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Cardiac fibroblast activation and hyaluronan synthesis in response to hyperglycemia and diet-induced insulin resistance.
Gorski, Daniel J; Petz, Anne; Reichert, Christina; Twarock, Sören; Grandoch, Maria; Fischer, Jens W.
Affiliation
  • Gorski DJ; Institut für Pharmakologie und Klinische Pharmakologie, University Hospital, Heinrich-Heine-University, Düsseldorf, Germany.
  • Petz A; Institut für Pharmakologie und Klinische Pharmakologie, University Hospital, Heinrich-Heine-University, Düsseldorf, Germany.
  • Reichert C; Institut für Pharmakologie und Klinische Pharmakologie, University Hospital, Heinrich-Heine-University, Düsseldorf, Germany.
  • Twarock S; Institut für Pharmakologie und Klinische Pharmakologie, University Hospital, Heinrich-Heine-University, Düsseldorf, Germany.
  • Grandoch M; Institut für Pharmakologie und Klinische Pharmakologie, University Hospital, Heinrich-Heine-University, Düsseldorf, Germany.
  • Fischer JW; Institut für Pharmakologie und Klinische Pharmakologie, University Hospital, Heinrich-Heine-University, Düsseldorf, Germany. jens.fischer@uni-duesseldorf.de.
Sci Rep ; 9(1): 1827, 2019 02 12.
Article in En | MEDLINE | ID: mdl-30755628
ABSTRACT
Diabetic patients are at a greater risk of heart failure due to diabetic cardiomyopathy and worsened outcome post-myocardial infarction. While the molecular mechanisms remain unclear, fibrosis and chronic inflammation are common characteristics of both conditions. Diabetes mellitus (types I and II) results in excessive hyaluronan (HA) deposition in vivo, and hyperglycemia stimulates HA synthesis for several cell types in vitro. HA-rich extracellular matrix contributes to fibrotic, hyperplastic and inflammatory disease progression. We hypothesized that excessive hyperglycemia-driven HA accumulation may contribute to pathological fibroblast activation and fibrotic remodelling in diabetic patients. Therefore, we analysed the impact of both hyperglycemia and diet-induced obesity and insulin resistance on HA matrix formation and cardiac fibroblast activation. Here we report that cardiac fibroblasts isolated from mice on a diabetogenic diet acquire pro-fibrotic gene expression without a concomitant increase in HA matrix deposition. Additionally, hyperglycemia alone does not stimulate HA synthesis or cardiac fibroblast activation in vitro, suggesting that the direct effect of hyperglycemia on fibroblasts is not the primary driver of fibrotic remodelling in cardiac diabetic maladaptation.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Insulin Resistance / Fibroblasts / Hyaluronic Acid / Hyperglycemia / Animal Feed / Myocardium Type of study: Prognostic_studies Limits: Animals Language: En Journal: Sci Rep Year: 2019 Document type: Article Affiliation country: Alemania

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Insulin Resistance / Fibroblasts / Hyaluronic Acid / Hyperglycemia / Animal Feed / Myocardium Type of study: Prognostic_studies Limits: Animals Language: En Journal: Sci Rep Year: 2019 Document type: Article Affiliation country: Alemania