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Comparison of Phytochemical Composition and Untargeted Metabolomic Analysis of an Extract from (Mill.) I. I. Johnst and (Jacq.) Cass. and Biological Cytotoxic and Antiproliferative Activity In Vitro. | LitMetric

AI Article Synopsis

  • The research analyzed the phytochemical composition and metabolomics of two edible plants, CA and PR, which are traditional food sources in Mexico, to evaluate their antiproliferative effects on cancer cells.
  • Using advanced techniques, 38 polyphenols and certain organic acids were identified and linked to metabolic activities such as indolizidines and pyridines.
  • CA showed a stronger reduction in cancer cell activity compared to PR, while both extracts caused increased cell apoptosis and cell cycle arrest, indicating potential for cancer treatment, but more studies on different cell lines are needed.

Article Abstract

(CA) and (PR) are representative edible plants that are a traditional food source in Mexico. This research aimed to analyze the phytochemical composition and untargeted metabolomics analysis of CA and PR and evaluate their antiproliferative effect in vitro. The phytochemical composition (UPLC-DAD-QToF/MS-ESI) identified up to 38 polyphenols and selected organic acids that were clustered by the untargeted metabolomics in functional activities linked to indolizidines, pyridines, and organic acids. Compared with PR, CA displayed a higher reduction in the metabolic activity of human SW480 colon adenocarcinoma cells (LC: 10.65 mg/mL), and both extracts increased the total apoptotic cells and arrested cell cycle at G0/G1 phase. PR increased mRNA gene expression, whereas both extracts reduced mRNA expression. Rutin/epigallocatechin gallate displayed the highest affinity to APC and K-RAS proteins in silico. Further research is needed to experiment on other cell lines. Results suggested that CA and PR are polyphenol-rich plant sources exhibiting antiproliferative effects in vitro.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222540PMC
http://dx.doi.org/10.3390/plants12101987DOI Listing

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