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Salidroside inhibits endothelial-mesenchymal transition by regulating KLF4/eNOS signaling pathway / 中国药理学通报
Chinese Pharmacological Bulletin ; (12): 681-686, 2021.
Article in Chinese | WPRIM | ID: wpr-1014418
ABSTRACT
Aim To investigate the effect and mechanism of salidroside (SAL) on homocysteine (Hcy)-induced endothelial-mesenchymal transition (EndMT) based on the KLF4/eNOS signaling pathway. Methods (1) Salidroside inhibited Hcy-induced EndMT. HUVECs were pretreated with different concentrations of SAL for 2 h, then followed by Hcy (1 mmol · L-l) co-incubation for 48 hours to induce EndMT. The expression levels of VE-cadherin, α-SMA, KLF4 and eNOS were detected by Western blot, scratch repair experiment was used to determin cell migration ability, the level of NO in cells was determined by nitrate reductase method, and the expression and location of KLF4 were observed by immunofluorescence technology. (2) The signal mechanism of SAL inhibiting End-MT through KLF4/eNOS signal was studied. siRNA mediated knockdown of KLF4 in HUVECs, and the protein expression levels of VE-cadherin, α-SMA, KLF4 and eNOS in each group were determined by Western blot. Results Western blotting demonstrated that SAL significantly reversed the Hcy-induced increase in α-SMA and KLF4 expression and decrease in VE-cadherin and eNOS expression. The immunofluorescence analysis suggested that SAL inhibited the translocation of KLF4 from cytoplasm to nucleus. (2) Silencing KLF4 down-regulated the expression of α-SMA and KLF4, and up-regulated the expression of VE-cadherin and eNOS. Compared with the group of SAL + siKLF4, there was no significant difference in the effect of SAL group and siKLF4 group on phenotypic markers. Conclusions Salidroside inhibits EndMT induced by Hcy, which may be related to the regulation of KLF4/eNOS signaling pathway.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Pharmacological Bulletin Year: 2021 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Pharmacological Bulletin Year: 2021 Type: Article