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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Effect of aluminum on acetyl-CoA and acetylcholine metabolism in nerve terminals.
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Effect of aluminum on acetyl-CoA and acetylcholine metabolism in nerve terminals.

机译:铝对神经末梢乙酰辅酶A和乙酰胆碱代谢的影响。

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The potential ability of Al to affect cholinergic transmission was studied on synaptosomal fractions of rat brain incubated with pyruvate in depolarizing medium containing 30 mM K+. Addition of 1 mM Ca caused a 266% increase in the acetylcholine (ACh) release despite decreased pyruvate oxidation. Under these conditions, 0.25 mM Al did not affect pyruvate oxidation but raised mitochondrial and decreased synaptoplasmic acetyl-CoA. Simultaneously, a 61% inhibition of Ca-evoked ACh release was observed. Verapamil (0.1 and 0.5 mM) decreased the acetyl-CoA concentration in synaptoplasm and inhibited ACh release. Al (0.012 mM) partially reversed these inhibitory effects. Omission of Pi from the medium abolished suppressive effects of Al on acetyl-CoA content and Ca-evoked transmitter release. We conclude that the Al(PO4)OH- complex may be the active form of Al, which, by interaction with the verapamil binding sites of Ca channels, is likely to restrict the Ca influx to the synaptoplasm. This may inhibit the provision of acetyl-CoA to the synaptoplasm as well as the Ca-evoked ACh release. One may suppose that excessive accumulation of Al in some encephalopathic brains may, by this mechanism, suppress still-surviving cholinergic neurons and exacerbate cognitive deficits caused by already-existing structural losses in the cholinergic system.
机译:在含有30 mM K +的去极化培养基中,用丙酮酸孵育大鼠大脑的突触部分,研究了Al影响胆碱能传递的潜在能力。尽管丙酮酸氧化减少,但添加1 mM Ca会导致乙酰胆碱(ACh)释放增加266%。在这些条件下,0.25 mM Al不会影响丙酮酸的氧化,但会增加线粒体的含量并降低突触质的乙酰辅酶A。同时,观察到61%的Ca诱发的ACh释放抑制。维拉帕米(0.1和0.5 mM)降低突触质中乙酰辅酶A的浓度并抑制乙酰胆碱的释放。 Al(0.012 mM)部分逆转了这些抑制作用。从培养基中省略Pi消除了Al对乙酰辅酶A含量和Ca引起的递质释放的抑制作用。我们得出的结论是,Al(PO4)OH-络合物可能是Al的活性形式,它通过与Ca通道的维拉帕米结合位点相互作用,可能会限制Ca流入突触质。这可能会抑制向突触质提供乙酰辅酶A以及Ca诱发的ACh释放。一个人可能会认为,通过这种机制,在一些脑病性大脑中过量积累的Al可能会抑制仍然存活的胆碱能神经元,并加剧由胆碱能系统中已经存在的结构性丧失引起的认知缺陷。

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