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May 30, 2026Journal of Medicinal Chemistry0 citations

Design, Synthesis, and Antitumor Evaluation of Novel Shikonin Derivatives: Discovery of 3k as a Dual Activator of the Integrated Stress Response and ROS in Gastric Cancer

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BZBei ZhangJinan UniversityZXZhipeng XuQingdao UniversityDTDanmei TianJinan University

Key Points

  • This research aims to enhance the anticancer properties of shikonin by designing and evaluating novel derivatives.
  • Synthesized 31 shikonin derivatives using medicinal chemistry strategies.
  • Conducted structure–activity relationship analysis to identify effective compounds.
  • Validated anticancer activity of the lead compound 3k in vitro and in vivo using gastric cancer xenografts.
  • Compound 3k showed approximately 10-fold greater antiproliferative potency than shikonin.
  • 3k preferentially exhibited sensitivity in gastric cancer cells compared to normal gastric epithelial cells.
  • Mechanistic studies revealed activation of the ISR and ROS pathways, leading to increased apoptosis and ferroptosis.

Abstract

Shikonin is a natural naphthoquinone with anticancer activity; however, its therapeutic potential is limited by modest potency and suboptimal drug-like properties. To address these limitations, we designed and synthesized 31 shikonin derivatives through a medicinal chemistry hybridization strategy that retained the redox-active naphthoquinone core while introducing privileged structural motifs frequently associated with enhanced biomolecular interactions and cellular activity. Structure–activity relationship analysis identified compound 3k as a lead, exhibiting approximately 10-fold greater antiproliferative potency than shikonin, with preferential sensitivity observed in gastric cancer cell lines relative to other tested cancer types and normal gastric epithelial cells. The anticancer activity of 3k was further validated in a gastric cancer xenograft model in vivo. Proteomic profiling and mechanistic studies revealed activation of the integrated stress response (ISR) and reactive oxygen species (ROS) pathways, which were also enriched in gastric cancer data sets, leading to the induction of both apoptosis and ferroptosis. Collectively, these findings establish a structure-dependent optimization of shikonin-derived naphthoquinones and identify 3k as a promising lead compound for further development of redox-active anticancer agents.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a1a82b80307b785094346f4https://doi.org/10.1021/acs.jmedchem.6c00092
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