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Dynamic aspects of ascorbic acid metabolism in the circulation: analysis by ascorbate oxidase with a prolonged in vivo half-life

机译:循环中抗坏血酸代谢的动态方面:通过抗坏血酸氧化酶进行分析,体内半衰期延长

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pBecause AA (L-ascorbic acid) scavenges various types of free radicals to form MDAA (monodehydroascorbic acid) and DAA (dehydroascorbic acid), its regeneration from the oxidized metabolites is critically important for humans and other animals that lack the ability to synthesize this antioxidant. To study the dynamic aspects of AA metabolism in the circulation, a long acting AOase (ascorbate oxidase) derivative was synthesized by covalently linking PEG [poly(ethylene glycol)] to the enzyme. Fairly low concentrations of the modified enzyme (PEG–AOase) rapidly decreased AA levels in isolated fresh plasma and blood samples with a concomitant increase in their levels of MDAA and DAA. In contrast, relatively high doses of PEG–AOase were required to decrease the circulating plasma AA levels of both normal rats and ODS (osteogenic disorder Shionogi) rats that lack the ability to synthesize AA. Administration of 50 units of PEG–AOase/kg of body weight rapidly decreased AA levels in plasma and the kidney without affecting the levels in other tissues, such as the liver, brain, lung, adrenal grand and skeletal muscles. PEG–AOase slightly, but significantly, decreased glutathione (GSH) levels in the liver without affecting those in other tissues. Suppression of hepatic synthesis of GSH by administration of BSO [L-buthionin-(iS/i,iR/i)-sulfoximine] enhanced the PEG–AOase-induced decrease in plasma AA levels. These and other results suggest that the circulating AA is reductively regenerated from MDAA extremely rapidly and that hepatic GSH plays important roles in the regeneration of this antioxidant./p
机译:>由于AA(L-抗坏血酸)清除各种类型的自由基以形成MDAA(单氢抗坏血酸)和DAA(脱氢抗坏血酸),因此从氧化代谢产物中再生对人体和其他缺乏抗氧化能力的动物至关重要。合成这种抗氧化剂。为了研究循环中AA代谢的动态方面,通过将PEG [聚(乙二醇)]与酶共价连接,合成了长效AOase(抗坏血酸氧化酶)衍生物。相当低的修饰酶(PEG-AOase)浓度会迅速降低分离的新鲜血浆和血液样品中的AA水平,并同时增加其MDAA和DAA的水平。相反,要降低正常大鼠和缺乏合成AA能力的ODS(成骨性疾病Shionogi)大鼠的循环血浆AA水平,就需要相对较高剂量的PEG-AOase。每公斤体重施用50单位PEG-AOase会迅速降低血浆和肾脏中的AA水平,而不会影响其他组织(如肝,脑,肺,肾上腺大肌和骨骼肌)的AA水平。 PEG-AOase稍微但显着地降低了肝脏中的谷胱甘肽(GSH)水平,而没有影响其他组织中的谷胱甘肽。服用BSO抑制肝脏合成GSH [L-buthionin-( S , R )-亚磺酰亚胺]增强了PEG-AOase引起的血浆AA水平下降。这些结果和其他结果表明,循环的AA极快地从MDAA还原性再生,肝脏GSH在该抗氧化剂的再生中起重要作用。

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