Peroxisome Proliferator–Activated Receptor α Protects Capillary Pericytes in the Retina

Pericyte degeneration is an early event in diabetic retinopathy and plays an important role in progression of diabetic retinopathy. Clinical studies have shown that fenofibrate, a peroxisome proliferator–activated receptor α (PPARα) agonist, has robust therapeutic effects on diabetic retinopathy in...

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Veröffentlicht in:The American journal of pathology 2014-10, Vol.184 (10), p.2709-2720
Hauptverfasser: Ding, Lexi, Cheng, Rui, Hu, Yang, Takahashi, Yusuke, Jenkins, Alicia J, Keech, Anthony C, Humphries, Kenneth M, Gu, Xiaowu, Elliott, Michael H, Xia, Xiaobo, Ma, Jian-xing
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Sprache:eng
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Zusammenfassung:Pericyte degeneration is an early event in diabetic retinopathy and plays an important role in progression of diabetic retinopathy. Clinical studies have shown that fenofibrate, a peroxisome proliferator–activated receptor α (PPARα) agonist, has robust therapeutic effects on diabetic retinopathy in type 2 diabetic patients. We evaluated the protective effect of PPARα against pericyte loss in diabetic retinopathy. In streptozotocin-induced diabetic mice, fenofibrate treatment significantly ameliorated retinal acellular capillary formation and pericyte loss. In contrast, PPARα −/− mice with diabetes developed more severe retinal acellular capillary formation and pericyte dropout, compared with diabetic wild-type mice. Furthermore, PPARα knockout abolished the protective effect of fenofibrate against diabetes-induced retinal pericyte loss. In cultured primary human retinal capillary pericytes, activation and expression of PPARα both significantly reduced oxidative stress–induced apoptosis, decreased reactive oxygen species production, and down-regulated NAD(P)H oxidase 4 expression through blockade of NF-κB activation. Furthermore, activation and expression of PPARα both attenuated the oxidant-induced suppression of mitochondrial O2 consumption in human retinal capillary pericytes. Primary retinal pericytes from PPARα −/− mice displayed more apoptosis, compared with those from wild-type mice under the same oxidative stress. These findings identified a protective effect of PPARα on retinal pericytes, a novel function of endogenous PPARα in the retina.
ISSN:0002-9440
1525-2191
DOI:10.1016/j.ajpath.2014.06.021