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Synergistic anti-tumorigenic effects of cabazitaxel and usnic acid combination on metastatic castration-resistant prostate cancer cells

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Bergel, Ceyda Çolakoğlu
Bulut, Ebrucan
Balaban, Rumeysa Fatma

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Bergel, Ceyda Çolakoğlu
Eryılmaz, Isıl Ezgi
Bulut, Ebrucan
Balaban, Rumeysa Fatma
Egeli, Ünal
Çeçener, Gülşah

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Bentham science publ ltd

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Background Prostate cancer (PC) affects millions of men, causing high mortality rates. Despite the treatment approaches, the options for metastatic castration-resistant prostate cancer (mCRPC), a lethal form of advanced PC, are still limited. Cabazitaxel (Cbx) is the last taxane-derived chemotherapeutic approved for Docetaxel-resistant mCRPC patients. However, its effects are limited due to the activation of several pathways. Therefore, new approaches are needed to increase the efficacy of Cbx. Usnic acid (UA) is a natural product with well-known anti-tumorigenic and synergistic effects with various chemotherapeutics. Although the cytotoxicity of UA and Cbx has been evaluated on mCRPC cells, the anti-tumorigenic effect of UA combination with any taxane has not been investigated yet. Thus, we aimed to evaluate the possible synergistic effect of Cbx+UA in mCRPC cells. Methods Cell viability and apoptosis were analyzed using WST-1 and Annexin-V. Morphological changes were visualized by fluorescent staining. Finally, cell cycle, mitochondrial health, and ROS levels were determined. Results Based on WST-1 results, 25 mu M UA exhibited significant additive and synergistic effects with the use of Cbx. Annexin V and cell cycle results showed that UA significantly enhanced the Cbx efficacy at increasing doses compared to using only Cbx (**p<0.01). Moreover, combined treatment significantly increased ROS levels and mitochondrial membrane depolarization compared with Cbx alone (**p<0.01). Conclusions Thus, the results suggest that UA increased the anti-tumorigenic effects of Cbx on mCRPC cells by increasing apoptosis, causing an increase in intracellular ROS and disrupting mitochondrial health. Consequently, combining UA and Cbx offers a new combined therapeutic strategy for mCRPC treatment.

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Treatment option, Mechanisms, Carcinoma, Apoptosis, Docetaxel, Efficacy, Pathway, Cabazitaxel, Usnic acid, Prostate cancer, Synergistic effect, Cytotoxic effect, mCRPC treatment, Science & technology, Life sciences & biomedicine, Oncology, Chemistry, medicinal, Oncology, Pharmacology & pharmacy

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