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Progress and Prospects for Genetic Modification of Nonhuman Primate Modelsin Biomedical Research

机译:非人类灵长类动物模型在生物医学研究中的遗传修饰研究进展与展望

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The growing interest of modeling human diseases using genetically modified (transgenic) nonhuman primates (NHPs) is a direct result of NHPs (rhesus macaque, etc.) close relation to humans. NHPs share similar developmental paths with humans in their anatomy, physiology, genetics, and neural functions; and in their cognition, emotion, and social behavior. The NHP model within biomedical research has played an important role in the development of vaccines, assisted reproductive technologies, and new therapies for many diseases. Biomedical research has not been the primary role of NHPs. They have mainly been used for safety evaluation and pharmacokinetics studies, rather than determining therapeutic efficacy. The development of the first transgenic rhesus macaque (2001) revolutionized the role of NHP models in biomedicine. Development of the transgenic NHP model of Huntington's disease (2008), with distinctive clinical features, further suggested the uniqueness of the model system; and the potential role of the NHP model for human genetic disorders. Modeling human genetic diseases using NHPs will continue to thrive because of the latest advances in molecular, genetic, and embryo technologies. NHPs rising role in biomedical research, specifically pre-clinical studies, is foreseeable. The path toward the development of transgenic NHPs and the prospect of transgenic NHPs in their new role in future biomedicine needs to be reviewed. This article will focus on the advancement of transgenic NHPs in the past decade, including transgenic technologies and disease mode', lg. It will outline new technologies that may have significant impact in future NHP modeling and will conclude with a discussion of the future prospects of the transgenic NHP model.
机译:使用转基因(转基因)非人类灵长类动物(NHP)对人类疾病进行建模的兴趣日益浓厚,这是NHP(猕猴等)与人类密切相关的直接结果。 NHP在人体的解剖学,生理学,遗传学和神经功能方面与人类有着相似的发展路径。以及他们的认知,情感和社交行为。生物医学研究中的NHP模型在疫苗开发,辅助生殖技术以及许多疾病的新疗法中发挥了重要作用。生物医学研究并不是NHP的主要作用。它们主要用于安全性评估和药代动力学研究,而不是确定治疗效果。第一个转基因猕猴的开发(2001年)彻底改变了NHP模型在生物医学中的作用。具有独特临床特征的亨廷顿氏病转基因NHP模型(2008年)的开发进一步表明了该模型系统的独特性。以及NHP模型在人类遗传疾病中的潜在作用。由于分子,遗传和胚胎技术的最新进展,使用NHP对人类遗传疾病进行建模将继续蓬勃发展。可以预见,NHP在生物医学研究(特别是临床前研究)中的作用将不断提高。需要回顾转基因NHPs的发展道路以及转基因NHPs在未来生物医学中的新作用的前景。本文将重点介绍转基因NHP在过去十年中的发展,包括转基因技术和疾病模式。它将概述可能对未来NHP建模产生重大影响的新技术,并在最后讨论转基因NHP模型的前景。

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