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橙色果肉甘薯泥-小麦面包的淀粉消化率和β-胡萝卜素生物可利用性。

Starch digestibility and β-carotene bioaccessibility in the orange- fleshed sweet potato puree-wheat bread.

机构信息

Food and Nutritional Evaluation Laboratory, Biosciences for East and Central Africa at International Livestock Research Institute (ILRI), International Potato Center (CIP) Sub-Saharan Africa Regional Office, P. O. Box 25171, Nairobi, Kenya.

Department of Dairy and Food Science, South Dakota State University, Brookings, SD, 57007.

出版信息

J Food Sci. 2021 Mar;86(3):901-906. doi: 10.1111/1750-3841.15620. Epub 2021 Feb 10.

Abstract

Vitamin A is essential for vision, human health, growth, immune function, and reproduction. Its deficiency leads to anemia, xerophthalmia, and growth reduction in children. Foods enriched with naturally occurring carotenes have the potential, in this regard, and orange-fleshed sweet potato (OFSP) stands out tall as it is rich in β-carotene (βC), a provitamin A carotenoid. In view of developing OFSP-based functional foods to address the vitamin A deficiency (VAD) issues, herein, OFSP puree-wheat composite breads have been prepared at 10% to 50% OFSP puree concentrations and bioaccessibility of βC has been estimated. The total βC is found to be 4.3, 9.2, 16.5, 23.3, and 33.6 µg/g in 10, 20, 30, 40, and 50% OFSP bread, respectively. The corresponding calculated retinol activity equivalents (RAE) are 30.9, 66.4, 119.5, 170.4, and 246.2 RAE/100 g. The efficiency of micellarization of all-trans-βC, 13-cis βC, and 9-cis βC after simulated oral, gastric, and small intestinal digestion are 1.4% to 6.4%, 1.4% to 7.2%, and 1.1% to 6.9%, respectively. The amount of micellarized βC correlates linearly with the OFSP concentration in the bread. Furthermore, in vitro starch digestion decreases with significant reduction in the Rapidly Digestible Starch (RDS) amount coupled with increase in the Slowly Digestible Starch (SDS) and Resistant Starch (RS) fractions. Overall, OFSP-wheat composite bread holds adequate amount of provitamin A carotenoids. The amount of bioaccessible βC coupled with altered starch digestion of the OFSP wheat breads highlight their usefulness as novel functional foods that could address the VAD as well as glycemic issues toward improving human health.

摘要

维生素 A 对视力、人类健康、生长、免疫功能和生殖至关重要。其缺乏会导致儿童贫血、干眼病和生长迟缓。富含天然类胡萝卜素的食物在这方面具有潜力,而橙色果肉的甘薯(OFSP)尤为突出,因为它富含β-胡萝卜素(βC),一种维生素 A 前体类胡萝卜素。鉴于开发基于 OFSP 的功能性食品以解决维生素 A 缺乏症(VAD)问题,本文制备了 10%至 50%OFSP 泥浓度的 OFSP 泥-小麦复合面包,并估计了 βC 的生物利用度。在 10%、20%、30%、40%和 50%OFSP 面包中,总βC 分别为 4.3、9.2、16.5、23.3 和 33.6μg/g。相应计算的视黄醇活性当量(RAE)分别为 30.9、66.4、119.5、170.4 和 246.2 RAE/100g。经模拟口服、胃和小肠消化后,全反式-βC、13-顺式-βC 和 9-顺式-βC 的胶束化效率分别为 1.4%至 6.4%、1.4%至 7.2%和 1.1%至 6.9%。胶束化的βC 量与面包中 OFSP 的浓度呈线性相关。此外,体外淀粉消化随着快速消化淀粉(RDS)量的显著减少以及缓慢消化淀粉(SDS)和抗性淀粉(RS)分数的增加而减少。总体而言,OFSP-小麦复合面包含有足够量的维生素 A 前体类胡萝卜素。生物可利用的βC 量以及 OFSP 小麦面包中淀粉消化的改变突出了它们作为新型功能性食品的有用性,这些食品可以解决维生素 A 缺乏症以及血糖问题,从而改善人类健康。

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