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Updated: Jul 22, 2025

Combined Conditional Knockdown and Adapted Sphere Formation Assay to Study a Stemness-Associated Gene of Patient-derived Gastric Cancer Stem Cells
Published on: May 9, 2020
Diallyl trisulfide inhibits gastric cancer stem cell properties through ΔNp63/sonic hedgehog pathway
Miaomiao Ge1,2, Jianyun Zhu2,3, Kefan Yi2
1Department of General Surgery, Jiangsu Province Hospital of Chinese Medicine, Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing, China.
Abstract:
Gastric cancer is one of the deadliest malignant tumors, and half of the patients develop recurrences or metastasis within 5 years after eradication therapy. Cancer stem cells (CSCs) are considered to be important in this progress. The sonic hedgehog (SHH) pathway plays an important role in the maintenance of gastric CSCs characteristics. The p63 proteins are vital transcription factors belonging to the p53 family, while their functions in regulating CSCs remain unclear. The preventive effects of dietary diallyl trisulfide (DATS) against human gastric cancer have been verified. However, whether DATS can target gastric CSCs are poorly understood. Here, we investigated the role of ΔNp63/SHH pathway in gastric CSCs and the inhibitory effect of DATS on gastric CSCs via ΔNp63/SHH pathway. We found that ΔNp63 was upregulated in serum-free medium cultured gastric tumorspheres compared with the parental cells. Overexpression of ΔNp63 elevated the self-renewal capacity and CSC markers' levels in gastric sphere-forming cells. Furthermore, we found that ΔNp63 directly bound to the promoter region of Gli1, the key transcriptional factor of SHH pathway, to enhance its expression and to activate SHH pathway. In addition, it was revealed that DATS effectively inhibited gastric CSC properties both in vitro and in vivo settings. Activation of SHH pathway attenuated the suppressive effects of DATS on the stemness of gastric cancer. Moreover, DATS suppression of gastric CSC properties was also diminished by ΔNp63 upregulation through SHH pathway activation. These findings illustrated the role of ΔNp63/SHH pathway in DATS inhibition of gastric cancer stemness. Taken together, the present study suggested for the first time that DATS inhibited gastric CSCs properties by ΔNp63/SHH pathway.
Insights
Dietary diallyl trisulfide (DATS) inhibits gastric cancer stem cells (CSCs) by targeting the ΔNp63/Sonic hedgehog (SHH) pathway. This study reveals DATS
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Gastric cancer frequently recurs or metastasizes post-treatment, with cancer stem cells (CSCs) implicated in this progression.
- The Sonic hedgehog (SHH) pathway is crucial for gastric CSC maintenance, while the role of p63 proteins remains unclear.
- Dietary diallyl trisulfide (DATS) shows preventive effects against gastric cancer, but its mechanism targeting CSCs is poorly understood.
Purpose of the Study:
- To investigate the role of the ΔNp63/SHH pathway in gastric CSCs.
- To determine the inhibitory effect of DATS on gastric CSCs through the ΔNp63/SHH pathway.
Main Methods:
- Analysis of ΔNp63 expression in gastric tumorspheres.
- Assessment of CSC properties upon ΔNp63 overexpression.
- Investigation of ΔNp63 binding to the Gli1 promoter.
- Evaluation of DATS effects on CSCs in vitro and in vivo.
- Examination of SHH pathway activation's impact on DATS efficacy.
Main Results:
- ΔNp63 was upregulated in gastric tumorspheres, enhancing self-renewal and CSC marker levels.
- ΔNp63 directly activated the SHH pathway by binding to the Gli1 promoter.
- DATS inhibited gastric CSC properties both in vitro and in vivo.
- SHH pathway activation and ΔNp63 upregulation counteracted DATS' suppressive effects on CSCs.
Conclusions:
- The ΔNp63/SHH pathway plays a critical role in regulating gastric CSC stemness.
- DATS effectively inhibits gastric CSC properties by targeting the ΔNp63/SHH pathway.
- This study elucidates a novel mechanism for DATS in combating gastric cancer recurrence and metastasis.
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