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Alloimperatorin enhances chemosensitivity by modulating the c-MYC/NBS1 axis to induce sustained DNA damage
Shuting Han1, Jiaru Wang2, Jiao Xue1
1School of Basic Medicine and Forensic Medicine, Baotou Medical College, Baotou, Inner Mongolia, 014040, China.
None:
Chemoresistance is a significant factor in the failure of cancer treatment. Although some chemotherapeutic combination regimens are linked to DNA damage repair processes, the therapeutic potential of TCM-derived small molecules that target these mechanisms is still underexplored. Alloimperatorin (Alloi) has demonstrated the ability to inhibit tumor growth; however, the efficacy and molecular mechanisms of its combination with chemotherapeutic agents are not yet fully understood. Here, we demonstrate that Alloi sensitizes multiple tumor cell lines to gemcitabine (GEM) both in vitro and in vivo. Using functional assays, we confirmed a potent synergistic inhibitory effect of the Alloi-GEM combination, which markedly suppressed pancreatic cancer progression in vivo with minimal adverse effects. By integrating transcriptome sequencing with network pharmacology, we identified downregulation of c-MYC and Nijmegen Breakage Syndrome 1 gene (NBS1) as a key mechanistic event, a finding subsequently validated through multiple assays. Mechanistically, the Alloi-GEM regimen induces sustained DNA damage via disruption of the c-MYC-NBS1 axis, thereby impairing the DNA damage response pathway. Collectively, our findings establish that Alloi enhances tumor sensitivity to GEM through modulation of the c-MYC/NBS1 axis and identify this combinatorial strategy as a promising approach for cancer treatment.
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