Expression of Gastrin Family Peptides in Pancreatic Islets and Their Role in β-Cell Function and Survival

胃泌素 胰岛 小岛 内科学 功能(生物学) 内分泌学 生物 细胞生物学 癌症研究 医学 胰岛素 分泌物
作者
Dawood Khan,Srividya Vasu,R. Charlotte Moffett,Nigel Irwin,Peter R. Flatt
出处
期刊:Pancreas [Lippincott Williams & Wilkins]
卷期号:47 (2): 190-199 被引量:21
标识
DOI:10.1097/mpa.0000000000000983
摘要

Objectives Modulation of cholecystokinin (CCK) receptors has been shown to influence pancreatic endocrine function. Methods We assessed the impact of the CCK A and CCK B receptor modulators, (pGlu-Gln)-CCK-8 and gastrin-17, respectively, on β-cell secretory function, proliferation and apoptosis and glucose tolerance, and investigating alterations of CCK and gastrin islet expression in diabetes. Results Initially, the presence of CCK and gastrin, and expression of their receptors were evidenced in β-cell lines and mouse islets. (pGlu-Gln)-CCK-8 and gastrin-17 stimulated insulin secretion from BRIN-BD11 and 1.1B4 β-cells, associated with no effect on membrane potential or [Ca 2+ ] i . Only (pGlu-Gln)-CCK-8 possessed insulin secretory actions in isolated islets. In agreement, (pGlu-Gln)-CCK-8 improved glucose disposal and glucose-induced insulin release in mice. In addition, (pGlu-Gln)-CCK-8 evoked clear satiety effects. Interestingly, islet colocalization of CCK with glucagon was elevated in streptozotocin- and hydrocortisone-induced diabetic mice, whereas gastrin coexpression in α cells was reduced. In contrast, gastrin colocalization within β-cells was higher in diabetic mice, while CCK coexpression with insulin was decreased in insulin-deficient mice. (pGlu-Gln)-CCK-8 and gastrin-17 also augmented human and rodent β-cell proliferation and offered protection against streptozotocin-induced β-cell cytotoxicity. Conclusions We highlight the direct involvement of CCK A and CCK B receptors in pancreatic β-cell function and survival.
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