Roostaee Mahia, Barzegar Mohsen, Sahari Mohammad Ali, Rafiee Zahra
Department of Food Science and Technology, Tarbiat Modares University, P. O. Box 14115-336, Tehran, Iran.
J Food Sci Technol. 2017 Oct;54(11):3620-3629. doi: 10.1007/s13197-017-2822-2. Epub 2017 Sep 1.
Phenolic compounds of pistachio green hull extract (PGHE) were incorporated into nanoliposomes (NLs). The NLs were prepared with different concentrations of phenolic compounds of PGHE (500, 750 and 1000 ppm) and particle size, polydispersity index (PDI), zeta potential and encapsulation efficiency (EE) were investigated. The antioxidant activity of free and incorporated phenolic compounds of PGHE were evaluated in soybean oil during 39 days of storage by measuring peroxide (PV), thiobarbituric acid (TBA) values and color. The total phenolic content and IC (DPPH assay) of PGHE were 614.91 ± 0.45 mg gallic acid equivalent/g fresh weight of extract and 10 ± 0.05 μg/ml extract, respectively. The prepared NLs had 101.86-105.81 nm size and PDI = 0.202-0.235. The zeta potential value of NLs varied between -47.7 and -52.3 mV. The highest EE (32.47%) was observed for NLs containing 1000 ppm of phenolic compounds. The lowest PV and TBA values were related to free phenolic compounds at 500 mg/kg oil. In comparison with free phenolic compounds, loaded NLs had lower antioxidant activity, but encapsulation could improve the stability, gradual release and solubility of phenolic compounds in soybean oil. The color of NLs containing oil samples remained constant during the storage, but free phenolic compounds changed the oil`s color. All concentrations of free and incorporated phenolic compounds had also higher antioxidant activity than BHT. Finally, 500 ppm of phenolic compounds of PGHE in its incorporated forms could be recommended as a substitute for synthetic antioxidant in soybean oil.
阿月浑子绿果壳提取物(PGHE)中的酚类化合物被载入纳米脂质体(NLs)。用不同浓度(500、750和1000 ppm)的PGHE酚类化合物制备NLs,并对其粒径、多分散指数(PDI)、zeta电位和包封率(EE)进行研究。通过测量过氧化值(PV)、硫代巴比妥酸(TBA)值和颜色,评估在大豆油储存39天期间PGHE游离酚类化合物和载入酚类化合物的抗氧化活性。PGHE的总酚含量和IC(DPPH法)分别为614.91±0.45 mg没食子酸当量/g提取物鲜重和10±0.05 μg/ml提取物。制备的NLs粒径为101.86 - 105.81 nm,PDI = 0.202 - 0.235。NLs的zeta电位值在 - 47.7至 - 52.3 mV之间变化。含1000 ppm酚类化合物的NLs观察到最高包封率(32.47%)。最低的PV和TBA值与500 mg/kg油中的游离酚类化合物有关。与游离酚类化合物相比,载入的NLs抗氧化活性较低,但包封可提高酚类化合物在大豆油中的稳定性、缓释性和溶解性。含油样品的NLs颜色在储存期间保持不变,但游离酚类化合物改变了油的颜色。所有浓度的游离和载入酚类化合物的抗氧化活性也均高于丁基羟基甲苯(BHT)。最后,500 ppm载入形式的PGHE酚类化合物可推荐作为大豆油中合成抗氧化剂的替代品。