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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Endocrine Pancreas Development and Dysfunction Through the Lens of Single-Cell RNA-Sequencing
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Endocrine Pancreas Development and Dysfunction Through the Lens of Single-Cell RNA-Sequencing

机译:通过单细胞RNA测序镜片的内分泌胰腺发育和功能障碍

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A chronic inability to maintain blood glucose homeostasis leads to diabetes, which can damage multiple organs. The pancreatic islets regulate blood glucose levels through the coordinated action of islet cell-secreted hormones, with the insulin released by β-cells playing a crucial role in this process. Diabetes is caused by insufficient insulin secretion due to β-cell loss, or a pancreatic dysfunction. The restoration of a functional β-cell mass might, therefore, offer a cure. To this end, major efforts are underway to generate human β-cells de novo, in vitro or in vivo. The efficient generation of functional β-cells requires a comprehensive knowledge of pancreas development, including the mechanisms driving cell fate decisions or endocrine cell maturation. Rapid progress in single-cell RNA sequencing (scRNA-Seq) technologies has brought a new dimension to pancreas development research. These methods can capture the transcriptomes of thousands of individual cells, including rare cell types, subtypes, and transient states. With such massive datasets, it is possible to infer the developmental trajectories of cell transitions and gene regulatory pathways. Here, we summarize recent advances in our understanding of endocrine pancreas development and function from scRNA-Seq studies on developing and adult pancreas and human endocrine differentiation models. We also discuss recent scRNA-Seq findings for the pathological pancreas in diabetes, and their implications for treatment.
机译:保持血糖稳态的慢性无法导致糖尿病,这可能会损害多个器官。胰岛通过胰岛细胞分泌激素的协调作用调节血糖水平,胰岛素在该过程中发挥至关重要的作用。糖尿病是由于β细胞损失引起的胰岛素分泌不足,或胰腺功能障碍引起。因此,恢复功能性β细胞质量可以提供治愈。为此,正在进行重大努力,以产生人类β细胞De Novo,体外或体内。有效的功能β-细胞产生综合了解胰腺发育的知识,包括驱动细胞命运决策或内分泌细胞成熟的机制。单细胞RNA测序(SCRNA-SEQ)技术的快速进展为胰腺开发研究带来了新的维度。这些方法可以捕获成千上万个体细胞的转录组,包括稀有细胞类型,亚型和瞬态状态。通过这种大规模的数据集,可以推断细胞转变和基因调节途径的发育轨迹。在这里,我们概述了我们对患有对开发和成人胰腺和人内分泌分化模型的SCRNA-SEQ研究的内分泌胰腺发育和功能的最新进展。我们还讨论最近糖尿病病理胰腺的SCRNA-SEQ结果,以及它们对治疗的影响。

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