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Zorychta, E.

Publications and source records attributed to Zorychta, E..

2 recordsLinked to original sources

Oxaliplatin and 5-Fluorouracil induce p53-p21-pRb-associated cell cycle arrest and a transient senescence-like phenotype in patient-derived low-grade serous ovarian cancer cells

Objectives Low grade serous ovarian cancer (LGSOC) is characterized by frequent TP53 wild type status and limited responsiveness to conventional chemotherapy. This study investigated the cytotoxic effects of oxaliplatin combined with 5-fluorouracil on patient derived LGSOC cells. Results Clinically relevant concentrations of oxaliplatin and 5-fluorouracil had minimal effects on LGSOC cell viability but markedly reduced cellular proliferation and clonogenic recovery. Combined treatment induced pronounced accumulation of cells in the G0/G1 phase of the cell cycle and increased expression of p53 and p21, accompanied by reduced pRB phosphorylation, consistent with activation of the p53-p21-pRb pathway. Oxaliplatin plus 5-fluorouracil also increased senescence-associated beta-galactosidase activity, cellular enlargement and flattening, and reactive oxygen species production, supporting a senescence-like phenotype. However, after drug withdrawal, treated cells progressively regained proliferative capacity, indicating that the senescence phenotype was transient rather than fully irreversible. Together, these findings show that oxaliplatin plus 5-fluorouracil primarily arrest rather than kill LGSOC cells and induces a transient senescence-like phenotype and G0/G1-phase arrest by activating the p53-p21-pRb pathway.

cancer biology↗

The combination of nelfinavir and cisplatin drives lytic cell death through a caspase-8/caspase-3/GSDME axis in platinum-resistant ovarian cancer cells

PurposeCisplatin (CDDP) is the most active chemotherapy for ovarian cancer; primary or acquired resistance signals a poor prognosis. Nelfinavir (NFV), an HIV protease inhibitor, has demonstrated anti-tumor activity in multiple cancer models, but its interaction with CDDP in ovarian cancer has yet to be demonstrated. In this work, we addressed whether the combination of CDDP and NFV provides treatment advantage in platinum (Pt)-resistant ovarian cancer cells. MethodsDrug synergy between NFV and CDDP was assessed using cell vitality assays and Loewe additivity modelling. Apoptotic and pyroptotic signalling were evaluated by immunoblotting, mitochondrial membrane potential analysis, and lactate dehydrogenase (LDH) release, and caspase inhibition. Transcriptomic changes were assessed by bulk mRNA sequencing followed by differential gene expression analysis and gene set enrichment analysis. ResultsNFV synergized with CDDP to reduce the viability of Pt-resistant ovarian cancer cells, promoting a regulated lytic cell death phenotype involving apoptotic and pyroptotic features. Combination treatment induced caspase-8 and caspase-3 activation, and downstream gasdermin E (GSDME) processing. Inhibition of caspase-3 significantly attenuated cell death, and caspase-8 inhibition rescued viability and prevented Bid cleavage, caspase-3 activation, and GSDME cleavage. These effects occurred in the context of enhanced endoplasmic reticulum stress, increased DNA damage with reduced DNA repair, and impaired Akt-driven survival signalling. ConclusionsOur findings establish that NFV synergizes with CDDP in killing Pt-resistant ovarian cancer cells by promoting a caspase-8-dependent apoptotic-to-secondary pyroptotic response, supporting further investigation of NFV as a potential drug to be repurposed to increase the efficacy of Pt-based therapy.

cancer biology↗