Upadhaya Santi Devi, Kim In Ho
Department of Animal Resource and Science, Dankook University, Cheonan 31116, Korea.
Asian-Australas J Anim Sci. 2020 Dec;33(12):1885-1895. doi: 10.5713/ajas.19.0945. Epub 2020 Mar 12.
Vitamins and minerals categorized as micronutrients are the essential components of animal feed for maintaining health and improving immunity. Micronutrients are important bioactive molecules and cofactors of enzymes as well. Besides being cofactors for enzymes, some vitamins such as the fat-soluble vitamins, vitamin A and D have been shown to exhibit hormone-like functions. Although they are required in small amount, they play an influential role in the proper functioning of a number of enzymes which are involved in many metabolic, biochemical and physiological processes that contribute to growth, production and health. Micronutrients can potentially have a positive impact on bone health, preventing bone loss and fractures, decreasing bone resorption and increasing bone formation. Thus, micronutrients must be provided to livestock in optimal concentrations and according to requirements that change during the rapid growth and development of the animal and the production cycle. The supply of nutrients to the animal body not only depends on the amount of the nutrient in a food, but also on its bioavailability. The bioavailability of these micronutrients is affected by several factors. Therefore, several technologies such as nanoparticle, encapsulation, and chelation have been developed to improve the bioavailability of micronutrients associated with bone health. The intention of this review is to provide an updated overview of the importance of micronutrients on bone health and methods applied to improve their bioavailability.
被归类为微量营养素的维生素和矿物质是动物饲料中维持健康和提高免疫力的必需成分。微量营养素也是重要的生物活性分子和酶的辅助因子。除了作为酶的辅助因子外,一些维生素,如脂溶性维生素A和D,已被证明具有类似激素的功能。尽管它们的需求量很小,但它们在许多参与生长、生产和健康的代谢、生化和生理过程的酶的正常功能中发挥着重要作用。微量营养素可能对骨骼健康产生积极影响,预防骨质流失和骨折,减少骨吸收并增加骨形成。因此,必须以最佳浓度并根据动物快速生长发育和生产周期中变化的需求向家畜提供微量营养素。向动物体内提供营养不仅取决于食物中营养素的含量,还取决于其生物利用率。这些微量营养素的生物利用率受到多种因素的影响。因此,已经开发了几种技术,如纳米颗粒、包封和螯合,以提高与骨骼健康相关的微量营养素的生物利用率。本综述的目的是提供关于微量营养素对骨骼健康重要性的最新概述以及用于提高其生物利用率的方法。