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Busonero, C.

Publications and source records attributed to Busonero, C..

2 recordsLinked to original sources

In silico screening for ERα downmodulators identifies thioridazine as an anti-proliferative agent in primary, 4OH-tamoxifen-resistant and Y537S ERα-expressing breast cancer cells

PurposeMost breast cancers (BCs) express estrogen receptor (ER) and are treated with the endocrine therapy (ET) drugs 4OH-tamoxifen (Tam) and fulvestrant (i.e., ICI182,780-ICI). Unfortunately, a high fraction of ET-treated women relapses and become resistant to ET. Therefore, additional anti-BC drugs are needed. Recently, we proposed that the identification of novel anti-BC drugs can be achieved using the modulation of the ER intracellular content in BC cells as a pharmacological target. Here, we searched for Food and Drug Administration (FDA)-approved drugs that potentially modify the ER content in BC cells.\n\nMethodsWe screened in silico more than 60,000 compounds to identify FDA-approved drugs with a gene signature similar to that of ICI. We identified mitoxantrone and thioridazine and tested them in primary, Tam-resistant and genome-edited Y537S ER-expressing BC cells.\n\nResultsMitoxantrone and thioridazine induced ER downmodulation and prevented MCF-7 cell proliferation. Interestingly, while mitoxantrone was toxic for normal breast cells, thioridazine showed preferential activity toward BC cells. Thioridazine also reduced the ER content and prevented cell proliferation in primary, Tam-resistant and genome-edited Y537S ER-expressing BC cells.\n\nConclusionsWe suggest that the modulation of the ER intracellular concentration in BC cells can also be robustly exploited in in silico screenings to identify anti-BC drugs and further demonstrate a re-purposing opportunity for thioridazine in primary and metastatic ET-resistant BC treatment.

cancer biology

A Functional Drug Re-Purposing Screening Identifies Carfilzomib As A Drug Preventing 17β-Estradiol: ERα Signaling And Cell Proliferation In Breast Cancer Cells

Most cases of breast cancer (BC) are estrogen receptor -positive (ER+) at diagnosis. The presence of ER drives the therapeutic approach for this disease, which often consists of endocrine therapy (ET). 4OH-Tamoxifen and faslodex (i.e., fulvestrant - ICI182,780) are two ETs that render tumor cells insensitive to 17{beta}-estradiol (E2)-dependent proliferative stimuli and prevent BC progression. However, ET has limitations and serious failures in different tissues and organs. Thus, there is an urgent need to identify novel drugs to fight BC in the clinic. Re-positioning of old drugs for new clinical purposes is an attractive alternative for drug discovery. For this analysis, we focused on the modulation of intracellular ER levels in BC cells as target for the screening of about 900 Food and Drug Administration (FDA) approved compounds that would hinder E2:ER signaling and inhibit BC cell proliferation. We found that carfilzomib induces ER degradation and prevents E2 signaling and cell proliferation in two ER+ BC cell lines. Remarkably, the analysis of carfilzomib effects on a cell model system with an acquired resistance to 4OH-tamoxifen revealed that this drug has an antiproliferative effect superior to faslodex in BC cells. Therefore, our results identify carfilzomib as a drug preventing E2:ER signaling and cell proliferation in BC cells and suggest its possible re-position for the treatment of ER+ BC as well as for those diseases that have acquired resistance to 4OH-tamoxifen.

cancer biology