Paeoniflorin Suppressed High Glucose-Induced Retinal Microglia MMP-9 Expression and Inflammatory Response via Inhibition of TLR4/NF-κB Pathway Through Upregulation of SOCS3 in Diabetic Retinopathy

被引:0
作者
Su-Hua Zhu
Bing-Qian Liu
Mao-Juan Hao
Yi-Xin Fan
Cheng Qian
Peng Teng
Xiao-Wei Zhou
Liang Hu
Wen-Tao Liu
Zhi-Lan Yuan
Qing-Ping Li
机构
[1] Nanjing Medical University,Jiangsu Provincial Key Lab of Cardiovascular Diseases and Molecular Intervention, Department of Pharmacology
[2] The First Affiliated Hospital of Nanjing Medical University,Department of Ophthalmology
[3] China Pharmaceutical University,Department of Pharmacology
来源
Inflammation | 2017年 / 40卷
关键词
diabetic retinopathy; MMP-9; inflammation; microglia; HMGB1; paeoniflorin; SOCS3;
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摘要
Diabetic retinopathy (DR) is a serious-threatening complication of diabetes and urgently needed to be treated. Evidence has accumulated indicating that microglia inflammation within the retina plays a critical role in DR. Microglial matrix metalloproteinase 9 (MMP-9) has an important role in the destruction of the integrity of the blood-retinal barrier (BRB) associated with the development of DR. MMP-9 was also considered important for regulating inflammatory responses. Paeoniflorin, a monoterpene glucoside, has a potent immunomodulatory effect on microglia. We hypothesized that paeoniflorin could significantly suppress microglial MMP-9 activation induced by high glucose and further relieve DR. BV2 cells were used to investigate the effects and mechanism of paeoniflorin. The activation of MMP-9 was measured by gelatin zymography. Cell signaling was measured by western blot assay and immunofluorescence assay. High glucose increased the activation of MMP-9 in BV2 cells, which was abolished by HMGB1, TLR4, p38 MAPK, and NF-κB inhibition. Phosphorylation of p38 MAPK induced by high glucose was decreased by TLR4 inhibition in BV2 cells. Paeoniflorin induced suppressor of cytokine signaling 3 (SOCS3) expression and reduced MMP-9 activation in BV2 cells. The effect of paeoniflorin on SOCS3 was abolished by the TLR4 inhibitor. In streptozotocin (STZ)-induced diabetes mice, paeoniflorin induced SOCS3 expression and reduced MMP-9 activation. Paeoniflorin suppressed STZ-induced IBA-1 and IL-1β expression and decreased STZ-induced high blood glucose level. In conclusion, paeoniflorin suppressed high glucose-induced retinal microglia MMP-9 expression and inflammatory response via inhibition of the TLR4/NF-κB pathway through upregulation of SOCS3 in diabetic retinopathy.
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页码:1475 / 1486
页数:11
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共 194 条
  • [1] Thomas RL(2012)Incidence of diabetic retinopathy in people with type 2 diabetes mellitus attending the Diabetic Retinopathy Screening Service for Wales: Retrospective analysis BMJ 344 e874-1133
  • [2] Dunstan F(2016)New diagnostic and therapeutic approaches for preventing the progression of diabetic retinopathy J Diabetes Res. 2016 1753584-493
  • [3] Luzio SD(2015)Disruption of fractalkine signaling leads to microglial activation and neuronal damage in the diabetic retina ASN Neuro 7 1759091415608204-33
  • [4] Roy Chowdury S(2011)Retinal microglial activation and inflammation induced by amadori-glycated albumin in a rat model of diabetes Diabetes 60 1122-2580
  • [5] Hale SL(2013)Correction: The importance of microglia in the development of the vasculature in the central nervous system Vascular cell. 5 12-867
  • [6] North RV(2016)Cd40 in retinal Muller cells induces P2X7-dependent cytokine expression in macrophages/microglia in diabetic mice and development of early experimental diabetic retinopathy Diabetes 66 483-805
  • [7] Park YG(2011)Neural inflammation and the microglial response in diabetic retinopathy Journal of ocular biology, diseases, and informatics. 4 25-3873
  • [8] Roh YJ(1840)Matrix metalloproteinases in inflammation Biochimica et Biophysica Acta 2014 2571-5009
  • [9] Cardona SM(2002)Inflammation and cancer Nature 420 860-2976
  • [10] Mendiola AS(2014)Chemokine mediated monocyte trafficking into the retina: Role of inflammation in alteration of the blood-retinal barrier in diabetic retinopathy PloS One 9 e108508-31