Scientific Reports (Oct 2023)

Polydatin improves vascular endothelial function by maintaining mitochondrial homeostasis under high glucose conditions

  • Wahid Shah,
  • Qiyue Zhao,
  • Sen Wang,
  • Miaomiao Zhang,
  • Hongyu Ma,
  • Yue Guan,
  • Yi Zhang,
  • Yan Liu,
  • Chunhua Zhu,
  • Sheng Wang,
  • Xiangjian Zhang,
  • Jinghui Dong,
  • Huijie Ma

DOI
https://doi.org/10.1038/s41598-023-43786-4
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 13

Abstract

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Abstract Previous studies have shown that polydatin (Poly) confer cardioprotective effects. However, its underlying mechanisms remain elusive. This study showed that Poly (10 µM) treatment reversed the high glucose (HG)-induced decrease in acetylcholine-elicited vasodilation in aortas. Poly also improved the acetylcholine-induced vasodilation of aortic vessels isolated from diabetic rats. Meanwhile, Poly ameliorated the morphological damage of the thoracic aorta and improved the viability of HUVECs under HG conditions. Furthermore, analysis of the vasoprotective effect of Poly under HG conditions by transmission electron microscopy, Western blotting, and qPCR revealed that Poly improved endothelial pyroptosis through the NLRP3/Caspase/1-IL-1β pathway, enhanced dynamin-related protein 1-mediated mitochondrial fission, and increased the mitochondrial membrane potential under HG conditions. In conclusion, Poly restored acetylcholine-induced vasodilation impaired by HG incubation, which was associated with reduced oxidation, inflammation, and pyroptosis, the recovery of the mitochondrial membrane potential and maintenance of mitochondrial dynamic homeostasis of endothelial cells in the aortas.