网的无线网络系统集成,将有助于读者制造用于低资源环境中远程疾病管理的先进POCT设备。

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