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喷雾干燥西兰花()茎和花粉末的物理化学性质及抗氧化活性。

Physicochemical Properties and Antioxidant Activity of Spray-Dry Broccoli () Stalk and Floret Juice Powders.

机构信息

Coordinación Académica Región Altiplano, Universidad Autónoma de San Luis Potosí, Carretera Cedral Km. 5+600 Ejido San José de las Trojes, Matehuala 78700, San Luis Potosí, Mexico.

Centro de Investigación en Materiales Avanzados S.C. (CIMAV), Miguel de Cervantes No. 120, Complejo Industrial Chihuahua, Chihuahua 31136, Mexico.

出版信息

Molecules. 2021 Mar 31;26(7):1973. doi: 10.3390/molecules26071973.

Abstract

This research presents the microencapsulation and conservation of antioxidants of broccoli juice processed by spray drying, and proposes the use of a by-product as a technological application. Broccoli juice (BJ) extracted from two sources, stalks and florets, was spray-dried employing maltodextrin (MX) as a carrier agent at concentrations of 5, 7.5, and 10%, and inlet temperatures of 150 and 220 °C. The total phenolic content (TPC), and antioxidant activity (AA) of the BJ-MX powders were determined together with the physicochemical characteristics, including particle morphology, microstructure, and thermal properties. Based on the TPC and AA, the optimal processing conditions found were 5% of MX and a drying temperature of 220 °C. However, the florets showed higher TPC, while stalks presented higher AA under those processing conditions. The particles exhibited micrometric sizes and a mixture of spherical-shape particles and pseudo-spherical particles. The diffractograms indicated an amorphous microstructure in all samples. The glass transition temperature (Tg) was determined in the range of 50 °C for the samples dried at 150 °C and 55 °C for those dried at 220 °C. This suggested that powders might be stored at temperatures below the Tg without presenting any loss of antioxidants.

摘要

本研究对喷雾干燥法微胶囊化和保留西兰花汁中的抗氧化剂进行了研究,并提出了利用副产物作为一种技术应用。采用麦芽糊精(MX)作为载体,浓度为 5%、7.5%和 10%,进口温度为 150°C 和 220°C,对来自茎和花两部分的西兰花汁(BJ)进行喷雾干燥。测定了 BJ-MX 粉末的总酚含量(TPC)和抗氧化活性(AA)以及物理化学特性,包括颗粒形态、微观结构和热性能。基于 TPC 和 AA,发现最佳加工条件为 5%的 MX 和 220°C 的干燥温度。然而,在这些加工条件下,花显示出更高的 TPC,而茎则表现出更高的 AA。颗粒呈微米级大小,由球形颗粒和类球形颗粒组成。所有样品的衍射图谱均表明为非晶态微观结构。在 150°C 下干燥的样品的玻璃化转变温度(Tg)在 50°C 范围内,而在 220°C 下干燥的样品的 Tg 在 55°C 范围内。这表明粉末可以在低于 Tg 的温度下储存而不会损失抗氧化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b3a/8036675/197a40894a72/molecules-26-01973-g001.jpg

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