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基于微流控技术的 COVID-19 诊断、预防和治疗:最新进展和未来方向。

Microfluidic-based technologies for diagnosis, prevention, and treatment of COVID-19: recent advances and future directions.

机构信息

Department of Bioengineering, Izmir Institute of Technology, Izmir, Turkey.

METU MEMS Center, Ankara, Turkey.

出版信息

Biomed Microdevices. 2023 Mar 13;25(2):10. doi: 10.1007/s10544-023-00649-z.

Abstract

The COVID-19 pandemic has posed significant challenges to existing healthcare systems around the world. The urgent need for the development of diagnostic and therapeutic strategies for COVID-19 has boomed the demand for new technologies that can improve current healthcare approaches, moving towards more advanced, digitalized, personalized, and patient-oriented systems. Microfluidic-based technologies involve the miniaturization of large-scale devices and laboratory-based procedures, enabling complex chemical and biological operations that are conventionally performed at the macro-scale to be carried out on the microscale or less. The advantages microfluidic systems offer such as rapid, low-cost, accurate, and on-site solutions make these tools extremely useful and effective in the fight against COVID-19. In particular, microfluidic-assisted systems are of great interest in different COVID-19-related domains, varying from direct and indirect detection of COVID-19 infections to drug and vaccine discovery and their targeted delivery. Here, we review recent advances in the use of microfluidic platforms to diagnose, treat or prevent COVID-19. We start by summarizing recent microfluidic-based diagnostic solutions applicable to COVID-19. We then highlight the key roles microfluidics play in developing COVID-19 vaccines and testing how vaccine candidates perform, with a focus on RNA-delivery technologies and nano-carriers. Next, microfluidic-based efforts devoted to assessing the efficacy of potential COVID-19 drugs, either repurposed or new, and their targeted delivery to infected sites are summarized. We conclude by providing future perspectives and research directions that are critical to effectively prevent or respond to future pandemics.

摘要

译文

标题:COVID-19 疫情对全球现有医疗体系带来的挑战及应对策略

摘要:COVID-19 大流行对全球现有医疗体系带来了重大挑战。针对 COVID-19 的诊断和治疗策略的紧急需求,推动了对新技术的需求,这些新技术可以改进当前的医疗方法,朝着更先进、数字化、个性化和以患者为中心的系统发展。基于微流控的技术涉及大规模设备和实验室程序的小型化,能够实现传统上在宏观尺度上进行的复杂化学和生物学操作,在微尺度或更小的尺度上进行。微流控系统提供的优势,如快速、低成本、准确和现场解决方案,使得这些工具在对抗 COVID-19 方面非常有用和有效。特别是,微流控辅助系统在不同的 COVID-19 相关领域具有很大的应用潜力,从 COVID-19 感染的直接和间接检测到药物和疫苗的发现及其靶向递送。在这里,我们综述了微流控平台在诊断、治疗或预防 COVID-19 方面的最新进展。我们首先总结了最近适用于 COVID-19 的基于微流控的诊断解决方案。然后,我们强调了微流控在开发 COVID-19 疫苗和测试候选疫苗的性能方面的关键作用,重点介绍了 RNA 递送技术和纳米载体。接下来,我们总结了基于微流控的努力,用于评估潜在的 COVID-19 药物(既有已批准药物,也有新药物)的疗效及其对感染部位的靶向递送。最后,我们提供了未来的展望和研究方向,这些对于有效预防或应对未来的大流行至关重要。

关键词:COVID-19;微流控平台;诊断;治疗;疫苗;药物;靶向递送

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/248a/10009869/ad14a208eaa6/10544_2023_649_Fig1_HTML.jpg

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