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系统的单细胞分析为胰腺的异质性和可塑性提供了新的见解。

Systematic single-cell analysis provides new insights into heterogeneity and plasticity of the pancreas.

机构信息

Institute of Diabetes and Regeneration Research, Helmholtz Zentrum München, Am Parkring 11, 85748 Garching-Hochbrück, Germany.

German Center for Diabetes Research, 85764 Neuherberg, Germany.

出版信息

Mol Metab. 2017 Jul 20;6(9):974-990. doi: 10.1016/j.molmet.2017.06.021. eCollection 2017 Sep.

Abstract

BACKGROUND

Diabetes mellitus is characterized by loss or dysfunction of insulin-producing β-cells in the pancreas, resulting in failure of blood glucose regulation and devastating secondary complications. Thus, β-cells are currently the prime target for cell-replacement and regenerative therapy. Triggering endogenous repair is a promising strategy to restore β-cell mass and normoglycemia in diabetic patients. Potential strategies include targeting specific β-cell subpopulations to increase proliferation or maturation. Alternatively, transdifferentiation of pancreatic islet cells (e.g. α- or δ-cells), extra-islet cells (acinar and ductal cells), hepatocytes, or intestinal cells into insulin-producing cells might improve glycemic control. To this end, it is crucial to systematically characterize and unravel the transcriptional program of all pancreatic cell types at the molecular level in homeostasis and disease. Furthermore, it is necessary to better determine the underlying mechanisms of β-cell maturation, maintenance, and dysfunction in diabetes, to identify and molecularly profile endocrine subpopulations with regenerative potential, and to translate the findings from mice to man. Recent approaches in single-cell biology started to illuminate heterogeneity and plasticity in the pancreas that might be targeted for β-cell regeneration in diabetic patients.

SCOPE OF REVIEW

This review discusses recent literature on single-cell analysis including single-cell RNA sequencing, single-cell mass cytometry, and flow cytometry of pancreatic cell types in the context of mechanisms of endogenous β-cell regeneration. We discuss new findings on the regulation of postnatal β-cell proliferation and maturation. We highlight how single-cell analysis recapitulates described principles of functional β-cell heterogeneity in animal models and adds new knowledge on the extent of β-cell heterogeneity in humans as well as its role in homeostasis and disease. Furthermore, we summarize the findings on cell subpopulations with regenerative potential that might enable the formation of new β-cells in diseased state. Finally, we review new data on the transcriptional program and function of rare pancreatic cell types and their implication in diabetes.

MAJOR CONCLUSION

Novel, single-cell technologies offer high molecular resolution of cellular heterogeneity within the pancreas and provide information on processes and factors that govern β-cell homeostasis, proliferation, and maturation. Eventually, these technologies might lead to the characterization of cells with regenerative potential and unravel disease-associated changes in gene expression to identify cellular and molecular targets for therapy.

摘要

背景

糖尿病的特征是胰腺中产生胰岛素的β细胞丧失或功能障碍,导致血糖调节失败和毁灭性的继发并发症。因此,β细胞是目前细胞替代和再生治疗的主要靶标。触发内源性修复是恢复糖尿病患者β细胞数量和正常血糖的一种很有前途的策略。潜在的策略包括针对特定的β细胞亚群以增加增殖或成熟。或者,胰岛细胞(如α或δ细胞)、胰岛外细胞(腺泡和导管细胞)、肝细胞或肠细胞向产生胰岛素的细胞的转分化可能改善血糖控制。为此,至关重要的是在稳态和疾病中系统地描述和揭示所有胰腺细胞类型在分子水平上的特征和转录程序。此外,有必要更好地确定β细胞成熟、维持和在糖尿病中功能障碍的潜在机制,识别和分子鉴定具有再生潜力的内分泌亚群,并将从老鼠到人类的研究结果转化。单细胞生物学的最新方法开始阐明胰腺中的异质性和可塑性,这可能是针对糖尿病患者β细胞再生的靶点。

综述范围

本文讨论了关于单细胞分析的最新文献,包括单细胞 RNA 测序、单细胞质谱流式细胞术和胰腺细胞类型的流式细胞术,这些分析方法涉及内源性β细胞再生的机制。我们讨论了关于出生后β细胞增殖和成熟调控的新发现。我们强调了单细胞分析如何重现动物模型中描述的功能性β细胞异质性的原理,并增加了人类β细胞异质性的新知识及其在稳态和疾病中的作用。此外,我们总结了具有再生潜力的细胞亚群的发现,这些细胞亚群可能使新的β细胞在疾病状态下形成。最后,我们回顾了关于稀有胰腺细胞类型的转录程序和功能的新数据及其在糖尿病中的意义。

主要结论

新型单细胞技术提供了胰腺内细胞异质性的高分子分辨率,并提供了关于调控β细胞稳态、增殖和成熟的过程和因素的信息。最终,这些技术可能导致对具有再生潜力的细胞的特征描述,并揭示与疾病相关的基因表达变化,以确定治疗的细胞和分子靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eaa/5605721/fb61fa94cbc9/gr1.jpg

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