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Modeling Viral Infectious Diseases and Development of Antiviral Therapies Using Human Induced Pluripotent Stem Cell-Derived Systems

机译:使用人类诱导的多能干细胞衍生系统对病毒感染性疾病和抗病毒疗法进行建模

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摘要

The recent biotechnology breakthrough of cell reprogramming and generation of induced pluripotent stem cells (iPSCs), which has revolutionized the approaches to study the mechanisms of human diseases and to test new drugs, can be exploited to generate patient-specific models for the investigation of host–pathogen interactions and to develop new antimicrobial and antiviral therapies. Applications of iPSC technology to the study of viral infections in humans have included in vitro modeling of viral infections of neural, liver, and cardiac cells; modeling of human genetic susceptibility to severe viral infectious diseases, such as encephalitis and severe influenza; genetic engineering and genome editing of patient-specific iPSC-derived cells to confer antiviral resistance.
机译:细胞重编程和诱导多能干细胞(iPSC)生成的最新生物技术突破,彻底改变了研究人类疾病机制和测试新药的方法,可用于生成针对患者宿主的患者特异性模型–病原体相互作用并开发新的抗微生物和抗病毒疗法。 iPSC技术在人类病毒感染研究中的应用包括对神经,肝和心脏细胞的病毒感染进行体外建模。模拟人类对严重病毒感染性疾病(如脑炎和严重流感)的遗传易感性;患者特异性iPSC衍生细胞的基因工程和基因组编辑以赋予抗病毒抗性。

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