4.2 Article

Human Islets Have Fewer Blood Vessels than Mouse Islets and the Density of Islet Vascular Structures Is Increased in Type 2 Diabetes

期刊

JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY
卷 63, 期 8, 页码 637-645

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1369/0022155415573324

关键词

amyloid; diabetes; islet; pancreas; vasculature

资金

  1. Department of Veterans Affairs
  2. VA Tennessee Valley and Puget Sound Health Care Systems
  3. Department of Veterans Affairs (Merit Review)
  4. NIH [DK69603, DK88082, DK89572, DK89538]
  5. Vanderbilt Diabetes Research and Training Center [DK20593]
  6. University of Washington Diabetes Research Center (Cellular and Molecular Imaging Core) [DK17047]

向作者/读者索取更多资源

Human and rodent islets differ substantially in several features, including architecture, cell composition, gene expression and some aspects of insulin secretion. Mouse pancreatic islets are highly vascularized with interactions between islet endothelial and endocrine cells being important for islet cell differentiation and function. To determine whether human islets have a similar high degree of vascularization and whether this is altered with diabetes, we examined the vascularization of islets from normal human subjects, subjects with type 2 diabetes (T2D), and normal mice. Using an integrated morphometry approach to quantify intra-islet capillary density in human and mouse pancreatic sections, we found that human islets have five-fold fewer vessels per islet area than mouse islets. Islets in pancreatic sections from T2D subjects showed capillary thickening, some capillary fragmentation and had increased vessel density as compared with non-diabetic controls. These changes in islet vasculature in T2D islets appeared to be associated with amyloid deposition, which was noted in islets from 8/9 T2D subjects (and occupied 14% +/- 4% of islet area), especially around the intra-islet capillaries. The physiological implications of the differences in the angioarchitecture of mouse and human islets are not known. Islet vascular changes in T2D may exacerbate cell/islet dysfunction and cell loss.

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