Faculty of Medicine, Medical University of Lublin, 20-093 Lublin, Poland.
Department of Pathobiochemistry and Interdyscyplinary Applications of Ion Chromatography, Faculty of Biomedicine, Medical University of Lublin, 20-093 Lublin, Poland.
Nutrients. 2024 May 14;16(10):1481. doi: 10.3390/nu16101481.
With a burgeoning global population, meeting the demand for increased food production presents challenges, particularly concerning mineral deficiencies in diets. Micronutrient shortages like iron, iodine, zinc, selenium, and magnesium carry severe health implications, especially in developing nations. Biofortification of plants and plant products emerges as a promising remedy to enhance micronutrient levels in food. Utilizing agronomic biofortification, conventional plant breeding, and genetic engineering yields raw materials with heightened micronutrient contents and improved bioavailability. A similar strategy extends to animal-derived foods by fortifying eggs, meat, and dairy products with micronutrients. Employing "dual" biofortification, utilizing previously enriched plant materials as a micronutrient source for livestock, proves an innovative solution. Amid biofortification research, conducting in vitro and in vivo experiments is essential to assess the bioactivity of micronutrients from enriched materials, emphasizing digestibility, bioavailability, and safety. Mineral deficiencies in human diets present a significant health challenge. Biofortification of plants and animal products emerges as a promising approach to alleviate micronutrient deficiencies, necessitating further research into the utilization of biofortified raw materials in the human diet, with a focus on bioavailability, digestibility, and safety.
随着全球人口的不断增长,满足人们对增加粮食产量的需求带来了挑战,特别是在饮食中存在矿物质缺乏的问题。缺铁、碘、锌、硒和镁等微量元素的短缺会对健康造成严重影响,尤其是在发展中国家。通过生物强化植物和植物产品是提高食物中微量营养素水平的一种有前途的方法。利用农业生物强化、常规植物育种和基因工程,可以生产出具有更高微量营养素含量和改善生物利用度的原材料。类似的策略也可以通过向鸡蛋、肉类和乳制品中添加微量营养素来强化动物源性食品。采用“双重”生物强化,利用以前富集的植物材料作为牲畜的微量营养素来源,是一种创新的解决方案。在生物强化研究中,进行体外和体内实验对于评估富集材料中微量营养素的生物活性至关重要,这强调了可消化性、生物利用度和安全性。人类饮食中的矿物质缺乏是一个重大的健康挑战。生物强化植物和动物产品是缓解微量营养素缺乏的一种有前途的方法,因此需要进一步研究在人类饮食中利用生物强化原材料,重点关注生物利用度、可消化性和安全性。