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氨基酸螯合硒(Selenium Amino Acid Chelate)生理学功能特性

收录事件:2024-11-18 19:23

硒是一种种非材料属性,核心以硒酸盐、亚硒酸盐、单质硒和硒化物等的形式存在的于当然界  ,是多个酶的活力位点,也是分为硒球核蛋白的工业原料最为 。在加快鱼类有哪些植物的生长、提升 抗体力和呵护好体血受损神经元质免被脱色物受损等因素存在为比较重要用途 。硒是谷胱甘肽过脱色物物酶(GSH-Px)的为比较重要组合成部件  ,蛋白质等等螯合硒(Selenium Amino Acid Chelate)还会提升 生物休内 GSH-Px 的活力 。该酶就能催化反响展现型谷胱甘肽(GSH)与过脱色物物反响  ,将造成危害性的过脱色物物如过脱色物氢、脂质过脱色物物等展现为不存在害处的羟基化学物质  ,最后呵护好体血受损神经元使用暴力脱色物受损  。于此  ,蛋白质等等螯合硒(Selenium Amino Acid Chelate)还能减弱另一个抗脱色物酶的活力  ,各自能维持体血受损神经元内脱色物展现不平衡量  ,影响政治权利基的会产生  ,影响脱色物应激状态对防御反应的危害性 。加快抗体体血受损神经元的绘制和活力  ,于此  ,它还会转换抗体相应的dna组遗传的抒发  ,如体血受损神经元要素、抗体球球核蛋白dna组遗传等 。采用转换这个dna组遗传的抒发  ,蛋白质等等螯合硒(Selenium Amino Acid Chelate)就能加快抗体体血受损神经元的胸部发育合成熟  ,减弱防御反应的抗体初次应答功能 。

安基酸螯合硒(Selenium Amino Acid Chelate)身体学功能性的特点

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抗坏血酸镁Magnesium Ascorbate 、抗坏血酸锌Magnesium Ascorbate、牛磺酸镁Magnesium Taurate、氨基螯合锌Zinc Amino Acids Chelate 、核苷酸螯合镁Magnesium Amino Acids Chelate、乳清酸镁Magnesium Orotate、乳清酸钙Calcium Orotate、虎珀酸钙Calcium Succinate、虎珀酸镁 Magnesium Succinate 、抗坏血酸锂 Lithium Ascorbate.

Physiological and functional properties of Selenium amino acid chelate

Selenium is a non-metallic element, mainly in the form of selenate, selenite, elemental selenium and selenide in nature, is the active site of a variety of enzymes, and is also one of the raw materials constituting selenoprotein. It plays an important role in promoting fish growth, improving immunity and protecting cell membranes from oxidative damage. Selenium is an important component of glutathione peroxidase (GSH-Px), and Selenium amino acid chelate can increase the activity of GSH-Px in animals. The enzyme catalyzes the reaction of reduced glutathione (GSH) with peroxides, reducing harmful peroxides such as hydrogen peroxide and lipid peroxides to harmless hydroxyl compounds, thereby protecting cells from oxidative damage. In addition, Selenium Amino Acid Chelate can also enhance the activity of other antioxidant enzymes, jointly maintain intracellular redox balance, reduce the production of free radicals, and reduce the damage of oxidative stress to the body. It promotes the production and activity of immune cells, in addition, it can regulate the expression of immune-related genes, such as cytokines, immunoglobulin genes, etc. By regulating the expression of these genes, Selenium Amino Acid Chelate can promote the development and maturation of immune cells and enhance the body's immune response.

Physiological and functional properties of Selenium amino acid chelate

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