Department of Biotechnology, Health Science Institute, Federal University of Bahia, Salvador 40170-115, Brazil.
SENAI Institute of Innovation (ISI) in Health Advanced Systems (CIMATEC ISI SAS), Senai Cimatec University Center, Salvador 41650-010, Brazil.
Molecules. 2023 Mar 3;28(5):2338. doi: 10.3390/molecules28052338.
The demand for bee products has been growing, especially regarding their application in complementary medicine. bees using D.C. () as substrate produce green propolis. Among the examples of bioactivity of this matrix are antioxidant, antimicrobial, and antiviral actions. This work aimed to verify the impact of the experimental conditions applied in low- and high-pressure extractions of green propolis, using sonication (60 kHz) as pretreatment to determine the antioxidant profile in the extracts. Total flavonoid content (18.82 ± 1.15-50.47 ± 0.77 mgQE·g), total phenolic compounds (194.12 ± 3.40-439.05 ± 0.90 mgGAE·g) and antioxidant capacity by DPPH (33.86 ± 1.99-201.29 ± 0.31 µg·mL) of the twelve green propolis extracts were determined. By means of HPLC-DAD, it was possible to quantify nine of the fifteen compounds analyzed. The results highlighted formononetin (4.76 ± 0.16-14.80 ± 0.02 mg·g) and -coumaric acid (<LQ-14.33 ± 0.01 mg·g) as majority compounds in the extracts. Based on the principal component analysis, it was possible to conclude that higher temperatures favored the release of antioxidant compounds; in contrast, they decreased the flavonoid content. Thus, the obtained results showed that samples pretreated with 50 °C associated with ultrasound displayed a better performance, which may support the elucidation of the use of these conditions.
对蜂产品的需求一直在增长,特别是在补充医学方面。以 D.C. () 为基质的蜜蜂生产出绿色蜂胶。这种基质的生物活性例子包括抗氧化、抗菌和抗病毒作用。本工作旨在验证在低、高压提取绿色蜂胶过程中应用的实验条件的影响,使用超声(60 kHz)作为预处理来确定提取物中的抗氧化特性。总黄酮含量(18.82 ± 1.15-50.47 ± 0.77 mgQE·g)、总酚类化合物含量(194.12 ± 3.40-439.05 ± 0.90 mgGAE·g)和 DPPH 抗氧化能力(33.86 ± 1.99-201.29 ± 0.31 µg·mL)的 12 种绿色蜂胶提取物进行了测定。通过 HPLC-DAD 可以定量分析 15 种化合物中的 9 种。结果突出了芒柄花素(4.76 ± 0.16-14.80 ± 0.02 mg·g)和 -香豆酸(<LQ-14.33 ± 0.01 mg·g)作为提取物中的主要化合物。基于主成分分析,可以得出结论,较高的温度有利于释放抗氧化化合物;相反,它们降低了黄酮类化合物的含量。因此,所得结果表明,用 50°C 预处理并结合超声的样品表现更好,这可能有助于阐明这些条件的使用。