4.7 Article

The Sodium-Glucose Cotransporter-2 Inhibitor Canagliflozin Alleviates Endothelial Dysfunction Following In Vitro Vascular Ischemia/Reperfusion Injury in Rats

期刊

出版社

MDPI
DOI: 10.3390/ijms22157774

关键词

ischemia; reperfusion; endothelial function; canagliflozin; sodium-glucose cotransporter-2; diabetes mellitus

资金

  1. Land Baden-Wurttemberg, Germany
  2. Medical Faculty of the University of Heidelberg, Germany [NVKP_16-1-20160017]
  3. National Research, Development and Innovation Fund of Hungary
  4. Thematic Excellence Program of the Ministry for Innovation and Technology in Hungary, within Therapeutic Development and Bioimaging thematic programs of the Semmelweis University [2020-4.1.1.-TKP2020]
  5. National Research, Development and Innovation Office (NKFIH) of Hungary [K134939]

向作者/读者索取更多资源

This study showed that adding the SGLT-2 inhibitor canagliflozin to saline can protect vascular grafts from ischemia/reperfusion injury, and significantly improve endothelial dysfunction.
Vascular ischemia/reperfusion injury (IRI) contributes to graft failure and adverse clinical outcomes following coronary artery bypass grafting. Sodium-glucose-cotransporter (SGLT)-2-inhibitors have been shown to protect against myocardial IRI, irrespective of diabetes. We hypothesized that adding canagliflozin (CANA) (an SGLT-2-inhibitor) to saline protects vascular grafts from IRI. Aortic rings from non-diabetic rats were isolated and immediately mounted in organ bath chambers (control, n = 9-10 rats) or underwent cold ischemic preservation in saline, supplemented either with a DMSO vehicle (IR, n = 8-10 rats) or 50 mu M CANA (IR + CANA, n = 9-11 rats). Vascular function was measured, the expression of 88 genes using PCR-array was analyzed, and feature selection using machine learning was applied. Impaired maximal vasorelaxation to acetylcholine in the IR-group compared to controls was significantly ameliorated by CANA (IR 31.7 +/- 3.2% vs. IR + CANA 51.9 +/- 2.5%, p < 0.05). IR altered the expression of 17 genes. Ccl2, Ccl3, Ccl4, CxCr4, Fos, Icam1, Il10, Il1a and Il1b have been found to have the highest interaction. Compared to controls, IR significantly upregulated the mRNA expressions of Il1a and Il6, which were reduced by 1.5- and 1.75-fold with CANA, respectively. CANA significantly prevented the upregulation of Cd40, downregulated NoxO1 gene expression, decreased ICAM-1 and nitrotyrosine, and increased PECAM-1 immunoreactivity. CANA alleviates endothelial dysfunction following IRI.

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