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利用秀丽隐杆线虫对线虫的分子和细胞层面的人类疾病进行建模。

Modeling molecular and cellular aspects of human disease using the nematode Caenorhabditis elegans.

作者信息

Silverman Gary A, Luke Cliff J, Bhatia Sangeeta R, Long Olivia S, Vetica Anne C, Perlmutter David H, Pak Stephen C

机构信息

Department of Pediatrics, Children's Hospital of Pittsburgh and Magee-Womens Hospital Research Institute, Department of Cell Biology and Physiology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15213, USA.

出版信息

Pediatr Res. 2009 Jan;65(1):10-8. doi: 10.1203/PDR.0b013e31819009b0.

DOI:10.1203/PDR.0b013e31819009b0
PMID:18852689
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2731241/
Abstract

As an experimental system, Caenorhabditis elegans offers a unique opportunity to interrogate in vivo the genetic and molecular functions of human disease-related genes. For example, C. elegans has provided crucial insights into fundamental biologic processes, such as cell death and cell fate determinations, as well as pathologic processes such as neurodegeneration and microbial susceptibility. The C. elegans model has several distinct advantages, including a completely sequenced genome that shares extensive homology with that of mammals, ease of cultivation and storage, a relatively short lifespan and techniques for generating null and transgenic animals. However, the ability to conduct unbiased forward and reverse genetic screens in C. elegans remains one of the most powerful experimental paradigms for discovering the biochemical pathways underlying human disease phenotypes. The identification of these pathways leads to a better understanding of the molecular interactions that perturb cellular physiology, and forms the foundation for designing mechanism-based therapies. To this end, the ability to process large numbers of isogenic animals through automated work stations suggests that C. elegans, manifesting different aspects of human disease phenotypes, will become the platform of choice for in vivo drug discovery and target validation using high-throughput/content screening technologies.

摘要

作为一种实验系统,秀丽隐杆线虫为在体内探究人类疾病相关基因的遗传和分子功能提供了独特的机会。例如,秀丽隐杆线虫为细胞死亡和细胞命运决定等基本生物学过程以及神经退行性变和微生物易感性等病理过程提供了关键见解。秀丽隐杆线虫模型有几个明显的优点,包括与哺乳动物基因组具有广泛同源性的完全测序基因组、易于培养和储存、相对较短的寿命以及产生基因敲除和转基因动物的技术。然而,在秀丽隐杆线虫中进行无偏正向和反向遗传筛选的能力仍然是发现人类疾病表型背后生化途径的最强大实验范式之一。这些途径的鉴定有助于更好地理解扰乱细胞生理学的分子相互作用,并为设计基于机制的疗法奠定基础。为此,通过自动化工作站处理大量同基因动物的能力表明,表现出人类疾病表型不同方面的秀丽隐杆线虫将成为使用高通量/高内涵筛选技术进行体内药物发现和靶点验证的首选平台。

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Autumn Olive ( Thunb.) Berries Improve Lipid Metabolism and Delay Aging in Middle-Aged .沙棘果改善中年. 的脂质代谢和延缓衰老
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Neuroligin-mediated neurodevelopmental defects are induced by mitochondrial dysfunction and prevented by lutein in C. elegans.神经连接蛋白介导的神经发育缺陷是由线粒体功能障碍引起的,而叶黄素可预防秀丽隐杆线虫中的这种缺陷。
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