ASIC1a contributes to the epithelial–mesenchymal transformation of breast cancer by activating the Ca2+/β‐catenin pathway

Author:

Wang Jiawei12,Yang Chao1,Yu Ruihua1,Zhuang Ming3,Jiang Feng1ORCID

Affiliation:

1. Translational Institute for Cancer Pain, Clinical Research and Innovation Unit, Chongming Hospital Affiliated to Shanghai University of Medicine and Health Sciences Shanghai PR China

2. School of Life Sciences Shanghai University Shanghai PR China

3. Department of Breast Surgery Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine Shanghai PR China

Abstract

AbstractBreast cancer is the most common cancer in the world, with metastasis being one of the leading causes of death among patients. The acidic environment of breast cancer tissue promotes tumor cell invasion and migration by inducing epithelial–mesenchymal transformation (EMT) in tumor cells, but the exact mechanisms are not yet fully understood. This study investigated the expression of acid‐sensitive ion channel 1a (ASIC1a) in breast cancer tissue samples and explored the mechanisms by which ASIC1a mediates the promotion of EMT in breast cancer cells in an acidic microenvironment through in vivo and in vitro experiments. The results showed that first, the expression of ASIC1a was significantly upregulated in breast cancer tissue and was correlated with the TNM (tumor node metastasis) staging of breast cancer. Furthermore, ASIC1a expression was higher in tumors with lymph node metastasis than in those without. Second, the acidic microenvironment promoted [Ca2+]i influx via ASIC1a activation and regulated the expression of β‐catenin, Vimentin, and E‐cadherin, thus promoting EMT in breast cancer cells. Inhibition of ASIC1a activation with PcTx‐1 could suppress EMT in breast cancer cells. Finally, in vivo studies also showed that inhibition of ASIC1a could reduce breast cancer metastasis, invasion, and EMT. This study suggests that ASIC1a expression is associated with breast cancer staging and metastasis. Therefore, ASIC1a may become a new breast cancer biomarker, and the elucidation of the mechanism by which ASIC1a promotes EMT in breast cancer under acidic microenvironments provides evidence for the use of ASIC1a as a molecular target for breast cancer treatment.

Funder

Shanghai Municipal Health Commission

Shanghai University of Medicine and Health Sciences

Publisher

Wiley

Subject

Health, Toxicology and Mutagenesis,Management, Monitoring, Policy and Law,Toxicology,General Medicine

Reference46 articles.

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