AI Article Synopsis

  • Hypoxia and inflammation are key players in the process of revascularization after ischemic events, and sildenafil has been studied for its potential role in enhancing this process.
  • In an experiment with rats, treatment with sildenafil significantly improved vascular density in ischemic limbs compared to control rats, showing almost double the increase in blood flow and arteriolar density at both 7 and 21 days post-ligation.
  • The study indicated that sildenafil promotes tissue blood flow and the growth of new blood vessels through mechanisms independent of VEGF, instead activating pathways involving PI3-kinase, Akt, and eNOS.

Article Abstract

Hypoxia and inflammation play a major role in revascularization following ischemia. Sildenafil inhibits phosphodiesterase-5, increases intracellular cGMP and induces revascularization through a pathway which remains incompletely understood. Thus, we investigated the effect of sildenafil on post-ischemic revascularization. The left femoral artery was ligated in control and sildenafil-treated (25 mg/kg per day) rats. Vascular density was evaluated and expressed as the left/right leg (L/R) ratio. In control rats, L/R ratio was 33 ± 2% and 54 ± 9%, at 7- and 21-days post-ligation, respectively, and was significantly increased in sildenafil-treated rats to 47 ± 4% and 128 ± 11%, respectively. A neutralizing anti-VEGF antibody significantly decreased vascular density (by 0.48-fold) in control without effect in sildenafil-treated animals. Blood flow and arteriolar density followed the same pattern. In the ischemic leg, HIF-1α and VEGF expression levels increased in control, but not in sildenafil-treated rats, suggesting that sildenafil did not induce angiogenesis. PI3-kinase, Akt and eNOS increased after 7 days, with down-regulation after 21 days. Sildenafil induced outward remodeling or arteriogenesis in mesenteric resistance arteries in association with eNOS protein activation. We conclude that sildenafil treatment increased tissue blood flow and arteriogenesis independently of VEGF, but in association with PI3-kinase, Akt and eNOS activation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143320PMC
http://dx.doi.org/10.3390/ijms23105542DOI Listing

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