Improvement of Iron and β-Carotene Bioaccessibility in Complementary Foods: Biofortification of Local Crops With Organic Residual Products and Microorganisms

IF 3.5 2区 农林科学 Q2 FOOD SCIENCE & TECHNOLOGY
Mbeugué Thiam, Adama Diouf, Christèle Icard-Vernière, Sylvie Avallone, Ndèye Fatou Ndiaye, Marielle Atala De Souza, Jean-Michel Médoc, Nicole Idohou-Dossou, Christèle Humblot
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Abstract

Micronutrient deficiencies remain a great public health challenge worldwide with iron, zinc, and vitamin A being the most problematic. It has been shown that biofortification through agronomic strategies can increase their micronutrient content, but data on the bioavailability remain limited. In Senegal, consumption of cereals and legumes is high, and orange-fleshed sweet potato (OFSP), rich in β-carotene, has been introduced a decade ago. The objective of the present work was to assess the bioaccessibility of iron, zinc, and β-carotene in local complementary foods prepared with millet, cowpea, and OFSP alone or in combination, produced using different agronomic biofortification strategies. Organic residual products were used alone or in combination with microorganisms to produce the abovementioned crops that were used to prepare the complementary foods. Static in vitro digestion was performed to assess the bioaccessibility of the micronutrients, according to a harmonized protocol. The two organic residual products had different effect, as the cow dung alone was inefficient to increase iron and zinc contents as well as their bioaccessibility in millet porridges. However, the use of poultry litter alone or in combination with microorganisms increased iron bioaccessibility in cooked cowpea (27%–29%) compared to the non-biofortified counterpart (9%). Surprisingly, bioaccessible β-carotene was significantly higher (4.1%) in sample of mashed OFSP biofortified with the combination of the different agronomic strategies than in the others (1.4%–2.5%). Portions (150 g) of porridge prepared from the three biofortified crops would cover up to 100% of the daily vitamin A requirements of children aged 6–23 months. The use of a combination the most promising varieties of crops, together with the agronomic strategies, would be a complementary approach to sustainability limit micronutrient deficiencies in a context of monotonous diets.

Abstract Image

补充食品中铁和β-胡萝卜素生物可及性的改善:用有机残留产品和微生物对当地作物进行生物强化。
微量营养素缺乏仍然是世界范围内一个巨大的公共卫生挑战,其中铁、锌和维生素a是最严重的问题。研究表明,通过农艺策略进行生物强化可以增加它们的微量营养素含量,但关于生物利用度的数据仍然有限。在塞内加尔,谷物和豆类的消费量很高,而富含β-胡萝卜素的橙皮甘薯(OFSP)是十年前引进的。本研究的目的是评估铁、锌和β-胡萝卜素在当地辅食中的生物可及性,这些辅食分别由小米、豇豆和OFSP单独或组合制成,采用不同的农艺生物强化策略。有机残留产品单独使用或与微生物结合使用以生产用于制备辅食的上述作物。静态体外消化进行评估微量营养素的生物可及性,根据统一的协议。两种有机残余物的效果不同,单独添加牛粪对提高小米粥中的铁和锌含量及其生物可及性效果不显著。然而,与非生物强化豇豆相比,单独使用家禽垃圾或与微生物结合使用可提高熟豇豆铁的生物可及性(27%-29%)。令人惊讶的是,不同农艺组合强化的OFSP泥样品的生物可及性β-胡萝卜素显著高于其他样品(1.4%-2.5%)(4.1%)。由这三种生物强化作物制成的粥(150克)可以满足6-23个月大的儿童每日所需的维生素A。结合使用最有前途的作物品种,加上农艺战略,将是在单一饮食背景下可持续性限制微量营养素缺乏的补充办法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Food Science & Nutrition
Food Science & Nutrition Agricultural and Biological Sciences-Food Science
CiteScore
7.40
自引率
5.10%
发文量
434
审稿时长
24 weeks
期刊介绍: Food Science & Nutrition is the peer-reviewed journal for rapid dissemination of research in all areas of food science and nutrition. The Journal will consider submissions of quality papers describing the results of fundamental and applied research related to all aspects of human food and nutrition, as well as interdisciplinary research that spans these two fields.
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