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胰岛素分泌失调与部分内皮型一氧化氮合酶缺陷型小鼠的胰腺β细胞增生和直接腺泡-β细胞转分化有关。

Dysregulated insulin secretion is associated with pancreatic β-cell hyperplasia and direct acinar-β-cell trans-differentiation in partially eNOS-deficient mice.

机构信息

Department of Translational Research and New Technologies in Medicine and Surgery, University of Pisa, Pisa, Italy.

Institute of Clinical Physiology, National Research Council (CNR), Pisa, Italy.

出版信息

Physiol Rep. 2022 Aug;10(16):e15425. doi: 10.14814/phy2.15425.

Abstract

eNOS-deficient mice were previously shown to develop hypertension and metabolic alterations associated with insulin resistance either in standard dietary conditions (eNOS-/- homozygotes) or upon high-fat diet (HFD) (eNOS+/- heterozygotes). In the latter heterozygote model, the present study investigated the pancreatic morphological changes underlying the abnormal glycometabolic phenotype. C57BL6 wild type (WT) and eNOS+/- mice were fed with either chow or HFD for 16 weeks. After being longitudinally monitored for their metabolic state after 8 and 16 weeks of diet, mice were euthanized and fragments of pancreas were processed for histological, immuno-histochemical and ultrastructural analyses. HFD-fed WT and eNOS+/- mice developed progressive glucose intolerance and insulin resistance. Differently from WT animals, eNOS+/- mice showed a blunted insulin response to a glucose load, regardless of the diet regimen. Such dysregulation of insulin secretion was associated with pancreatic β-cell hyperplasia, as shown by larger islet fractional area and β-cell mass, and higher number of extra-islet β-cell clusters than in chow-fed WT animals. In addition, only in the pancreas of HFD-fed eNOS+/- mice, there was ultrastructural evidence of a number of hybrid acinar-β-cells, simultaneously containing zymogen and insulin granules, suggesting the occurrence of a direct exocrine-endocrine transdifferentiation process, plausibly triggered by metabolic stress associated to deficient endothelial NO production. As suggested by confocal immunofluorescence analysis of pancreatic histological sections, inhibition of Notch-1 signaling, likely due to a reduced NO availability, is proposed as a novel mechanism that could favor both β-cell hyperplasia and acinar-β-cell transdifferentiation in eNOS-deficient mice with impaired insulin response to a glucose load.

摘要

eNOS 缺陷型小鼠在标准饮食条件下(eNOS-/-纯合子)或高脂肪饮食(HFD)条件下(eNOS+/-杂合子)均会出现高血压和与胰岛素抵抗相关的代谢改变。在后者的杂合子模型中,本研究调查了异常糖代谢表型背后的胰腺形态变化。C57BL6 野生型(WT)和 eNOS+/- 小鼠分别用标准饮食或 HFD 喂养 16 周。在喂养 8 周和 16 周后,对其代谢状态进行纵向监测,然后处死小鼠,取胰腺组织片段进行组织学、免疫组织化学和超微结构分析。HFD 喂养的 WT 和 eNOS+/- 小鼠逐渐出现葡萄糖不耐受和胰岛素抵抗。与 WT 动物不同,eNOS+/- 小鼠在无论何种饮食条件下,对葡萄糖负荷的胰岛素反应均减弱。这种胰岛素分泌失调与胰腺β细胞增生有关,表现为胰岛分数面积和β细胞质量增大,胰岛外β细胞簇数量也多于标准饮食喂养的 WT 动物。此外,只有在 HFD 喂养的 eNOS+/- 小鼠的胰腺中,才存在同时含有酶原和胰岛素颗粒的混合腺泡-β细胞的超微结构证据,提示发生了直接的外分泌-内分泌转分化过程,这可能是由于内皮型一氧化氮合酶产生不足导致代谢应激引起的。如胰腺组织学切片的共聚焦免疫荧光分析所示,Notch-1 信号通路的抑制,可能是由于 NO 供应减少,被提出作为一种新的机制,可能有利于 eNOS 缺陷型小鼠在葡萄糖负荷时胰岛素反应受损的情况下β细胞增生和腺泡-β 细胞转分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff45/9391603/348ddc7185d5/PHY2-10-e15425-g006.jpg

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