Department of Bioengineering, University of Colorado Anschutz Medical Campus, Aurora, CO
Barbara Davis Center for Diabetes, University of Colorado Anschutz Medical Campus, Aurora, CO.
Diabetes. 2018 Apr;67(4):537-547. doi: 10.2337/dbi17-0040.
Insulin-secreting β-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 β-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 β-cells dissociated from the islet. β-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 β-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.
胰岛β细胞在激素分泌调控方面存在异质性。虽然这一现象早已为人所知,但最近的技术进步和新的标记物使得鉴定新的亚群成为可能,从而增进了我们对这种异质性分子基础的理解。这包括具有独特功能特征、发育程序、对代谢或发育信号响应增殖能力以及对免疫介导损伤抵抗力的特定亚群。重要的是,这些亚群在疾病或衰老中发生变化,包括在人类疾病中。尽管发现新的β细胞亚群极大地促进了我们对胰岛生物学的理解,但需要注意的是,这些特征通常是在从胰岛分离的单个β细胞中确定的。β细胞通过缝隙连接与其他细胞类型进行广泛的交流。因此,这些不同的亚群如何在原位胰岛功能中发挥作用,包括在可塑性过程中发挥作用,尚不完全清楚。我们将讨论最近的发现,这些发现揭示了完整胰岛中的功能性β细胞亚群、这些鉴定出的亚群的潜在基础,以及这些亚群如何影响原位胰岛功能。此外,我们还将讨论新兴技术的前景,以进一步深入了解亚群在原位胰岛功能中的作用。