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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Insulin-like growth factor-I inhibits endogenous acetylcholine release from the rat hippocampal formation: possible involvement of GABA in mediating the effects.
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Insulin-like growth factor-I inhibits endogenous acetylcholine release from the rat hippocampal formation: possible involvement of GABA in mediating the effects.

机译:胰岛素样生长因子-I抑制内源性乙酰胆碱从大鼠海马结构中释放:GABA可能参与介导作用。

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摘要

Evidence suggests that insulin-like growth factor-I (IGF-I) plays an important role during brain development and in the maintenance of normal as well as activity-dependent functioning of the adult brain. Apart from its trophic effects, IGF-I has also been implicated in the regulation of brain neurotransmitter release thus indicating a neuromodulatory role for this growth factor in the central nervous system. Using in vitro slice preparations, we have earlier reported that IGF-I potently inhibits K(+)-evoked endogenous acetylcholine (ACh) release from the adult rat hippocampus and cortex but not from the striatum. The effects of IGF-I on hippocampal ACh release was sensitive to the Na(+) channel blocker tetrodotoxin, suggesting that IGF-I might act indirectly via the release of other transmitters/modulators. In the present study, we have characterized the possible involvement of GABA in IGF-I-mediated inhibition of ACh release and measured the effects of this growth factor on choline acetyltransferase (ChAT) activity and high-affinity choline uptake in the hippocampus of the adult rat brain. Prototypical agonists of GABA(A) and GABA(B) receptors (i.e. 10 &mgr;M muscimol and 10 &mgr;M baclofen) inhibited, whereas the antagonists of the respective receptors (i.e. 10 &mgr;M bicuculline and 10 &mgr;M phaclofen) potentiated K(+)-evoked ACh release from rat hippocampal slices. IGF-I (10 nM) inhibited K(+)- as well as veratridine-evoked ACh release from rat hippocampal slices and the effect is possibly mediated via the activation of a typical IGF-I receptor and the subsequent phosphorylation of the insulin receptor substrate-1 (IRS-1). The inhibitory effects of IGF-I on hippocampal ACh release were not additive to those of either muscimol or baclofen, but were attenuated by GABA antagonists, bicuculline and phaclofen. Additionally, in contrast to ACh release, IGF-I did not alter either the activity of the enzyme ChAT or the uptake of choline in the hippocampus.These results, taken together, indicate that IGF-I, under acute conditions, can decrease hippocampal ACh release by acting on the typical IGF-I/IRS receptor complex while having no direct effect on ChAT activity or the uptake of choline. Furthermore, the evidence that effects of IGF-I could be modulated, at least in part, by GABA antagonists suggest that the release of GABA and the activation of its receptors may possibly be involved in mediating the inhibitory effects of IGF-I on hippocampal ACh release.
机译:有证据表明,胰岛素样生长因子-I(IGF-I)在大脑发育以及成年大脑的正常以及活动依赖性功能的维持中起着重要作用。除了其营养作用外,IGF-I还涉及脑神经递质释放的调节,因此表明该生长因子在中枢神经系统中具有神经调节作用。使用体外切片制剂,我们早先已经报道过,IGF-I可以有效抑制成年大鼠海马和皮层而不是纹状体释放的K(+)诱发的内源性乙酰胆碱(ACh)。 IGF-1对海马ACh释放的影响对Na(+)通道阻滞剂河豚毒素敏感,这表明IGF-1可能通过释放其他递质/调节剂间接起作用。在本研究中,我们表征了GABA可能参与IGF-I介导的ACh释放抑制,并测量了该生长因子对成人海马胆碱乙酰转移酶(ChAT)活性和高亲和力胆碱摄取的影响。老鼠的大脑。 GABA(A)和GABA(B)受体的原型激动剂(即10μM麝香酚和10μM巴氯芬)被抑制,而相应受体的拮抗剂(即10μMM胆碱和10μMphaclofen)被抑制。大鼠海马切片中增强的K(+)诱发的ACh释放。 IGF-I(10 nM)抑制大鼠海马切片中K(+)-和维拉替丁诱发的ACh释放,其作用可能是通过典型IGF-I受体的活化和随后的胰岛素受体底物的磷酸化介导的-1(IRS-1)。 IGF-1对海马ACh释放的抑制作用与麝香酚或巴氯芬的抑制作用无关,但可被GABA拮抗剂,双小分子和苯氯酚减弱。此外,与ACh释放相反,IGF-I不会改变ChAT酶的活性或海马中胆碱的摄取。这些结果加在一起表明,IGF-I在急性条件下可以降低海马ACh通过作用于典型的IGF-1 / IRS受体复合物而释放,而对ChAT活性或胆碱摄取没有直接影响。此外,IGF-I的作用至少可以部分由GABA拮抗剂调节的证据表明,GABA的释放及其受体的激活可能参与介导IGF-I对海马ACh的抑制作用发布。

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