Department of Translational Research and Cellular Therapeutics, Arthur Riggs Diabetes and Metabolism Research Institute, Beckman Research Institute, City of Hope, Duarte, United States.
Department of Biomedical Engineering, College of Engineering, California State University, Long Beach, Long Beach, United States.
Elife. 2023 Aug 23;12:e90006. doi: 10.7554/eLife.90006.
Pancreatic islets are three-dimensional cell aggregates consisting of unique cellular composition, cell-to-cell contacts, and interactions with blood vessels. Cell aggregation is essential for islet endocrine function; however, it remains unclear how developing islets establish aggregation. By combining genetic animal models, imaging tools, and gene expression profiling, we demonstrate that islet aggregation is regulated by extracellular matrix signaling and cell-cell adhesion. Islet endocrine cell-specific inactivation of extracellular matrix receptor integrin β1 disrupted blood vessel interactions but promoted cell-cell adhesion and the formation of larger islets. In contrast, ablation of cell-cell adhesion molecule α-catenin promoted blood vessel interactions yet compromised islet clustering. Simultaneous removal of integrin β1 and α-catenin disrupts islet aggregation and the endocrine cell maturation process, demonstrating that establishment of islet aggregates is essential for functional maturation. Our study provides new insights into understanding the fundamental self-organizing mechanism for islet aggregation, architecture, and functional maturation.
胰岛是由独特的细胞组成、细胞间相互接触和与血管相互作用的三维细胞聚集物。细胞聚集对于胰岛内分泌功能至关重要,但胰岛如何建立聚集仍不清楚。通过结合遗传动物模型、成像工具和基因表达谱分析,我们证明了细胞外基质信号和细胞-细胞黏附调节胰岛的聚集。胰岛内分泌细胞特异性敲除细胞外基质受体整合素β1 破坏了血管相互作用,但促进了细胞-细胞黏附和更大胰岛的形成。相比之下,细胞间黏附分子α-连环蛋白的缺失促进了血管相互作用,但损害了胰岛的聚集。同时去除整合素β1 和α-连环蛋白会破坏胰岛的聚集和内分泌细胞的成熟过程,表明胰岛聚集体的建立对于功能成熟是必不可少的。我们的研究为理解胰岛聚集、结构和功能成熟的基本自组织机制提供了新的见解。