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长期用高浓度氯化锰处理的大鼠的神经化学变化。

Neurochemical changes in rats chronically treated with a high concentration of manganese chloride.

作者信息

Lai J C, Chan A W, Leung T K, Minski M J, Lim L

机构信息

Department of Biochemistry, Cornell University Medical College, New York, NY 10021.

出版信息

Neurochem Res. 1992 Sep;17(9):841-7. doi: 10.1007/BF00993259.

Abstract

Several neurochemical parameters were studied in brain regions of rats chronically treated with a high concentration of manganese chloride (20 mg MnCl2.4H2O per ml. of drinking water) throughout development until adulthood. Large increases in Mn accumulation were found in all brain regions (hypothalamus, +530%; striatum, +479%; other regions, +152 to +250%) of Mn-treated adult rats. In these animals, Ca levels were decreased (-20 to -46%) in cerebellum, hypothalamus, and cerebral cortex but were increased (+186%) in midbrain. Mg levels were decreased (-12 to -32%) in pons and medulla, midbrain, and cerebellum. Fe levels were increased (+95%) in striatum but were decreased (-28%) in cerebral cortex. Cu levels were increased (+43 to +100%) in pons and medulla and striatum but Zn levels were decreased (-30%) in pons and medulla. Na levels were increased (+22%) in striatum but those of K and Cl remained unchanged. Type A monoamine oxidase activities were decreased (-13 to -16%) in midbrain, striatum, and cerebral cortex, but type B monoamine oxidase activities decreased (-13%) only in hypothalamus. Acetylcholinesterase activities were increased (+20 to +22%) in striatum and cerebellum. The results are consistent with our hypothesis that chronic manganese encephalopathy not only affects brain metabolism of Mn but also that of other metals.

摘要

在整个发育过程直至成年期,用高浓度氯化锰(每毫升饮用水含20毫克MnCl₂·4H₂O)长期处理大鼠的脑区,研究了几个神经化学参数。在经锰处理的成年大鼠的所有脑区(下丘脑,增加530%;纹状体,增加479%;其他区域,增加152%至250%)中发现锰积累大幅增加。在这些动物中,小脑、下丘脑和大脑皮层中的钙水平降低(-20%至-46%),但中脑中的钙水平升高(+186%)。脑桥、延髓、中脑和小脑中的镁水平降低(-12%至-32%)。纹状体中的铁水平升高(+95%),但大脑皮层中的铁水平降低(-28%)。脑桥、延髓和纹状体中的铜水平升高(+43%至+100%),但脑桥和延髓中的锌水平降低(-30%)。纹状体中的钠水平升高(+22%),但钾和氯的水平保持不变。中脑、纹状体和大脑皮层中的A型单胺氧化酶活性降低(-13%至-16%),但B型单胺氧化酶活性仅在下丘脑中降低(-13%)。纹状体和小脑中的乙酰胆碱酯酶活性升高(+20%至+22%)。这些结果与我们的假设一致,即慢性锰脑病不仅影响锰的脑代谢,还影响其他金属的脑代谢。

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