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用离子凝胶法从洛神花(Hibiscus sabdariffa L.)花萼中包埋花色苷:微球储存过程中色素的稳定性。

Encapsulating anthocyanins from Hibiscus sabdariffa L. calyces by ionic gelation: Pigment stability during storage of microparticles.

机构信息

Department of Food Engineering, School of Food Engineering, University of Campinas, P.O. Box 6121, 13083-862 Campinas, Brazil; Fruit and Vegetable Technology Center, Institute of Food Technology, Brasil Avenue, 2880, P.O. Box 139, 13070-178 Campinas, Brazil.

University of Campinas, P.O. Box 6121, 13083-862 Campinas, Brazil.

出版信息

Food Chem. 2018 Feb 15;241:317-327. doi: 10.1016/j.foodchem.2017.08.095. Epub 2017 Aug 31.

Abstract

Hibiscus extract (HE) has a strong antioxidant activity and high anthocyanin content; it can be used as a natural pigment, also adding potential health benefits. The objective of this work was the microencapsulation of HE anthocyanin by ionic gelation (IG) using two techniques: dripping-extrusion and atomization, both by means of a double emulsion (HE/rapseed oil/pectin) and a cross-linked solution (CaCl). Particles (77-83% moisture content) were conditioned in acidified solution at 5, 15 and 25°C, absence of light, and evaluated for anthocyanins and color for 50-days. The median diameter (D) of the particles ranged from 78 to 1100μm and encapsulation efficiency ranged from 67.9 to 93.9%. The encapsulation caused higher temperature stability compared with the free extract. The half-life (t) values of the particles ranged from 7 (25°C) to 180days (5°C) for anthocyanins and from 25 (25°C) to 462days (5°C) for Chroma value. The IG increased the stability of HE anthocyanin. Both the dripping-extrusion and the atomization have shown to be feasible techniques.

摘要

芙蓉花提取物(HE)具有很强的抗氧化活性和高花青素含量;它可用作天然色素,同时还具有潜在的健康益处。本工作的目的是通过离子凝胶化(IG)对 HE 花青素进行微胶囊化,使用两种技术:滴落-挤出和雾化,均通过双重乳液(HE/油菜籽油/果胶)和交联溶液(CaCl)进行。颗粒(77-83%含水量)在 5、15 和 25°C 的酸化溶液中调节,避光,并在 50 天内评估花青素和颜色。颗粒的中值粒径(D)范围为 78 至 1100μm,包封效率范围为 67.9 至 93.9%。与游离提取物相比,包封导致更高的温度稳定性。颗粒的花青素半衰期(t)值范围为 7(25°C)至 180 天(5°C),色值范围为 25(25°C)至 462 天(5°C)。IG 增加了 HE 花青素的稳定性。滴落-挤出和雾化都显示出可行的技术。

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