Oreland L, Arai Y, Stenström A
Acta Neurol Scand Suppl. 1983;95:81-5. doi: 10.1111/j.1600-0404.1983.tb01518.x.
It was found that in the rat striatum DA was oxidized extrasynaptosomally to 11% by MAO-A and to 3% by MAO-B. The corresponding intrasynaptosomal oxidations were 84% and 2%, respectively. Those figures were virtually unchanged even if the rat brain MAO-B was selectively inhibited to 87% by deprenyl. In the human brain extrasynaptosomal oxidation was 16% and 66%, respectively, by MAO-A and -B. Intrasynaptosomally the corresponding figures were 12% and 6%, respectively. Selective inhibition of human caudate MAO-B was calculated to give a total reduction of DA oxidation of 63%. The differences between man and rat are due to the proportionately greater oxidation of DA by MAO-B in man, which is a consequence of a higher ratio of concentration of MAO-A/-B in the rat.
研究发现,在大鼠纹状体中,多巴胺(DA)在突触外被单胺氧化酶A(MAO-A)氧化11%,被单胺氧化酶B(MAO-B)氧化3%。相应的突触内氧化分别为84%和2%。即使大鼠脑内MAO-B被司来吉兰选择性抑制87%,这些数据实际上也没有变化。在人类大脑中,突触外氧化分别为MAO-A氧化16%,MAO-B氧化66%。突触内相应的数据分别为12%和6%。据计算,选择性抑制人类尾状核MAO-B可使DA氧化总量降低63%。人与大鼠之间的差异是由于人类中MAO-B对DA的氧化比例相对更大,这是大鼠中MAO-A/MAO-B浓度比更高的结果。