AI Article Synopsis

  • The study focused on optimizing conditions for extracting Brazilian green propolis using supercritical carbon dioxide, examining factors like solvent-to-solute ratio, co-solvent percentage, temperature, and pressure.
  • The best extraction results were found at 50°C, 350 bar, with 1% ethanol co-solvent and a solvent-to-solute ratio of 110, yielding significant amounts of two key compounds: Artepillin C and p-coumaric acid.
  • Despite the low overall yield, the extracted compounds demonstrated high biological relevance, suggesting that this method is effective for obtaining valuable green propolis extracts.

Article Abstract

The aim of this study was to determine the best processing conditions to extract Brazilian green propolis using a supercritical extraction technology. For this purpose, the influence of different parameters was evaluated such as S/F (solvent mass in relation to solute mass), percentage of co-solvent (1 and 2% ethanol), temperature (40 and 50°C) and pressure (250, 350 and 400 bar) using supercritical carbon dioxide. The Global Yield Isotherms (GYIs) were obtained through the evaluation of the yield, and the chemical composition of the extracts was also obtained in relation to the total phenolic compounds, flavonoids, antioxidant activity and 3,5-diprenyl-4-hydroxicinnamic acid (Artepillin C) and acid 4-hydroxycinnamic (p-coumaric acid). The best results were identified at 50°C, 350 bar, 1% ethanol (co-solvent) and S/F of 110. These conditions, a content of 8.93±0.01 and 0.40±0.05 g/100 g of Artepillin C and p-coumaric acid, respectively, were identified indicating the efficiency of the extraction process. Despite of low yield of the process, the extracts obtained had high contents of relevant compounds, proving the viability of the process to obtain green propolis extracts with important biological applications due to the extracts composition.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529176PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0134489PLOS

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