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Bioengineering tools to speed up the discovery and preclinical testing of vaccines for SARS-CoV-2 and therapeutic agents for COVID-19

机译:生物工程工具,加快SARS-COV-2疫苗的发现和临床前测试,以及Covid-19的治疗剂

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This review provides an update for the international research community on the cell modeling tools that could accelerate the understanding of SARS-CoV-2 infection mechanisms and could thus speed up the development of vaccines and therapeutic agents against COVID-19. Many bioengineering groups are actively developing frontier tools that are capable of providing realistic three-dimensional (3D) models for biological research, including cell culture scaffolds, microfluidic chambers for the culture of tissue equivalents and organoids, and implantable windows for intravital imaging. Here, we review the most innovative study models based on these bioengineering tools in the context of virology and vaccinology. To make it easier for scientists working on SARS-CoV-2 to identify and apply specific tools, we discuss how they could accelerate the discovery and preclinical development of antiviral drugs and vaccines, compared to conventional models.? The author(s).
机译:本综述为国际研究界进行了更新,可以加速对SARS-COV-2感染机制的理解,从而加快对Covid-19的疫苗和治疗剂的发展。许多生物工程集团正在积极开发能够为生物研究提供现实的三维(3D)模型的前沿工具,包括细胞培养支架,用于培养的组织当量和有机体的微流体室,以及用于流体成像的可植入窗口。在这里,我们在病毒学和疫苗学的背景下基于这些生物工程的工具审查了最具创新性的研究模型。为了使SARS-COV-2上工作的科学家更容易识别和应用特定工具,我们讨论了与传统模型相比,他们如何加速抗病毒药物和疫苗的发现和临床前发育。作者。

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