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New Understanding of beta-Cell Heterogeneity and In Situ Islet Function

机译:对β细胞异质性和原位胰岛功能的新了解

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摘要

Insulin-secreting beta-cells are heterogeneous in their regulation of hormone release. While long known, recent technological advances and new markers have allowed the identification of novel subpopulations, improving our understanding of the molecular basis for heterogeneity. This includes specific subpopulations with distinct functional characteristics, developmental programs, abilities to proliferate in response to metabolic or developmental cues, and resistance to immune-mediated damage. Importantly, these subpopulations change in disease or aging, including in human disease. Although discovering new beta-cell subpopulations has substantially advanced our understanding of islet biology, a point of caution is that these characteristics have often necessarily been identified in single beta-cells dissociated from the islet. beta-Cells in the islet show extensive communication with each other via gap junctions and with other cell types via diffusible chemical messengers. As such, how these different subpopulations contribute to in situ islet function, including during plasticity, is not well understood. We will discuss recent findings revealing functional beta-cell subpopulations in the intact islet, the underlying basis for these identified subpopulations, and how these subpopulations may influence in situ islet function. Furthermore, we will discuss the outlook for emerging technologies to gain further insight into the role of subpopulations in in situ islet function.
机译:胰岛素分泌β-细胞在其对激素释放的调节中是非均相的。虽然长期以来,但最近的技术进步和新标志物允许鉴定新的群体,从而提高我们对异质性的分子基础的理解。这包括具有不同功能特征,发育方案的特异性亚步骤,响应于代谢或发育性提示,以及对免疫介导的损伤的抵抗力。重要的是,这些群体在疾病或衰老中变化,包括人类疾病。虽然发现新的β-细胞亚步骤基本上推进了我们对胰岛生物学的理解,但是谨慎的是,这些特性通常必须在从胰岛中解离的单一β细胞中鉴定。胰岛中的β-细胞通过间隙结和通过扩散的化学信使通过间隙结和其他细胞类型彼此广泛地通信。因此,这些不同的亚步骤如何在塑性期间包括在原位胰岛功能中,并不是很好地理解。我们将讨论最近在完整的胰岛素中揭示功能性β细胞群的最近发现,这些鉴定的亚群的潜在依据,以及这些亚群的潜在基础可能影响原位胰岛功能。此外,我们将讨论新兴技术的前景,以进一步了解群体在原位胰岛功能中的作用。

著录项

  • 来源
    《Fortschritte der Physik》 |2018年第4期|共11页
  • 作者单位

    Univ Colorado Dept Bioengn Anschutz Med Campus Aurora CO 80045 USA;

    Univ Birmingham Inst Metab &

    Syst Res Birmingham W Midlands England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

  • 入库时间 2022-08-20 03:49:49

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