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March 6, 2026ACS Medicinal Chemistry Letters0 citationsOpen Access

Lead Optimization: Synthesis and Biological Evaluation of Griseofulvin Derivatives as Novel SIRT6 Activators

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TZTilen ZorkoJKJan KogovšekLCLuka Ciber

Key Points

  • The research aims to explore griseofulvin derivatives as novel activators of SIRT6, a key regulator of aging.
  • Synthesize and modify griseofulvin to create derivatives
  • Biochemical evaluation of SIRT6 activation potency
  • Focus on oxadiazole moiety for enhanced activity
  • Compare various analogues for efficacy at different concentrations
  • Griseofulvin exhibits up to 10-fold SIRT6 activation at 100 μM
  • The most active derivative achieves 30-fold activation at 100 μM
  • Para-tolyl derivative shows high potency at 10 μM
  • Retention of activity at lower concentrations indicates drug potential

Abstract

SIRT6, a crucial regulator of aging and cellular homeostasis, represents a promising target for small-molecule activation. In this study, we investigate griseofulvin and its derivatives as novel SIRT6 activators, focusing on the recently developed compound forvisirvat, which has progressed to Phase 2 clinical study. Biochemical evaluation revealed that griseofulvin itself possesses strong SIRT6-activating properties, achieving up to 10-fold activity at 100 μM. Modification of the griseofulvin scaffold generally led to reduced activity, prompting a focus on the oxadiazole moiety of forvisirvat. This strategy produced several analogues with higher potency, the most active at 100 μM being para-1,3,4-oxadiazolephenyl analog 21, which achieved 30-fold SIRT6 activation. Compounds bearing para-substituted phenyl rings exhibited excellent retention of activity at lower concentrations, with para-tolyl derivative 24 being the most potent at 10 μM. Retention of activity at pharmacologically relevant concentrations underscores their potential as potent SIRT6 activators and provides a rationale for continued development as drug candidates.

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Cite This Study

Zorko et al. (2026) studied this question.

synapsesocial.com/papers/69aa6eb1531e4c4a9ff58f81https://doi.org/10.1021/acsmedchemlett.5c00690
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