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- Expansion of Islet-Resident Macrophages Leads to Inflammation Affecting β Cell Proliferation and Function in Obesity.
Expansion of Islet-Resident Macrophages Leads to Inflammation Affecting β Cell Proliferation and Function in Obesity.
Citation | “Expansion Of Islet-Resident Macrophages Leads To Inflammation Affecting Β Cell Proliferation And Function In Obesity.”. Cell Metabolism, pp. 457-474.e5. . |
Center | UCSD-UCLA |
Author | Wei Ying, Yun Sok Lee, Yi Dong, Jason S Seidman, Meixiang Yang, Roi Isaac, Jong Bae Seo, Bi-Huei Yang, Joshua Wollam, Matthew Riopel, Joanne McNelis, Christopher K Glass, Jerrold M Olefsky, Wenxian Fu |
Keywords | islet inflammation, local macrophages proliferation, macrophages, obesity, β cell function, β cell proliferation |
Abstract |
The nature of obesity-associated islet inflammation and its impact on β cell abnormalities remains poorly defined. Here, we explore immune cell components of islet inflammation and define their roles in regulating β cell function and proliferation. Islet inflammation in obese mice is dominated by macrophages. We identify two islet-resident macrophage populations, characterized by their anatomical distributions, distinct phenotypes, and functional properties. Obesity induces the local expansion of resident intra-islet macrophages, independent of recruitment from circulating monocytes. Functionally, intra-islet macrophages impair β cell function in a cell-cell contact-dependent manner. Increased engulfment of β cell insulin secretory granules by intra-islet macrophages in obese mice may contribute to restricting insulin secretion. In contrast, both intra- and peri-islet macrophage populations from obese mice promote β cell proliferation in a PDGFR signaling-dependent manner. Together, these data define distinct roles and mechanisms for islet macrophages in the regulation of islet β cells. |
Year of Publication |
2019
|
Journal |
Cell metabolism
|
Volume |
29
|
Issue |
2
|
Number of Pages |
457-474.e5
|
Date Published |
12/2019
|
ISSN Number |
1932-7420
|
DOI |
10.1016/j.cmet.2018.12.003
|
Alternate Journal |
Cell Metab.
|
PMID |
30595478
|
PMCID |
PMC6701710
|
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