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September 19, 2025ChemMedChem0 citations

Next‐Generation Bcl‐2 Inhibitors: Design and Evaluation of Indolyl‐Triazole Derivatives with Anticancer Potential

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AAAhmed M. AlmehdiSDSamar DamiatiISIhsan A. Shehadi

Key Points

  • Compounds R4, R14, R17, and R23 exhibited potent anticancer activity with IC50 values ranging from 1.46 to 7.67 µM.
  • Binding assays confirm R4, R14, and R23 with IC50 values from 0.25 to 0.63 µM, outperforming gossypol (0.6 µM) and venetoclax (0.038 µM).
  • Molecular dynamics simulations demonstrate strong interactions with Bcl-2, indicated by low root mean square deviations and stable performances.
  • R23 induces significant apoptosis and cell cycle arrest at G1 phase, highlighting its role as a promising therapeutic candidate.

Abstract

The Bcl‐2 protein family plays a critical role in regulating apoptosis, making it a key target for cancer therapy. In this study, a series of novel Bcl‐2 inhibitors have been designed, synthesized, and evaluated. To disrupt the interactions between anti‐apoptotic Bcl‐2 and pro‐apoptotic proteins, compounds were developed based on essential pharmacophoric features. Among the tested compounds, R4 , R14 , R17 , and R23 demonstrated potent anticancer activity with sub‐micromolar IC 50 concentrations across various Bcl‐2 expressing human cancer cell lines (IC 50 ranges: 1.46–7.67 µM for cancer cells). ELISA binding assays further validated the efficacy of R4 , R14 , and R23 , showcasing their potency with IC 50 values ranging from 0.25 to 0.63 µM, compared to gossypol and ABT‐199 (venetoclax), with IC 50 values of 0.6 and 0.038 µM, respectively. Furthermore, the R23 revealed a significant induction of late and early apoptosis and cell cycle arrest at G1 phase. Noteworthy, R23 emerged as a promising candidate with unique computational analysis, showing superior displacement of hydration sites and higher Δ G values in WaterMap studies. Moreover, molecular dynamics simulations reveal low root mean square deviation fluctuations, indicating strong and stable interactions with Bcl‐2. These findings underscore the therapeutic potential of R23 as a Bcl‐2 inhibitor.

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Cite This Study

Almehdi et al. (2025) studied this question.

synapsesocial.com/papers/68d466af31b076d99fa652fdhttps://doi.org/10.1002/cmdc.202500265
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