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首页> 外文期刊>Functional Foods In Health And Disease >Nanoencapsulation and identification of phenolic compounds by UPLC-Q/TOF-MS2 of an antioxidant extract from Opuntia atropes
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Nanoencapsulation and identification of phenolic compounds by UPLC-Q/TOF-MS2 of an antioxidant extract from Opuntia atropes

机译:抗氧化提取物的UPLC-Q / TOF-MS2来自Opuntia Asropes的UPLC-Q / TOF-MS2纳米常设和鉴定

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Nanoencapsulation is a technique that protects bioactive compounds such as polyphenolic compounds from environmental factors, through a biopolymer that acts as a wall system.Cladodes of O.atropes are an important source of polyphenolic compounds, flavonoids being the most abundant, these are mainly in the form of glycosides and their consumption has been related to a decrease in glucose and lipid profile through the elimination of intracellular radicals.Purpose of the study: To study the formulation and process parameters that allow for obtaining the best experimental conditions for nanoencapsulation and protect the polyphenolic compounds of the O.atropes extract.Methods: Wall materials applied for nanoencapsulation include soy protein isolate, calcium caseinate , and maltodextrin.A 33 Box Behnken design was used: wall material extract of O.atropes (1/1, 2.5 / 1, 4/1), temperature (95, 105 and 115 ° C) and spray (40, 70 and 100%).Yield, feeding speed, particle size, encapsulation efficiency, phenolic acids, flavonoids, DPPH? (1,1-dipheny l-2-picrilhydrazyl) and ABTS?+(2,2'-azino-bis-3- ethylbenzothia-zolin acid-6-sulfonic) were evaluated.Polyphenolic compounds were identified by UPLC-Q / TOFMS2 .Results: Maltodextrin presented better properties in the encapsulation of the extract of O.atropes.The 3 3 Box Behnken design made it possible to identify the treatment with the appropriate quality characteristics for the nanoencapsulation process: Formulation 2.5 / 1 (maltodextrin / O.atropes extract), 115 ° C and 100% spray resulted in 85.22% yield, feeding speed of 9 mL / h, the particle size of 154.77 nm, 55.69 % encapsulation efficiency, phenolic acids of 0.95 mg GAE / g, flavonoids of 7.02 mg QE / g, and antioxidant activity in DPPH? of 0.29 mg GAE / g and ABTS?+ of 0.45 mg GAE / g.The polyphenolic profile was characterized, and it was confirmed that nanoencapsulation protects some isomers of isorhamnetin 3-O-rhamnosido-7-O- (rhamnosyl-hexoside) and p-coumaric acid 4-O-glucoside.Conclusion: Maltodextrin is an excellent encapsulating material of the O.atropes extract.The formulation and process conditions that favored all the response variables were identified, and it was shown that nanoencapsulation protects the polyphenolic compounds.
机译:Nanoencapulation是一种通过作为壁系统的生物聚合物保护来自环境因素的生物活性化合物,例如来自环境因素的生物活性化合物。O.Atropes的Cladodes是多酚化合物的重要来源,黄酮类化合物是最丰富的,这些主要是糖苷的形式和它们的消费与通过消除细胞内自由基的葡萄糖和脂质分析的减少有关。该研究的空间:研究制剂和工艺参数,允许获得最佳实验条件的纳米常数和保护多酚O.Atropes提取物的化合物。施用纳米常数的壁材料包括大豆蛋白分离物,钙酪蛋白酸钙和麦芽糊精。使用麦芽酮设计:O.Atropes的壁材料提取物(1/1,2.5 / 1, 4/1),温度(95,105和115°C)和喷雾(40,70和100%)。产率,喂料速度,粒度,封装效果Iency,酚醛酸,黄酮类化合物,DPPH? (1,1-二维L-2-碳水化合物)和ABTS?+(2,2'-唑-BIS-3-乙基苯并噻唑酸-6-磺酸)。通过UPLC-Q / TOFMS 2鉴定聚苯酚化合物。结果:麦芽糖糊精在o.Atropes提取物的封装中呈现了更好的性质。3 3盒Behnken设计使得可以识别纳米封装过程的适当质量特征的处理:制剂2.5 / 1(麦芽糊精/ O.阿特罗斯提取物),115℃和100%喷雾导致85.22%的产率,饲养速度为9毫升/小时,粒径为154.77nm,55.69%包封效率,酚酸为0.95mg / g,黄酮类化合物为7.02毫克QE / g,DPPH中的抗氧化活性? 0.29mg gae / g和abtsα+ 0.45mg gae / g.特征在于,证实纳米封装保护了Isorhamnetin 3-O-rhamosido-7-O-(rhamosyl-己糖苷)的一些异构体对香豆酸4-O-葡萄糖苷。结论:麦芽糖糊精是O.Atropes提取物的优异包封材料。鉴定了所有响应变量的配方和工艺条件,并显示纳米骨架保护多酚化合物。

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