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用于功能性食品的含槲皮素的两种活性系统封装基质的评估。

Evaluation of Two Active System Encapsulant Matrices with Quercetin and for Functional Foods.

作者信息

Enciso-Huerta Hector Alfonso, Ruiz-Cabrera Miguel Angel, Lopez-Martinez Laura Araceli, Gonzalez-Garcia Raul, Martinez-Gutierrez Fidel, Saavedra-Leos Maria Zenaida

机构信息

Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, Av. Dr. Manuel Nava 6, San Luis Potosí 78210, Mexico.

Coordinación Académica Región Altiplano Oeste, Universidad Autónoma de San Luis Potosí, Salinas de Hidalgo 78600, Mexico.

出版信息

Polymers (Basel). 2022 Dec 1;14(23):5225. doi: 10.3390/polym14235225.

Abstract

Currently, demand for functional foods is increasing in the public interest in order to improve life expectations and general health. Food matrices containing probiotic microorganisms and active compounds encapsulated into carrier agents are essential in this context. Encapsulation via the lyophilisation method is widely used because oxidation reactions that affect physicochemical and nutritional food properties are usually avoided. Encapsulated functional ingredients, such as quercetin and , using two carrier agents' matrices-I [inulin (IN), lactose (L) and maltodextrin (MX)] and II [arabic (A), guar (G), and xanthan (X) gums)]-are presented in this work. A D-optimal procedure involving 59 experiments was designed to evaluate each matrix's yield, viability, and antioxidant activity (AA). Matrix I (33.3 IN:33.3 L:33.3 MX) and matrix II (33.3 A:33.3 G:33.3 X) exhibited the best yield; viability of 9.7 log10 CFU/g and 9.73 log10 CFU/g was found in matrix I (using a ratio of 33.3 IN:33.3 L:33.3 MX) and matrix II (50 G:50 X), respectively. Results for the antioxidant capacity of matrix I (100 IN:0 L:0M X) and matrix II (0 A:50 G:50 X) were 58.75 and 55.54 (DPPH* scavenging activity (10 µg/mL)), respectively. Synergy between matrices I and II with use of 100IN:0L:OMX and 0A:50G:50X resulted in 55.4 log10 CFU/g viability values; the antioxidant capacity was 9. 52 (DPPH* scavenging activity (10 µg/mL). The present work proposes use of a carrier agent mixture to produce a functional ingredient with antioxidant and probiotic properties that exceed the minimum viability, 6.0 log10 CFU/g, recommended by the FAO/WHO (2002) to be probiotic, and that contributes to the recommended daily quercetin intake of 10-16 mg/day or inulin intake of 10-20 g/day and dietary fibre intake of 25-38 g per day.

摘要

目前,为了提高生活期望和总体健康水平,公众对功能性食品的需求不断增加。在这种背景下,含有益生菌微生物和封装于载体剂中的活性化合物的食品基质至关重要。通过冻干法进行封装被广泛使用,因为这样通常可以避免影响食品物理化学和营养特性的氧化反应。本文介绍了使用两种载体剂基质——基质I(菊粉(IN)、乳糖(L)和麦芽糊精(MX))和基质II(阿拉伯胶(A)、瓜尔胶(G)和黄原胶(X))——封装的功能性成分,如槲皮素等。设计了一个包含59个实验的D - 最优程序,以评估每种基质的产率、活力和抗氧化活性(AA)。基质I(33.3 IN:33.3 L:33.3 MX)和基质II(33.3 A:33.3 G:33.3 X)表现出最佳产率;在基质I(使用33.3 IN:33.3 L:33.3 MX的比例)和基质II(50 G:50 X)中,分别发现活力为9.7 log10 CFU/g和9.73 log10 CFU/g。基质I(100 IN:0 L:0 MX)和基质II(0 A:50 G:50 X)的抗氧化能力结果分别为58.75和55.54(DPPH清除活性(10 µg/mL))。基质I和基质II以100IN:0L:OMX和0A:50G:50X组合使用时,活力值为55.4 log10 CFU/g;抗氧化能力为9.52(DPPH清除活性(10 µg/mL))。本研究提出使用载体剂混合物来生产具有抗氧化和益生菌特性的功能性成分,其活力超过粮农组织/世界卫生组织(2002年)推荐的益生菌最低活力6.0 log10 CFU/g,并且有助于达到每日推荐的槲皮素摄入量10 - 16毫克/天或菊粉摄入量10 - 20克/天以及膳食纤维摄入量25 - 38克/天。

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