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March 7, 2026Journal of Agricultural and Food Chemistry2 citations

Assessing Digestive Transformations of Withania somnifera Extracts via LC–MS/MS Profiling with a Focus on Bioactive Compounds Withaferin A, Withanolide A, Withanoside IV, and Untargeted Metabolomics

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SBSarah A. BarrLDLydia J. DavisWVWarren S. Vidar

Key Points

  • This research aims to assess the digestive transformations of Withania somnifera extracts and their bioactive compounds.
  • Conducted in vitro digestive assays on Withania somnifera leaf and root extracts
  • Utilized mass spectrometry-based metabolomics for metabolite analysis
  • Applied molecular networking to identify specific metabolite transformations
  • Withaferin A and withanoside IV showed significant transformation in vitro
  • Withanolide A remained stable under digestive assay conditions
  • Root extract withanolides were largely stable, while leaf extract compounds were more labile

Abstract

Botanical extracts are widely employed as health care agents but lack the rigorous vetting required for FDA-approved pharmaceuticals. Research on phytochemical bioavailability and transformation has mainly focused on liver metabolism and plasma binding, while gastrointestinal and microbiome metabolism studies remain limited. This study combined digestive in vitro assays with mass spectrometry-based metabolomics and molecular networking to analyze metabolites in Withania somnifera leaf and root extracts, along with three known bioactive reference standards: withaferin A, withanolide A, and withanoside IV. Both withaferin A and withanoside IV underwent significant in vitro transformation, while withanolide A remained stable across conditions. Molecular networking revealed that withanolides in the root extract were largely stable, whereas many in the leaf extract were more labile under the assay conditions. Detailed network analysis also enabled the identification of specific metabolite transformations. These findings support the refinement of in vitro models to better predict in vivo behavior in complex botanical mixtures.

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Cite This Study

Barr et al. (2026) studied this question.

synapsesocial.com/papers/69abc1955af8044f7a4ea502https://doi.org/10.1021/acs.jafc.5c09897
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