Indoxyl Sulfate Contributes to Adipose Tissue Inflammation through the Activation of NADPH Oxidase.
Shoma TanakaHiroshi WatanabeTakehiro NakanoTadashi ImafukuHiromasa KatoKai TokumaruNanaka ArimuraYuki EnokiHitoshi MaedaMotoko TanakaKazutaka MatsushitaMasafumi FukagawaToru MaruyamaPublished in: Toxins (2020)
Adipose tissue inflammation appears to be a risk factor for the progression of chronic kidney disease (CKD), but the effect of CKD on adipose tissue inflammation is poorly understood. The purpose of this study was to clarify the involvement of uremic toxins (indoxyl sulfate (IS), 3-indoleacetic acid, p-cresyl sulfate and kynurenic acid) on CKD-induced adipose tissue inflammation. IS induces monocyte chemoattractant protein-1 (MCP-1) expression and reactive oxygen species (ROS) production in the differentiated 3T3L-1 adipocyte. An organic anion transporter (OAT) inhibitor, an NADPH oxidase inhibitor or an antioxidant suppresses the IS-induced MCP-1 expression and ROS production, suggesting the OAT/NADPH oxidase/ROS pathway is involved in the action of IS. Co-culturing 3T3L-1 adipocytes and mouse macrophage cells showed incubating adipocytes with IS increased macrophage infiltration. An IS-overload in healthy mice increased IS levels, oxidative stress and MCP-1 expression in epididymal adipose tissue compared to unloaded mice. Using 5/6-nephrectomized mice, the administration of AST-120 suppressed oxidative stress and the expression of MCP-1, F4/80 and TNF-α in epididymal adipose tissue. These collective data suggest IS could be a therapeutic target for the CKD-related inflammatory response in adipose tissue, and that AST-120 could be useful for the treatment of IS-induced adipose tissue inflammation.
Keyphrases
- adipose tissue
- oxidative stress
- diabetic rats
- chronic kidney disease
- insulin resistance
- high fat diet
- dna damage
- poor prognosis
- reactive oxygen species
- induced apoptosis
- high fat diet induced
- end stage renal disease
- inflammatory response
- cell death
- binding protein
- high glucose
- ischemia reperfusion injury
- rheumatoid arthritis
- drug induced
- ionic liquid
- metabolic syndrome
- skeletal muscle
- immune response
- long non coding rna
- fatty acid
- stress induced
- heat stress
- heat shock
- peritoneal dialysis
- peripheral blood