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April 15, 2026Free Radical Research0 citations

Effect of pumpkin polysaccharide-milk combinations on oxidative stress resistance of Caenorhabditis elegans based on Chou-Talalay model

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LYLi YangYTyuxuan tangQYQiqi Yao

Key Points

  • This research aims to evaluate the antioxidant effects of pumpkin polysaccharide and milk combinations on oxidative stress resistance.
  • Prepared pumpkin polysaccharide using radical-mediated extraction, precipitation, and deproteinization.
  • Screened combinations of pumpkin polysaccharide with five types of commercial milk using Chou-Talalay CI and DPPH/·OH assays.
  • Assessed survival time and antioxidant defense levels in C. elegans under oxidative stress.
  • Optimal combinations of 1.6 mg·mL-1 PPe with milk A or B significantly extended survival time by 62.85% and 52.34%.
  • Enhanced levels of endogenous antioxidants SOD, CAT, and GSH were observed.
  • Synergistic activation of antioxidant-related genes daf-16, sod-3, sir-2.1, and skn-1 was confirmed.

Abstract

This study investigated the synergistic antioxidant effects between pumpkin polysaccharide (PPe) and milk to overcome the limitations of single-component efficacy. PPe was prepared via radical-mediated extraction, precipitation, and deproteinization. Combinations of PPe (1.6, 3.2, 4.8 mg·mL-1) with five commercial milk samples (A-E) were screened using the Chou-Talalay combination index (CI) and DPPH/·OH radical assays. The combination of 1.6 mg mL-1 PPe with milk A or B exhibited the strongest synergy, with low Cm (median-effect dose) and CI values. In C. elegans under oxidative stress, these optimal combinations significantly extended mean survival time (by 62.85% and 52.34%, respectively) and enhanced endogenous antioxidant defenses (SOD, CAT, GSH). This protective effect was associated with the synergistic upregulation of key antioxidant-related genes, including daf-16, sod-3 (insulin/IGF-1 signaling pathway), sir-2.1, and skn-1 (Nrf2/KEAP1 pathway). These findings highlight the synergistic antioxidant potential of PPe-milk combinations and provide a theoretical basis for developing functional dairy products.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69df2b85e4eeef8a2a6b072ahttps://doi.org/10.1080/10715762.2026.2658787
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