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利用人类多能干细胞衍生的胰腺体外模型进行高通量毒性测试和糖尿病药物发现。

Harnessing Human Pluripotent Stem Cell-Derived Pancreatic In Vitro Models for High-Throughput Toxicity Testing and Diabetes Drug Discovery.

机构信息

Stem Cells and Diabetes Laboratory, Institute of Molecular and Cell Biology (IMCB), Agency for Science, Technology and Research (A*STAR), Singapore, Singapore.

Department of Biochemistry, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.

出版信息

Handb Exp Pharmacol. 2023;281:301-332. doi: 10.1007/164_2023_655.

Abstract

The long-standing goals in diabetes research are to improve β-cell survival, functionality and increase β-cell mass. Current strategies to manage diabetes progression are still not ideal for sustained maintenance of normoglycemia, thereby increasing demand for the development of novel drugs. Available pancreatic cell lines, cadaveric islets, and their culture methods and formats, either 2D or 3D, allow for multiple avenues of experimental design to address diverse aims in the research setting. More specifically, these pancreatic cells have been employed in toxicity testing, diabetes drug screens, and with careful curation, can be optimized for use in efficient high-throughput screenings (HTS). This has since spearheaded the understanding of disease progression and related mechanisms, as well as the discovery of potential drug candidates which could be the cornerstone for diabetes treatment. This book chapter will touch on the pros and cons of the most widely used pancreatic cells, including the more recent human pluripotent stem cell-derived pancreatic cells, and HTS strategies (cell models, design, readouts) that can be used for the purpose of toxicity testing and diabetes drug discovery.

摘要

糖尿病研究的长期目标是提高β细胞的存活率、功能并增加β细胞的数量。目前用于管理糖尿病进展的策略并不能理想地维持正常血糖水平,因此需要开发新的药物。现有的胰腺细胞系、尸胰岛及其 2D 或 3D 的培养方法和格式,为在研究环境中解决各种目标提供了多种实验设计途径。更具体地说,这些胰腺细胞已被用于毒性测试、糖尿病药物筛选,并且经过精心管理,可优化用于高效高通量筛选 (HTS)。这推动了对疾病进展和相关机制的理解,以及发现潜在的候选药物,这些药物可能成为糖尿病治疗的基石。本章将讨论最广泛使用的胰腺细胞的优缺点,包括最近的人多能干细胞衍生的胰腺细胞,以及用于毒性测试和糖尿病药物发现的 HTS 策略(细胞模型、设计、读出)。

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