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Published on: September 15, 2017
RAGE silencing deters CML-AGE induced inflammation and TLR4 expression in endothelial cells
Ravi Ramya1, Karunakaran Coral2, Subramaniam Rajesh Bharathidevi2
1R.S. Mehta Jain Department of Biochemistry and Cell Biology, KBIRVO, Vision Research Foundation, Sankara Nethralaya, Chennai, 600006, India; School of Chemical and Biotechnology, SASTRA Deemed to be University, Thanjavur, India.
Abstract:
The Nε-(carboxymethyl)lysine (CML), the predominant advanced glycation end products (AGEs) in diabetes and its RAGE induced cytokine release has been well explored. But the CML mediated multiple AGEs receptor expression is still not understood and the role played by RAGE silencing in modulating CML generated pro-inflammatory cytokines in micro and macrovascular endothelial cells is yet to be studied. HUVEC and HREC cells were exposed with CML for 24 h. RAGE, AGER1, AGER2, Gal-3, TLR4, TLR2, CD36, FEEL-1, FEEL-2, and chemokine HMGB1 were quantified by either qPCR/western blotting. The receptor's expression was also determined in control vs diabetic retina. Expression of pro-inflammatory genes, ROS, and mitochondrial membrane potential change were assessed using ELISA, DCFDA, and JC-1 method respectively. RAGE expression was silenced either by Si-RAGE or neutralising antibody with anti-RAGE and expression of other AGE receptors, adaptors, and signalling pathway were studied compared with Si-Control. CML activated RAGE, TLR4, HMGB1(p < 0.001) and Gal-3 (p < 0.05) expression in both micro and macro vascular cells. Cadaveric diabetic retinal tissues also showed increased expression of RAGE, TLR4 and HMGB1 (p < 0.05). RAGE silencing significantly reduced TLR4, HMGB1 (p < 0.05) expression and inhibited the phosphorylation of NFκB and ERK1/2 in both these cells. The TLR4 adaptors MyD88 and TIRAP (p < 0.05) showed down regulation on RAGE silencing. This study shows CML induces AGE receptors expression as observed in diabetic retina and RAGE silencing down regulated TLR4 signalling and cytokine release by partly modulating TLR4 adaptors which needs further validation. From this study we speculate targeting the TLR4 adaptors like MyD88 and TIRAP can be a potential therapeutic target for reducing diabetic induced vascular complications.
Insights
Advanced glycation end products (AGEs) like Nε-(carboxymethyl)lysine (CML) increase receptor expression in diabetes. Silencing the Receptor for AGEs (RAGE) reduces inflammatory signaling, suggesting RAGE and TLR4 adaptors as therapeutic targets for vascular complications.
Area of Science:
- Endocrinology and Metabolism
- Cell Biology
- Vascular Biology
Background:
- Nε-(carboxymethyl)lysine (CML) is a major advanced glycation end product (AGE) implicated in diabetic complications.
- While CML-induced Receptor for AGEs (RAGE) signaling is known, CML's effect on multiple AGEs receptor expression and RAGE's role in modulating these pathways remain unclear.
Purpose of the Study:
- To investigate CML-mediated expression of various AGEs receptors and signaling molecules in microvascular and macrovascular endothelial cells.
- To determine the role of RAGE silencing in modulating CML-induced pro-inflammatory cytokine release and associated signaling pathways.
Main Methods:
- Human umbilical vein endothelial cells (HUVEC) and human retinal endothelial cells (HREC) were treated with CML.
- Expression of RAGE, AGER1, AGER2, Gal-3, TLR4, TLR2, CD36, FEEL-1, FEEL-2, and HMGB1 was quantified using qPCR and western blotting.
- RAGE was silenced using siRNA (Si-RAGE) or neutralizing antibody, and downstream effects on inflammatory markers, ROS, and mitochondrial potential were assessed.
Main Results:
- CML significantly upregulated RAGE, TLR4, HMGB1, and Gal-3 expression in endothelial cells and in diabetic retinal tissues.
- RAGE silencing markedly reduced TLR4 and HMGB1 expression, inhibited NFκB and ERK1/2 phosphorylation, and downregulated TLR4 adaptors MyD88 and TIRAP.
- CML exposure led to increased pro-inflammatory gene expression, ROS production, and altered mitochondrial membrane potential.
Conclusions:
- CML induces the expression of AGEs receptors, mirroring changes seen in diabetic retinas.
- RAGE silencing mitigates CML-induced inflammation by modulating TLR4 signaling pathways, particularly through its adaptors MyD88 and TIRAP.
- Targeting TLR4 adaptors like MyD88 and TIRAP presents a potential therapeutic strategy for diabetic vascular complications.
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