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Review
. 2024 Sep;1879(5):189173.
doi: 10.1016/j.bbcan.2024.189173. Epub 2024 Aug 16.

Insights into the role of connexins and specialized intercellular communication pathways in breast cancer: Mechanisms and applications

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Free article
Review

Insights into the role of connexins and specialized intercellular communication pathways in breast cancer: Mechanisms and applications

Marina Rodríguez-Candela Mateos et al. Biochim Biophys Acta Rev Cancer. 2024 Sep.
Free article

Abstract

Gap junctions, membrane-based channels comprised of connexin proteins (Cxs), facilitate direct communication among neighbouring cells and between cells and the extracellular space through their hemichannels. The normal human breast expresses various Cxs family proteins, such as Cx43, Cx30, Cx32, Cx46, and Cx26, crucial for proper tissue development and function. These proteins play a significant role in breast cancer development, progression, and therapy response. In primary tumours, there is often a reduction and cytoplasmic mislocalization of Cx43 and Cx26, while metastatic lesions show an upregulation of these and other Cxs. Although existing research predominantly supports the tumour-suppressing role of Cxs in primary carcinomas through channel-dependent and independent functions, controversies persist regarding their involvement in the metastatic process. This review aims to provide an updated perspective on Cxs in human breast cancer, with a specific focus on intrinsic subtypes due to the heterogeneous nature of this disease. Additionally, the manuscript will explore the role of Cxs in immune interactions and novel forms of intercellular communication, such as tunneling nanotubes and extracellular vesicles, within the breast tumour context and tumour microenvironment. Recent findings suggest that Cxs hold potential as therapeutic targets for mitigating metastasis and drug resistance. Furthermore, they may serve as novel biomarkers for cancer prognosis, offering promising avenues for future research and clinical applications.

Keywords: Anti-tumour immune response; Breast cancer; Connexins; Exosomes; Extracellular vesicles; Gap junctions; Mammary carcinoma; Tunelling nanotubes.

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Conflict of interest statement

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

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