Frontiers in Pharmacology (Aug 2021)

Salidroside Ameliorated Intermittent Hypoxia-Aggravated Endothelial Barrier Disruption and Atherosclerosis via the cAMP/PKA/RhoA Signaling Pathway

  • Linyi Li,
  • Linyi Li,
  • Linyi Li,
  • Yunyun Yang,
  • Yunyun Yang,
  • Yunyun Yang,
  • Huina Zhang,
  • Huina Zhang,
  • Huina Zhang,
  • Yunhui Du,
  • Yunhui Du,
  • Yunhui Du,
  • Xiaolu Jiao,
  • Xiaolu Jiao,
  • Xiaolu Jiao,
  • Huahui Yu,
  • Huahui Yu,
  • Huahui Yu,
  • Yu Wang,
  • Yu Wang,
  • Yu Wang,
  • Qianwen Lv,
  • Qianwen Lv,
  • Qianwen Lv,
  • Fan Li,
  • Fan Li,
  • Fan Li,
  • Qiuju Sun,
  • Qiuju Sun,
  • Qiuju Sun,
  • Yanwen Qin,
  • Yanwen Qin,
  • Yanwen Qin

DOI
https://doi.org/10.3389/fphar.2021.723922
Journal volume & issue
Vol. 12

Abstract

Read online

Background: Endothelial barrier dysfunction plays a key role in atherosclerosis progression. The primary pathology of obstructive sleep apnea-hypopnea syndrome is chronic intermittent hypoxia (IH), which induces reactive oxygen species (ROS) overproduction, endothelial barrier injury, and atherosclerosis. Salidroside, a typical pharmacological constituent of Rhodiola genus, has documented antioxidative, and cardiovascular protective effects. However, whether salidroside can improve IH-aggravated endothelial barrier dysfunction and atherosclerosis has not been elucidated.Methods and results: In normal chow diet-fed ApoE−/− mice, salidroside (100 mg/kg/d, p. o.) significantly ameliorated the formation of atherosclerotic lesions and barrier injury aggravated by 7-weeks IH (21%–5%–21%, 120 s/cycle). In human umbilical vein endothelial cells (HUVECs), exposure to IH (21%–5%–21%, 40 min/cycle, 72 cycles) decreased transendothelial electrical resistance and protein expression of vascular endothelial cadherin (VE-cadherin) and zonula occludens 1. In addition, IH promoted ROS production and activated ras homolog gene family member A (RhoA)/Rho-associated protein kinase (ROCK) pathway. All of these effects of IH were reversed by salidroside. Similar to salidroside, ROCK-selective inhibitors Y26732, and Fasudil protected HUVECs from IH-induced ROS overproduction and endothelial barrier disruption. Furthermore, salidroside increased intracellular cAMP levels, while the PKA-selective inhibitor H-89 attenuated the effects of salidroside on IH-induced RhoA/ROCK suppression, ROS scavenging, and barrier protection.Conclusion: Our findings demonstrate that salidroside effectively ameliorated IH-aggravated endothelial barrier injury and atherosclerosis, largely through the cAMP/PKA/RhoA signaling pathway.

Keywords