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DNA damage and reticular stress in cytotoxicity and oncotic cell death of MCF-7 cells treated with fluopsin C.

Luan Vitor Alves de LimaMatheus Felipe da SilvaVirginia Marcia ConcatoDébora Berbel Lirio RondinaThalita Alves ZanettiIngrid FelicidadeLilian Areal MarquesSandra Regina LepriAne Stefano SimionatoGaldino Andrade FilhoGiuliana Castello CoattiMário Sérgio Mantovani
Published in: Journal of toxicology and environmental health. Part A (2022)
Fluopsin C is an antibiotic compound derived from secondary metabolism of different microorganisms, which possesses antitumor, antibacterial, and antifungal activity. Related to fluopsin C antiproliferative activity, the aim of this study was to examine the following parameters: cytotoxicity, genotoxicity, cell cycle arrest, cell death induction (apoptosis), mitochondrial membrane potential (MMP), colony formation, and mRNA expression of genes involved in adaptive stress responses and cellular death utilizing a monolayer. In addition, a three-dimensional cell culture was used to evaluate the effects on growth of tumor spheroids. Fluopsin C was cytotoxic (1) producing cell division arrest in the G<sub>1</sub> phase, (2) elevating expression of mRNA of the <i>CDKN1A</i> gene and (3) decrease in expression of mRNA <i>H2AFX</i> gene. Further, fluopsin C enhanced DNA damage as evidenced by increased expression of mRNA of <i>GADD45A</i> and <i>GPX1</i> genes, indicating that reactive oxygen species (ROS) may be involved in the observed genotoxic response. Reticulum stress was also detected as noted from activation of the ribonuclease inositol-requiring protein 1 (IRE1) pathway, since a rise in mRNA expression of the <i>ERN1</i> and <i>TRAF2</i> genes was observed. During the cell death process, an increase in mRNA expression of the <i>BBC3</i> gene was noted, indicating participation of this antibiotic in oncotic (ischemic) cell death. Data thus demonstrated for the first time that fluopsin C interferes with the volume of tumor spheroids, in order to attenuate their growth. Our findings show that fluopsin C modulates essential molecular processes in response to stress and cell death.
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