加压液体萃取法提取的海芋提取物的抗氧化活性和酚类物质含量

D. M. Firmiano, G. Bittencourt, A. L. Oliveira
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引用次数: 2

摘要

本研究采用加压液体萃取法(PLE)获得了富含酚类化合物、具有较高抗氧化活性的cambucol提取物。我们确定了百分组成和平均粒度的干燥和粉碎样品的固定床萃取器的表征。以温度(中心点60°C,振幅±10°C)和溶剂与基质接触时间(中心点6分钟,振幅±2分钟)为自变量,采用中心复合设计(CCD)对加压乙醇进行提取。测定化合物的总酚含量(TPC)和抗氧化活性。PLE中cambuci的平均粒径为263.4 μm,表观密度和实际密度分别为32.42 g/cm3和1.62 g/cm3,固定床孔隙率为0.43。粉碎干燥后样品的百分含量为:水分12.5±0.1%,灰分3.2±0.2%,粗蛋白质3.35±0.07%,粗纤维10.32±0.08%,空灵提取物0.35±0.04%。二项萃取温度为70℃,溶剂接触时间为8 min,分三批提取,提取率最高,为41.7%。采用二项法74°C,接触6 min,得到TPC最高的提取物(6501.10 mg AGE/100 g样品);当二项温度为50℃,接触时间为4 min时,提取液的抗氧化活性最高。CCD显示出高产量、高抗氧化活性和高总酚类化合物含量的提取物。利用所提出的实验设计,可以优化样品中总酚类化合物的提取。
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Antioxidant Activity and Phenolic Content of Campomanesia Phaea Extracts Obtained by Pressurized Liquid Extraction
This research used the Pressurized Liquid Extraction process (PLE) to obtain cambuci extracts rich in phenolic compounds and, consequently, with high antioxidant activity. We determined the centesimal composition and the mean particle size of the dried and crushed sample for characterization of the fixed bed extractor. Extractions with pressurized ethanol were performed following a Central Composite Design (CCD) with temperature (60 °C at the center point with ± 10 °C amplitude) and the contact time between the solvent and the matrix (6 min at the center point with ± 2 min amplitude) as independent variables in the process. The Total Phenolic Content (TPC) of compounds and antioxidant activity were determined. The mean particle size of the cambuci in the PLE was 263.4 μm with apparent and real densities of 32.42 g/cm3 and 1.62 g/cm3, respectively, resulting in a fixed bed porosity of 0.43. The centesimal composition of the comminuted and dried sample was 12.5 ± 0.1% moisture, 3.2 ± 0.2% ash, 3.35 ± 0.07% crude protein, 10.32 ± 0.08% crude fiber and 0.35 ± 0.04% ethereal extract. The highest extraction yield (41.7%) was obtained by using the binomial 70 ºC with 8 min of solvent contact in three batches. Extracts with the highest TPC (6501.10 mg AGE/100 g sample) were obtained by the binomial 74 °C with 6 min of contact; the binomial 50 °C with 4 min of contact gave rise to the extract with the highest antioxidant activity. The CCD showed high yield extracts with high antioxidant activity and a high total phenolic compound content. With the use of the proposed experimental design, it was possible to optimize the extraction of total phenolic compounds from the sample.
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