4.5 Article

The pro- and antineoplastic effects of deoxycholic acid in pancreatic adenocarcinoma cell models

Journal

MOLECULAR BIOLOGY REPORTS
Volume -, Issue -, Pages -

Publisher

SPRINGER
DOI: 10.1007/s11033-023-08453-x

Keywords

DCA; Pancreatic adenocarcinoma; EMT; Oxidative; nitrosative stress; Stemness; Cell metabolism

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Commensal bacteria secrete metabolites that can reach cancer cells and affect cancer behavior. Deoxycholic acid (DCA), a secondary bile acid produced by intestinal microbes, may have both pro- and antineoplastic effects in cancers.
BackgroundCommensal bacteria secrete metabolites that reach distant cancer cells through the circulation and influence cancer behavior. Deoxycholic acid (DCA), a hormone-like metabolite, is a secondary bile acid specifically synthesized by intestinal microbes. DCA may have both pro- and antineoplastic effects in cancers.Methods and resultsThe pancreatic adenocarcinoma cell lines, Capan-2 and BxPC-3, were treated with 0.7 mu M DCA, which corresponds to the reference concentration of DCA in human serum. DCA influenced the expression of epithelial to mesenchymal transition (EMT)-related genes, significantly decreased the expression level of the mesenchymal markers, transcription factor 7- like 2 (TCF7L2), snail family transcriptional repressor 2 (SLUG), CLAUDIN-1, and increased the expression of the epithelial genes, zona occludens 1 (ZO-1) and E-CADHERIN, as shown by real-time PCR and Western blotting. Consequently, DCA reduced the invasion capacity of pancreatic adenocarcinoma cells in Boyden chamber experiments. DCA induced the protein expression of oxidative/nitrosative stress markers. Moreover, DCA reduced aldehyde dehydrogenase 1 (ALDH1) activity in an Aldefluor assay and ALDH1 protein level, suggesting that DCA reduced stemness in pancreatic adenocarcinoma. In Seahorse experiments, DCA induced all fractions of mitochondrial respiration and glycolytic flux. The ratio of mitochondrial oxidation and glycolysis did not change after DCA treatment, suggesting that cells became hypermetabolic.ConclusionDCA induced antineoplastic effects in pancreatic adenocarcinoma cells by inhibiting EMT, reducing cancer stemness, and inducing oxidative/nitrosative stress and procarcinogenic effects such as hypermetabolic bioenergetics.

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