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使用经辛烯基琥珀酸酐改性的安第斯块茎淀粉对紫色玛舒雅提取物进行微囊化处理。

Microencapsulation of Purple Mashua Extracts Using Andean Tuber Starches Modified by Octenyl Succinic Anhydride.

作者信息

Velásquez-Barreto Frank Fluker, Sánchez Carmen Eloisa Velezmoro

机构信息

Programa Doctoral de Ciencia de Alimentos, Escuela de Posgrado, Universidad Nacional Agraria La Molina, Av. La Molina s/n, La Molina, Lima 15024, Peru.

Escuela Profesional de Ingeniería Agroindustrial, Facultad de Ciencias Agrarias, Universidad Nacional Autónoma de Chota, Colpa Huacaríz, Chota, Cajamarca 06120, Peru.

出版信息

Int J Food Sci. 2022 Jan 25;2022:8133970. doi: 10.1155/2022/8133970. eCollection 2022.

Abstract

This work is aimed at optimising the spray drying conditions of the phenolic extracts of purple mashua microencapsulated with octenyl succinic anhydride (OSA) Andean tuber starches. Purple mashua extracts were obtained and spray dried using native and OSA starches of yellow oca, pink oca, and yellow olluco (140°C, 4% starch). The powders obtained were analysed by encapsulation efficiency of anthocyanin (EE), total phenol content, and antioxidant capacity to select the best starch for optimisation purposes. OSA pink oca starch was selected because the obtained powder presented the highest EE. The spray drying conditions optimised were obtained using a central composite rotatable design (CCRD) and response surface methodology. The encapsulant proportion of OSA pink oca starch (2-12%) and the inlet drying temperature (IDT, 120-160°C) were used as factors of the design. The optimised spray drying condition was 160°C IDT and 2% encapsulant; this condition maximised the EE, total phenol content, antioxidant capacity, and solubility and minimised the water activity and hygroscopicity of the powder. The OSA pink oca starch could be used as an encapsulating agent of phenolic extracts because it can produce powder with high antioxidant capacity and high EE.

摘要

这项工作旨在优化用辛烯基琥珀酸酐(OSA)安第斯块茎淀粉微囊化的紫色玛舒雅酚类提取物的喷雾干燥条件。提取紫色玛舒雅提取物,并使用黄欧卡、粉欧卡和黄奥卢科的天然淀粉和OSA淀粉进行喷雾干燥(140°C,4%淀粉)。通过花青素包封率(EE)、总酚含量和抗氧化能力对所得粉末进行分析,以选择用于优化目的的最佳淀粉。选择了OSA粉欧卡淀粉,因为所得粉末具有最高的EE。使用中心复合旋转设计(CCRD)和响应面方法获得了优化的喷雾干燥条件。将OSA粉欧卡淀粉的包封剂比例(2-12%)和进口干燥温度(IDT,120-160°C)用作设计因素。优化的喷雾干燥条件为IDT 160°C和2%包封剂;该条件使EE、总酚含量、抗氧化能力和溶解度最大化,并使粉末的水分活度和吸湿性最小化。OSA粉欧卡淀粉可用作酚类提取物的包封剂,因为它可以生产具有高抗氧化能力和高EE的粉末。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1768/8808233/fc7cb9b14afa/IJFS2022-8133970.001.jpg

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