干细胞衍生β细胞与基因组工程的关系。

Q3 Medicine
Review of Diabetic Studies Pub Date : 2017-01-01 Epub Date: 2017-06-12 DOI:10.1900/RDS.2017.14.39
Sara D Sackett, Aida Rodriguez, Jon S Odorico
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引用次数: 8

摘要

糖尿病,1型和2型(T1D和T2D)是一种流行病,它是复杂的,由遗传学、表观遗传学、环境和生活方式选择决定的。目前的治疗方法包括整个胰腺或胰岛移植。然而,这些方法需要终生免疫抑制,并且由于可用供体的缺乏而复杂化。多能干细胞在干细胞生物学、药物开发、疾病建模和再生医学等领域有着先进的研究成果,重要的是,它允许对治疗干预进行讯问。β细胞分化和基因组修饰的最新进展正在推动对β细胞衰竭和自身免疫背后机制的研究,并为降低免疫原性倾向提供新的策略。这篇综述讨论了从人类多能干细胞中衍生出用于治疗糖尿病的内分泌谱系细胞,以及编辑或操纵其基因组如何超越干细胞技术的许多剩余挑战,从而导致优越的移植和糖尿病药物发现平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Nexus of Stem Cell-Derived Beta-Cells and Genome Engineering.

The Nexus of Stem Cell-Derived Beta-Cells and Genome Engineering.

Diabetes, type 1 and type 2 (T1D and T2D), are diseases of epidemic proportions, which are complicated and defined by genetics, epigenetics, environment, and lifestyle choices. Current therapies consist of whole pancreas or islet transplantation. However, these approaches require life-time immunosuppression, and are compounded by the paucity of available donors. Pluripotent stem cells have advanced research in the fields of stem cell biology, drug development, disease modeling, and regenerative medicine, and importantly allows for the interrogation of therapeutic interventions. Recent developments in beta-cell differentiation and genomic modifications are now propelling investigations into the mechanisms behind beta-cell failure and autoimmunity, and offer new strategies for reducing the propensity for immunogenicity. This review discusses the derivation of endocrine lineage cells from human pluripotent stem cells for the treatment of diabetes, and how the editing or manipulation of their genomes can transcend many of the remaining challenges of stem cell technologies, leading to superior transplantation and diabetes drug discovery platforms.

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来源期刊
Review of Diabetic Studies
Review of Diabetic Studies Medicine-Internal Medicine
CiteScore
1.80
自引率
0.00%
发文量
28
期刊介绍: The Review of Diabetic Studies (RDS) is the society"s peer-reviewed journal published quarterly. The purpose of The RDS is to support and encourage research in biomedical diabetes-related science including areas such as endocrinology, immunology, epidemiology, genetics, cell-based research, developmental research, bioengineering and disease management.
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