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首页> 外文期刊>Journal of food quality >The Use of Salvia macrosiphon and Lepidium sativum Linn. Seed Gums in Nanoencapsulation Processes: Improving Antioxidant Activity of Potato Skin Extract
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The Use of Salvia macrosiphon and Lepidium sativum Linn. Seed Gums in Nanoencapsulation Processes: Improving Antioxidant Activity of Potato Skin Extract

机译:使用丹参和Lepidium Linn的使用。 纳米封装过程中的种子牙龈:改善马铃薯皮肤提取物的抗氧化活性

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In the present study, the effect of Salvia macrosiphon Seed Gum (SMSG) and Lepidium sativum Linn. Seed Gum (LSSG) as a coating agent on the properties of nanoencapsulated potato skin extract was studied. Moreover, the antioxidant effect of nanoencapsulated extract at a concentration of 1000?ppm incorporated into soybean oil was evaluated. The Z-average size of the emulsions stabilized by SMSG; LSSG; and a complex (1?:?1) of SMSG and LSSG (CSL) was estimated as 160.2, 144.3, and 115.2?nm. The encapsulation efficiency of phenolic extracts in the powders formed by SMSG, LSSG, and CSL was 82.39, 81.67, and 93.6% which declined to 45.28, 48.22, and 62.67% after storage for 40?days at 30 ° C. The results indicated that the use of coating agents for encapsulation enhanced their antioxidant effect and compared with TBHQ and free extract that nanoencapsulated extract by CSL had the highest antioxidant activity followed by LSSG nanoencapsulated extract and SMSG nanoencapsulated extract.
机译:在本研究中,Salvia macrosiphon See Gum(SMSG)和Lepidium Linn的作用。 研究了种子胶(LSSG)作为涂层剂的纳米封装马铃薯皮肤提取物的性质。 此外,评价纳米封装提取物在掺入大厅油中的浓度为1000℃的抗氧化效果。 SMSG稳定乳液的Z平均尺寸; LSSG; 和SMSG和LSSG(CSL)的复合物(1?:1)估计为160.2,144.3和115.2?nm。 SMSG,LSSG和CSL形成的粉末中酚类提取物的封装效率为82.39,81.67和93.6%,储存40.8,48.22和62.67%,在30℃下储存40℃。结果表明 使用涂料用于包封的涂料增强了它们的抗氧化效果,并与TBHQ进行比较,并且通过CSL的纳米封装提取物具有最高的抗氧化剂活性,然后是LSSG纳米封装提取物和SMSG纳米封装提取物。

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