Evaluation of the Mammalian Aquaporin Inhibitors Auphen and Z433927330 in Treating Breast Cancer

Author:

Charlestin Verodia12ORCID,Tan Elijah12ORCID,Arias-Matus Carlos Eduardo12ORCID,Wu Junmin12,Miranda-Vergara Maria Cristina123,Lee Mijoon1ORCID,Wang Man12,Nannapaneni Dharma T.4,Tennakoon Parinda12,Blagg Brian S. J.14ORCID,Ashfeld Brandon L.14ORCID,Kaliney William2,Li Jun25,Littlepage Laurie E.12ORCID

Affiliation:

1. Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, USA

2. Harper Cancer Research Institute, South Bend, IN 46617, USA

3. Biotechnology Department, Life and Health Sciences Deanship, Universidad Popular Autonoma del Estado de Puebla (UPAEP University), 13 Poniente No. 1927, Barrio de Santiago, Puebla 72410, Mexico

4. Warren Family Research Center for Drug Discovery and Development, University of Notre Dame, Notre Dame, IN 46556, USA

5. Department of Applied and Computational Mathematics and Statistics, University of Notre Dame, Notre Dame, IN 46556, USA

Abstract

AQPs contribute to breast cancer progression and metastasis. We previously found that genetic inhibition of Aqp7 reduces primary tumor burden and metastasis in breast cancer. In this study, we utilized two AQP inhibitors, Auphen and Z433927330, to evaluate the efficacy of therapeutic inhibition of AQPs in breast cancer treatment. The inhibitors were evaluated in breast cancer for both cytotoxicity and metabolic stability assays across both murine and human breast cancer cell lines. Both AQP inhibitors also affected the expression of other AQP transcripts and proteins, which demonstrates compensatory regulation between AQP family members. As a single agent, Auphen treatment in vivo extended overall survival but did not impact primary or metastatic tumor burden. However, Auphen treatment made cells more responsive to chemotherapy (doxorubicin) or endocrine treatment (tamoxifen, fulvestrant). In fact, treatment with Tamoxifen reduced overall AQP7 protein expression. RNA-seq of breast cancer cells treated with Auphen identified mitochondrial metabolism genes as impacted by Auphen and may contribute to reducing mammary tumor progression, lung metastasis, and increased therapeutic efficacy of endocrine therapy in breast cancer. Interestingly, we found that Auphen and tamoxifen cooperate to reduce breast cancer cell viability, which suggests that Auphen treatment makes the cells more susceptible to Tamoxifen. Together, this study highlights AQPs as therapeutic vulnerabilities of breast cancer metastasis that are promising and should be exploited. However, the pharmacologic results suggest additional chemical refinements and optimization of AQP inhibition are needed to make these AQP inhibitors appropriate to use for therapeutic benefit in overcoming endocrine therapy resistance.

Publisher

MDPI AG

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