AI Article Synopsis

  • Hepatocellular carcinoma (HCC) is a severe liver cancer with high rates of illness and death, and the study investigates the role of the protein TRPM8 in HCC progression.
  • Researchers analyzed TRPM8 levels in HCC tissues and conducted various laboratory tests to understand how TRPM8 affects cell growth and movement, and used a mouse model for in vivo experiments.
  • The study found that lower TRPM8 levels in HCC tissues were linked to worse patient outcomes, suggesting TRPM8 helps to slow cancer cell growth and spread through a specific signaling pathway involving RTP3 and STAT3, with a compound called AD80 promoting TRPM8 expression and potential anti-tumor effects.

Article Abstract

Background And Aims: Hepatocellular carcinoma (HCC) is a malignant tumour associated with high morbidity and mortality rates worldwide. Recently, TRPM8 was reported to play an important role in tumour progression. However, the precise role of TRPM8 in HCC remains unclear. In this study, we explored the expression levels, molecular functions and underlying mechanisms of TRPM8 in HCC.

Methods: Tissue samples were used to analyse the expression of TRPM8 to assess its diagnostic value for prognosis. Cell Counting Kit-8, EdU and colony formation assays were performed to evaluate the effects of TRPM8 on cell proliferation, whereas the Transwell assay was used to assess cell migration and invasion. The role of TRPM8 in vivo was evaluated using a mouse subcutaneous xenograft tumour model. We performed PPI network analyses to understand the possible mechanisms of TRPM8 action.

Results: TRPM8 expression was decreased in HCC tissues and was correlated with histological grade and poor patient prognosis. Functionally, TRPM8 repressed the proliferation and metastasis of HCC cells both in vitro and in vivo by modulating the RTP3/STAT3 signalling pathway.

Conclusion: Our findings underscore the critical role of the TRPM8-RTP3-STAT3 axis in maintaining the malignant progression of HCC. Moreover, our study demonstrates that AD80 is involved in anti-tumour processes by upregulating the expression of TRPM8.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11464657PMC
http://dx.doi.org/10.1002/cam4.70109DOI Listing

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