神经退行性变
糖尿病性视网膜病变
穆勒胶质细胞
视网膜
内分泌学
小胶质细胞
睫状神经营养因子
内科学
生物
视网膜
神经递质
胶质增生
神经炎症
炎症
糖尿病
神经科学
细胞生物学
医学
神经营养因子
中枢神经系统
干细胞
疾病
祖细胞
受体
生物化学
作者
Josy Augustine,Sofia Pavlou,Kevin Harkin,Alan W. Stitt,Heping Xu,Mei Chen
摘要
ABSTRACT Diabetic retinopathy (DR) is characterised by dysfunction of the retinal neurovascular unit, leading to visual impairment and blindness. Müller cells are key components of the retinal neurovascular unit and diabetes has a detrimental impact on these glial cells, triggering progressive neurovascular pathology of DR. Amongst many factors expressed by Müller cells, interleukin-33 (IL-33) has an established immunomodulatory role, and we investigated the role of endogenous IL-33 in DR. The expression of IL-33 in Müller cells increased during diabetes. Wild-type and Il33−/− mice developed equivalent levels of hyperglycaemia and weight loss following streptozotocin-induced diabetes. Electroretinogram a- and b-wave amplitudes, neuroretina thickness, and the numbers of cone photoreceptors and ganglion cells were significantly reduced in Il33−/− diabetic mice compared with those in wild-type counterparts. The Il33−/− diabetic retina also exhibited microglial activation, sustained gliosis, and upregulation of pro-inflammatory cytokines and neurotrophins. Primary Müller cells from Il33−/− mice expressed significantly lower levels of neurotransmitter-related genes (Glul and Slc1a3) and neurotrophin genes (Cntf, Lif, Igf1 and Ngf) under high-glucose conditions. Our results suggest that deletion of IL-33 promotes inflammation and neurodegeneration in DR, and that this cytokine is critical for regulation of glutamate metabolism, neurotransmitter recycling and neurotrophin secretion by Müller cells.
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