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Dissecting diabetes/metabolic disease mechanisms using pluripotent stem cells and genome editing tools

机译:使用多能干细胞和基因组编辑工具剖析糖尿病/代谢疾病的机制

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Background: Diabetes and metabolic syndromes are chronic, devastating diseases with increasing prevalence. Human pluripotent stem cells are gaining popularity in their usage for human in vitro disease modeling. With recent rapid advances in genome editing tools, these cells can now be genetically manipulated with relative ease to study how genes and gene variants contribute to diabetes and metabolic syndromes. Scope of review: We highlight the diabetes and metabolic genes and gene variants, which could potentially be studied, using two powerful technologies - human pluripotent stem cells (hPSCs) and genome editing tools - to aid the elucidation of yet elusive mechanisms underlying these complex diseases. Major conclusions: hPSCs and the advancing genome editing tools appear to be a timely and potent combination for probing molecular mechanism(s) underlying diseases such as diabetes and metabolic syndromes. The knowledge gained from these hiPSC-based disease modeling studies can potentially be translated into the clinics by guiding clinicians on the appropriate type of medication to use for each condition based on the mechanism of action of the disease.
机译:背景:糖尿病和代谢综合征是慢性,破坏性疾病,患病率不断上升。人多能干细胞在其用于人类体外疾病建模的用途中正变得越来越流行。随着基因组编辑工具的最新飞速发展,现在可以相对轻松地对这些细胞进行基因操作,以研究基因和基因变体如何导致糖尿病和代谢综合征。审查范围:我们着重指出糖尿病和代谢基因及基因变异,可以使用两种强大的技术-人类多能干细胞(hPSC)和基因组编辑工具-进行研究,以帮助阐明这些复杂疾病的潜在机制。主要结论:hPSC和先进的基因组编辑工具似乎是及时而有效的组合,可用于探索诸如糖尿病和代谢综合征等疾病的分子机制。从基于hiPSC的疾病建模研究中获得的知识可以通过根据疾病的作用机理指导临床医生针对每种疾病使用的合适药物类型而转化为临床。

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