Aquaporin water channels affect the response of conventional anticancer therapies of 3D grown breast cancer cells

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Aquaporin (AQP) water channels facilitate water transport across cellular membranes and are essential in regulation of body water balance. Moreover, several AQPs are overexpressed or ectopically expressed in breast cancer. Interestingly, several in vitro studies have suggested that AQPs can affect the response to conventional anticancer chemotherapies. Therefore, we took a systematic approach to test how AQP1, AQP3 and AQP5, which are often over-/ectopically expressed in breast cancer, affect total viability of 3-dimensional (3D) breast cancer cell spheroids when treated with the conventional anticancer chemotherapies Cisplatin, 5-Fluorouracil (5-FU) and Doxorubicin, a Combination of the three drugs as well as the Combination plus the Ras inhibitor Salirasib. Total viability of spheroids overexpressing AQP1 were decreased by all treatments except for 5-FU, which increased total viability by 20% compared to DMSO treated controls. All treatments reduced viability of spheroids overexpressing AQP3. In contrast, only Doxorubicin, Combination and Combination + Salirasib reduced total viability of spheroids overexpressing AQP5. Thus, this study supports a significant role of AQPs in the response to conventional chemotherapies. Evaluating the role of individual proteins that contribute to resistance to chemotherapies is essential in advancing personalized medicine in breast carcinomas.
OriginalsprogEngelsk
TidsskriftBiochemical and Biophysical Research Communications
Vol/bind639
Sider (fra-til)126-133
Antal sider8
ISSN0006-291X
DOI
StatusUdgivet - 2023

Bibliografisk note

Funding Information:
This project was supported by the Graduate School of Health (ClinFO), Aarhus University , DK, Fonden til Lægevidenskabens Fremme (A.P. Møller Fonden), Einar Willumsens Mindelegat, Dagmar Marshalls Fond and Else og Mogens Wedell Wedellsborgs Fond.

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© 2022

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