PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
November 19, 2025Molecules0 citationsOpen Access

Effective Antioxidants as Plausible Ligands in Chromium(III) Supplementation: How Complexation Modulates Catechol-Based Polyphenols

View Full Paper
HLHanna LewandowskaZCZhe ChenKMKrystian Marszałek

Key Points

  • To explore how metal coordination affects antioxidant and pro-oxidant properties of specific polyphenols.
  • Evaluated effects of chromium(III) complexes and salts in vitro.
  • Conducted radical scavenging assays including ABTS and DPPH.
  • Assessed ferric- and cupric-reducing power and lipid peroxidation inhibition.
  • K(I) complexes and Cr–3,4-DHBA improved lipid peroxidation inhibition.
  • Cr(III) chelation increased reducing power of caffeic acid but reduced that of 3,4-DHBA.
  • Chromium complexation altered pro-oxidant behavior under superoxide conditions.

Abstract

This study examines the impact of metal coordination on the antioxidant and pro-oxidant properties of 3,4-dihydroxybenzoic acid (3,4-DHBA) and caffeic acid (CA). Their Na(I), K(I) salts and Cr(III) complexes were evaluated in vitro using radical scavenging assays (ABTS, DPPH, hydroxyl, and superoxide), ferric- and cupric-reducing power, and inhibition of linoleic acid peroxidation. Alkali metal coordination generally decreased radical scavenging activity, though K complexes and Cr–3,4-DHBA improved lipid peroxidation inhibition. Cr(III) chelation produced ligand-dependent effects: it markedly increased the reducing power of CA while reducing that of 3,4-DHBA and uniquely promoted pro-oxidant behavior in CA under superoxide conditions. These outcomes reflect how chromium chelation alters electronic distribution and charge transfer, enhancing reducing power in single-electron transfer assays while enabling redox cycling in radical scavenging systems, underscoring its dual and ligand-dependent biological significance.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Lewandowska et al. (2025) studied this question.

synapsesocial.com/papers/6924f095c0ce034ddc350d0bhttps://doi.org/10.3390/molecules30224467
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Structure, Antioxidant Activity and Antimicrobial Study of Light Lanthanide Complexes with p-Coumaric Acid2024 · 7 citations
  2. 2Exploring the antioxidant activity of 1-(piperidin-1-yl) propane-1,2-dione 4-phenylthiosemicarbazone and 3d metal coordination compounds with this ligand2024
  3. 3Synthesis, structural characterisations, electrochemical behavior and antibacterial activities of a Chromium(III) resorcinolate complex2024 · 4 citations
  4. 4Effects of Metal Ions on Antioxidant Activity of Red Wine2024 · 3 citations
  5. 5The Coordination Chemistry and Electrochemistry of Chromium (III) Complexes of Thiobis (Ethylenenitrilo) Tetraacetic Acid2026