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February 20, 2026Journal of Medicinal Chemistry5 citations

Discovery of Potent HDAC6-Selective Inhibitors Based on Artemisinin: Design, Synthesis, and Antitumor Evaluation

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WLWei LiuZGZhongjie GuoSSShuhan Sun

Key Points

  • This research aims to develop selective HDAC6 inhibitors based on artemisinin, assessing their antitumor effects.
  • Designed and synthesized artemisinin-based histone deacetylase inhibitors
  • Conducted in vitro antiproliferative assays against hematologic malignancies
  • Performed mechanism studies for autophagy and apoptosis
  • Executed in vivo evaluations using a leukemia xenograft model
  • Conducted pharmacokinetic assessments for metabolic properties.
  • Compound G25 demonstrated the highest antiproliferative activity with average IC50 values under 100 nM against leukemia cells
  • G25 induced autophagy and apoptosis in a p53-dependent manner
  • G25 was confirmed as a selective HDAC6 inhibitor with an IC50 of 12 nM
  • In vivo studies displayed antileukemic effects, including suppressed tumor growth and increased survival trends
  • Pharmacokinetic results indicated rapid clearance, necessitating further compound optimization.

Abstract

Beyond their well-established antimalarial effects, artemisinin and its derivatives have demonstrated promising antitumor activity. Herein, a series of novel artemisinin-based histone deacetylase inhibitors were rationally designed and synthesized using a pharmacophore hybridization strategy. Among them, compound G25 exhibited the most potent in vitro antiproliferative activity, particularly against hematologic malignancies, including MV4-11 (IC50 = 28 nM), MOLM-13 (IC50 = 89 nM), and HL60 cells (IC50 = 92 nM). Mechanism studies revealed that G25 induced autophagy and apoptosis in a p53-dependent manner. HDAC isoform profiling demonstrated that G25 was a potent and selective HDAC6 inhibitor (IC50 = 12 nM). Importantly, G25 showed in vivo antileukemic activity in a MOLM-13-Luc acute myeloid leukemia xenograft model, as evidenced by suppressed tumor progression and a trend toward prolonged survival. Pharmacokinetic evaluation indicated rapid metabolic clearance, suggesting the need for further optimization. Collectively, G25 represents a promising lead scaffold for developing artemisinin-derived HDAC6-selective antitumor agents.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6997f9b8ad1d9b11b345259bhttps://doi.org/10.1021/acs.jmedchem.6c00138
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