ω-3PUFAs Inhibit Gallbladder Cancer Through Enhancing STK31 Methylation

  • Mol Nutr Food Res. 2026 Jun;70(11):e70522. doi: 10.1002/mnfr.70522.
Shuang-Xing Li  1  2  3 Wei-Yu Zhu  1  2  3 Hai-Ying Peng  1  2  3 Bin Zhang  1  2  3 Zhu-Ying Lin  1  2  3 Song-Lin Yang  1  2  3 Yi-Yi Zhao  1  2 Hui Gao  1  2 Shan He  1  2 Yuan Liu  1  2 Xiao-Dan Wang  1  2 Yang-Fan Guo  1  2 Wen-Ju Wang  1  2 Zong-Liu Hou  1  2 Ming-Yao Meng  1  2 Li-Wei Liao  1  2 Lin Li  1  2
Affiliations
  • 1. Central Laboratory of Yan'an Hospital Affiliated to Kunming Medical University, Kunming, Yunnan Province, China.
  • 2. Key Laboratory of Tumor Immunological Prevention and Treatment of Yunnan Province, Kunming, Yunnan Province, China.
  • 3. Kunming Medical University, Kunming, Yunnan Province, China.
Abstract

Gallbladder Cancer (GBC) is an aggressive malignancy with limited treatment options. ω-3PUFAs have known Anticancer activity, but their role in GBC remains unclear. The anti-GBC effects of ω-3PUFAs (DHA/EPA) were evaluated using in vitro assays and mouse xenograft models. Epigenetic changes were analyzed by RRBS, MSP, and MethyLight PCR. Downstream mechanisms were explored via proteomics, Co-IP, and Western blot. This study demonstrates that ω-3PUFAs suppress GBC progression by inducing promoter hypermethylation of STK31, which is an oncogene found in GBC by our previous study. MethyLight PCR revealed that ω-3PUFAs treatment significantly increased STK31 promoter methylation in GBC-SD cells from 34.1% ± 20.91% to 89.1% ± 13.11%. Moreover, STK31(DNMT1)/GSK3β pathway and COL4A1 (ITGB1) were particularly associated with ω-3PUFAs' inhibitory mechanisms to GBC. In vivo experimental results demonstrated that ω-3PUFAs significantly inhibited the growth of gallbladder Cancer xenografts, with tumor growth inhibition rates of 38.6% for GBC-SD and 50.2% for NOZ at day 33, and effectively suppressed tumor cell metastasis in an intraperitoneal mouse model. This study provides first evidence that ω-3PUFAs target STK31 via epigenetic reprogramming, opening new avenues for dietary intervention and targeted therapy of GBC.

Keywords
DNA methylation; GSK3β; STK31; gallbladder cancer; ω‐3PUFAs.
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