周细胞
内分泌学
血管生成素受体
内科学
胰岛素受体
血管生成素
生物
血管生成
胰岛素
血管内皮生长因子
内皮干细胞
医学
胰岛素抵抗
生物化学
体外
血管内皮生长因子受体
作者
Nele Warmke,Fiona M. Platt,Alexander Bruns,Claire H Ozber,Natalie Haywood,Yilizila Abudushalamu,Charles I Slater,Victoria Palin,Piruthivi Sukumar,Stephen B. Wheatcroft,Nadira Yuldasheva,Mark T. Kearney,Kathryn J Griffin,Richard M. Cubbon
出处
期刊:Endocrinology
[The Endocrine Society]
日期:2021-08-30
卷期号:162 (11)
被引量:13
标识
DOI:10.1210/endocr/bqab182
摘要
Abstract Pericytes regulate vascular development, stability, and quiescence; their dysfunction contributes to diabetic retinopathy. To explore the role of insulin receptors in pericyte biology, we created pericyte insulin receptor knockout mice (PIRKO) by crossing PDGFRβ-Cre mice with insulin receptor (Insr) floxed mice. Their neonatal retinal vasculature exhibited perivenous hypervascularity with venular dilatation, plus increased angiogenic sprouting in superficial and deep layers. Pericyte coverage of capillaries was unaltered in perivenous and periarterial plexi, and no differences in vascular regression or endothelial proliferation were apparent. Isolated brain pericytes from PIRKO had decreased angiopoietin-1 mRNA, whereas retinal and lung angiopoietin-2 mRNA was increased. Endothelial phospho-Tie2 staining was diminished and FoxO1 was more frequently nuclear localized in the perivenous plexus of PIRKO, in keeping with reduced angiopoietin-Tie2 signaling. Silencing of Insr in human brain pericytes led to reduced insulin-stimulated angiopoietin-1 secretion, and conditioned media from these cells was less able to induce Tie2 phosphorylation in human endothelial cells. Hence, insulin signaling in pericytes promotes angiopoietin-1 secretion and endothelial Tie2 signaling and perturbation of this leads to excessive vascular sprouting and venous plexus abnormalities. This phenotype mimics elements of diabetic retinopathy, and future work should evaluate pericyte insulin signaling in this disease.
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