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Iron-biofortified staple food crops for improving iron status: a review of the current evidence

机译:用铁生物强化的主粮作物改善铁状况:当前证据的回顾

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摘要

class="head no_bottom_margin" id="abs0015title">AbstractIron deficiency is the most common micronutrient deficiency globally and represents a major threat to public health. Biofortification, the process of enhancing micronutrient content and bioavailability in staple crops, represents an exciting sustainable food-based strategy to combat and prevent iron deficiency, particularly in resource-limited settings. In this review, we examine the evidence to date of the efficacy of iron-biofortified staple food crops on improving iron status in at-risk populations, including rice, pearl millet, and beans. Three randomized efficacy trials of iron biofortified interventions were included in this analysis, conducted in the Philippines, India, and Rwanda. Iron status (hemoglobin, serum ferritin, soluble transferrin receptor (sTfR), C-reactive protein, alpha-1 acid glycoprotein) was measured at enrollment, midline, and endline in each trial. The primary outcomes evaluated included hemoglobin, serum ferritin, sTfR, and total body iron. A meta-analysis using random effects models was conducted to examine the effects of interventions on hematological outcomes, with the DerSimonian and Laird method. In meta-analyses of data from the three trials, iron-biofortified interventions significantly increased serum ferritin concentrations and total body iron. Evidence to date from randomized trials suggest that iron-biofortified crops are an efficacious intervention to improve iron status. In particular, findings from all three trials also indicate that the effects of biofortified staple crops were highest among individuals who were iron deficient at baseline, suggesting the greatest potential to benefit. Assessment of functional outcomes and consideration of other high-risk populations such as young children, are warranted to elucidate the impact of iron-biofortified interventions on human health.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ head no_bottom_margin” id =“ abs0015title”>摘要铁缺乏症是全球最常见的微量营养素缺乏症,对公共健康构成重大威胁。生物强化是提高主食作物微量营养素含量和生物利用度的过程,代表了一种令人兴奋的,可持续的,以食物为基础的战略,用以防治和预防铁缺乏,特别是在资源有限的环境中。在这篇综述中,我们研究了迄今为止铁-生物强化主食作物对改善高风险人群(包括水稻,珍珠粟和豆类)铁状态的功效的证据。该分析包括在菲律宾,印度和卢旺达进行的三项铁强化生物干预的随机疗效试验。在每个试验的入组,中线和终点,均测量铁状态(血红蛋白,血清铁蛋白,可溶性转铁蛋白受体(sTfR),C反应蛋白,α-1酸性糖蛋白)。评估的主要结果包括血红蛋白,血清铁蛋白,sTfR和全身铁。使用DerSimonian和Laird方法,使用随机效应模型进行荟萃分析,以检查干预措施对血液学结果的影响。在对这三项试验数据的荟萃分析中,铁强化生物干预显着增加了血清铁蛋白浓度和体内总铁。迄今为止,来自随机试验的证据表明,铁强化生物作物是改善铁状况的有效干预措施。特别是,所有这三个试验的结果还表明,在基线铁缺乏的个体中,生物强化主粮的影响最高,表明受益的最大潜力。必须评估功能结局并考虑其他高风险人群(如幼儿),以阐明铁强化生物干预对人类健康的影响。

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