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April 19, 2026Molecules0 citationsOpen Access

Butylated Hydroxytoluene (BHT) and p-Coumaric Acid Conjugates of Dipeptide Proline and GABA as Multi-Functional Agents with High Pharmacological Potential

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GPGeorgios PapagiouvannisPTPanagiotis Theodosis‐NobelosEREleni A. Rekka

Key Points

  • This research aims to design and evaluate hybrid compounds with antioxidant and anti-inflammatory properties.
  • Synthesis of compounds through conjugation of butylated hydroxytoluene and p-coumaric acid with proline and GABA.
  • Utilization of in vitro and in vivo assays to evaluate pharmacological activities.
  • Assessment of antioxidant, metal-reducing, iron-chelating, antiglycation, and anti-inflammatory effects.
  • Compound 2 showed significant antioxidant activity with IC50 values of 86 μM for DPPH, 25 μM for ABTS·+, and 104 μM for hydrogen peroxide.
  • Exhibited enhanced ferric-reducing activity (up to 91% of trolox) and strong iron-chelating capability (61.3%).
  • Demonstrated potent inhibition of lipid peroxidation with IC50 of 17.5 μM and moderate antiglycation effects (44%).
  • Compound 2 selectively inhibited COX-2 over COX-1, showing significant in vivo anti-inflammatory activity (53%).
  • Moderate acetylcholinesterase inhibition was also noted.

Abstract

Oxidative stress and inflammation are interconnected pathological processes involved in the progression of neurodegenerative, cardiovascular, and metabolic diseases, highlighting the need for multifunctional therapeutic agents targeting multiple pathways. In this study, two novel hybrid compounds were designed and synthesized in three steps by conjugating butylated phenolic moieties derived from butylated hydroxytoluene and p-coumaric acid with proline and γ-aminobutyric acid (GABA). The aim was the combination of antioxidant, anti-inflammatory, and cytoprotective properties within a single molecular framework. The compounds were evaluated using a comprehensive panel of in vitro and in vivo assays to assess antioxidant, metal-reducing, iron-chelating, antiglycation, anti-inflammatory, and acetylcholinesterase inhibitory activities. Both compounds exhibited significant antioxidant activity, with compound 2 demonstrating superior radical scavenging ability against DPPH, ABTS·+ and hydrogen peroxide (IC50 86 μM, 25 μM and 104 μM, respectively), enhanced ferric-reducing capacity (up to 91% of trolox activity), and strong iron-chelating activity (61.3%). Compound 2 also showed potent inhibition of lipid peroxidation (IC50 17.5 μM) and moderate antiglycation effects (44%), indicating substantial cytoprotective potential. Furthermore, both compounds selectively inhibited COX-2 over COX-1 and demonstrated moderate lipoxygenase inhibition, while compound 2 exhibited significant in vivo anti-inflammatory activity (53%), exceeding that of ibuprofen. Moderate acetylcholinesterase inhibition was also observed. In summary, the results confirm the design rationale, indicating that compound 2 could be further optimized as a multi-targeting molecule directed against oxidative stress- and inflammation-mediated conditions.

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Cite This Study

Papagiouvannis et al. (2026) studied this question.

synapsesocial.com/papers/69e47376010ef96374d8f4b7https://doi.org/10.3390/molecules31081323
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Also Consider

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

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