AI Article Synopsis

  • Resveratrol, a sirtuin 1 (SIRT1) activator, shows potential in preventing vascular oxidative stress linked to endothelial dysfunction, but its clinical utility is hampered by low oral bioavailability.
  • Researchers used a computational method to identify the best resveratrol derivatives from their chemical library, focusing on those with high SIRT1 activation and bioavailability.
  • The most effective derivative was tested in human umbilical vein endothelial cells (HUVECs) damaged by oxidative stress, showing it preserved cell viability and reduced reactive oxygen species, indicating its potential role in activating sirtuins despite being slightly less effective than resveratrol itself.

Article Abstract

The sirtuin 1 (SIRT1) activator resveratrol has emerged as a promising candidate for the prevention of vascular oxidative stress, which is a trigger for endothelial dysfunction. However, its clinical use is limited by low oral bioavailability. In this work, we have applied a previously developed computational protocol to identify the most promising derivatives from our in-house chemical library of resveratrol derivatives. The most promising compounds in terms of SIRT1 activation and oral bioavailability, predicted in silico, were evaluated for their ability to activate the isolated SIRT1 enzyme. Then, we assessed the antioxidant effects of the most effective derivative, compound , in human umbilical vein endothelial cells (HUVECs) injured with HO 100 µM. The SIRT1 activator significantly preserved cell viability and prevented an intracellular reactive oxygen species increase in HUVECs exposed to the oxidative stimulus. Such effects were partially reduced in the presence of a sirtuin inhibitor, sirtinol, confirming the potential role of sirtuins in the activity of resveratrol and its derivatives. Although appeared less effective than resveratrol in activating the isolated enzyme, the effects exhibited by both compounds in HUVECs were almost superimposable, suggesting a higher ability of to cross cell membranes and activate the intracellular target SIRT1.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738298PMC
http://dx.doi.org/10.3390/ijms232315105DOI Listing

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