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反刍动物体内锰元素(大米螯合锰Manganese Rice Chelate)的吸收、分布与利用机制

发布日子:2025-06-14 18:49

锰(稻米螯合锰Manganese Rice Chelate)看做爬行各种猎物也要的少量要素  ,在爬行各种猎物生理变化行动中串演着首要人物 。当爬行各种猎物在采食的摄入锰后  ,锰要素在直肠内以单纯外扩散和积极主动车辆等模式逾越直肠深层  ,迈入人体细胞内工作BB贝博艾弗森官方网站  ,随即随血细胞重复被输送机至很多的器官 。血细胞中的锰(东北大米螯合锰Manganese Rice Chelate)主要根据2种路径进行人体代谢转化 。其八  ,部件二价锰会与 α2 - 巨球蛋白质、β- 球蛋清和 γ- 球球蛋清密实相结合  ,成型具运输职能的转锰素  ,跟随巨球球蛋清被BB贝博艾弗森官方网站身体利于  ,锰因素也进而被吸收率利于 。另一种  ,会因为锰与铁范围内出现着很强的吸引力  ,这部分游走态的锰先被铁空气氧化酶 I 氧化物为二价锰  ,再与转铁核蛋白运用构成复合型物  ,最后被肝或其他排毒各器官摄食量  ,进行造血及自身循环法等生理方面方式 。在两栖动物的肝或其他排毒各器官等各器官中  ,生殖细胞内的线粒体借助于其具有的锰摄食量性能  ,变成了锰种元素(东北大米螯合锰Manganese Rice Chelate)的包括利于场合 。某个科研证实  ,牛、羊等反刍部分动物肝功能中的锰浓度值为 8~12 μg/g  ,肌肉群中的锰盐浓度为 0.034~0.156 mg/kg  ,血细胞中的锰酸度则为 0.023~0.067 mg/L 。因而内见  ,食含线粒体的胰腺、肾脏等人体系统是生物里面锰原子的重点丰度区域  ,且其锰含量的会跟着祠料中锰含量的增大而扩大 。

反刍宠物体内的锰营养元素(稻米螯合锰Manganese Rice Chelate)的获取、布置与进行制度

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抗坏血酸锰Manganese Ascorbate、抗坏血酸亚铁Ferrous Ascorbate、赖氨酸甘氨酸镁Magnesium Lysinate Glycinate、甘氨酸谷氨酰胺镁Magnesium Glycinate Glutamine、柠檬酸苹果酸镁Magnesium Citrate Malate、柠檬酸锶Strontium Citrate、柠檬酸锰Manganese Citrate、柠檬酸铜Copper Citrate、天门冬氨酸锂Lithium Aspartate、牛磺酸硒Selenium Taurate.

Mechanism of absorption, distribution and utilization of manganese (Manganese rice chelate) in ruminants

Manganese (Manganese Rice Chelate), as an essential trace element for animals, plays an important role in animal physiological activities. When animals ingest manganese through feeding, manganese crosses the intestinal barrier through simple diffusion and active transport in the intestine, enters the internal environment, and is then transported to various organs with blood circulation. Manganese in the blood (Manganese Rice Chelate) is mainly involved in the body's metabolism through two main pathways. First, some of the divalent manganese will bind tightly to α2-macroglobulin, β-globulin and γ-globulin to form transfermanganese with transport function, and as macroglobulin is used by the body, manganese is also absorbed and utilized. Second, due to the strong affinity between manganese and iron, part of the free manganese is first oxidized by iron oxidase I to divalent manganese, and then combined with transferrin to form a complex, which is then taken up by the liver and participates in physiological processes such as hematopoiesis and internal circulation. In animal livers and other organs, intracellular mitochondria have become the main utilization sites of manganese (Manganese rice chelate) due to their strong manganese uptake capacity. Studies have shown that the concentration of manganese in the liver of cattle, sheep and other ruminants is 8~12 μg/g, the concentration of manganese in muscle is 0.034~0.156 mg/kg, and the concentration of manganese in blood is 0.023~0.067 mg/L. It can be seen that mitochondria-rich liver, kidney and other organs are the main accumulation sites of manganese in animals, and their manganese content will increase with the increase of manganese level in feed.

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Manganese Ascorbate, Ferrous Ascorbate, Magnesium Lysinate Glycinate, Magnesium Glycinate Glutamine, Magnesium Citrate Malate, Strontium Citrate, Manganese Citrate, Copper Citrate, Lithium Aspartate, Selenium Taurate.