The tumor microenvironment is a nutrient-deficient region that alters the cancer cell phenotype to aggravate cancer pathology. The ability of cancer cells to tolerate nutrient starvation is referred to as austerity. Compounds that preferentially target cancer cells growing under nutrient-deficient conditions are being employed in anti-austerity approaches in anticancer drug discovery. Therefore, in this study, we investigated physcion () and 2-(2',3-epoxy-1',3',5'-heptatrienyl)-6-hydroxy-5-(3-methyl-2-butenyl) benzaldehyde () obtained from a culture extract of the marine-derived fungus species (sp.), which were isolated from an unidentified marine sponge, as anti-austerity agents. The chemical structures of and were determined via spectroscopic analysis and comparison with authentic spectral data. Compounds and exhibited selective cytotoxicity against human pancreatic carcinoma PANC-1 cells cultured under glucose-deficient conditions, with IC values of 6.0 and 1.7 µM, respectively. Compound showed higher selective growth-inhibitory activity (505-fold higher) under glucose-deficient conditions than under general culture conditions. Further analysis of the mechanism underlying the anti-austerity activity of compounds and against glucose-starved PANC-1 cells suggested that they inhibited the mitochondrial electron transport chain.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7694948 | PMC |
http://dx.doi.org/10.3390/md18110555 | DOI Listing |
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