首页> 外文期刊>Bulletin of experimental biology and medicine >Dynamics of activity of monoamine oxidase B and antioxidant defense enzymes in human brain during postnatal ontogeny.
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Dynamics of activity of monoamine oxidase B and antioxidant defense enzymes in human brain during postnatal ontogeny.

机译:产后生植物中人脑中单胺氧化酶B和抗氧化酶活性的动态。

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摘要

During postnatal development, activity of monoamine oxidase B in human brain structures increases, while activity of Cu,Zn-dependent SOD decreases with compensatory increase in catalase activity and ceruloplasmin content. Under these conditions, the resistance of the pontobulbar structures and thalamus to oxidative stress decreases at the age of 1-12 years and returned to the prenatal level during adolescence. The increase in catalase activity is most pronounced in structures of the forebrain (cortex and neostriatum), cerebellum, and hypothalamus; it is accompanied by ontogenetic increase in oxidative stress resistance, which is maximum at the age of 12-21 years. The maintenance of resistance to oxidative stress (depends on monoamine oxidase B) can be considered as an important condition of structural and functional maturation of cerebral structures during the postnatal ontogeny.
机译:在产后开发期间,人脑结构中单胺氧化酶B的活性增加,而Cu的活性,Zn依赖性SOD的活性降低了过氧化氢酶活性和刺激素含量的补偿性增加。 在这些条件下,Pontobulbar Brations和Thalamus的抗性在1-12岁的年龄下降,并在青春期恢复到产前水平。 过氧化氢酶活性的增加在前脑(皮质和新发脉),小脑和下丘脑的结构中最为明显; 它伴随着氧化胁迫性抗性的植入增加,最大在12-21岁。 维持抗氧化应激的耐药性(取决于单胺氧化酶B)可以被认为是产后后生细胞期间脑结构结构和功能成熟的重要条件。

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