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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Calcium-sensitive fluorescent dyes can report increases in intracellular free zinc concentration in cultured forebrain neurons.
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Calcium-sensitive fluorescent dyes can report increases in intracellular free zinc concentration in cultured forebrain neurons.

机译:钙敏感的荧光染料可报告培养的前脑神经元细胞内游离锌浓度增加。

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High concentrations of Zn2+ are found in presynaptic terminals of excitatory neurons in the CNS. Zn2+ can be released during synaptic activity and modulate postsynaptic receptors, but little is known about the possibility that Zn2+ may enter postsynaptic cells and produce dynamic changes in the intracellular Zn2+ concentration ([Zn2+]i). We used fura-2 and magfura-2 to detect the consequences of Zn2+ influx in cultured neurons under conditions that restrict changes in intracellular Ca2+ and Mg2+ concentrations. The resulting ratio changes for both dyes were reversed completely by the Zn2+ chelator, N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine, indicating that these dyes are measuring changes in [Zn2+]i. We found that fura-2 was useful in measuring small increases in [Zn2+]i associated with exposure to Zn2+ alone that may be mediated by a Na+/Ca2+ exchanger. Magfura-2, which has a lower affinity for Zn2+, was more useful in measuring larger agonist-stimulated increases in [Zn2+]i. The coapplication of 300 microM Zn2+ and 100 microM glutamate/10 microM glycine resulted in a [Zn2+]i increase that was approximately 40-100 nM in magnitude and could be inhibited by the NMDA receptor antagonist, MK-801 (30 microM), or extracellular Na+. This suggests that Zn2+ influx can occur through at least two different pathways, leading to varying increases in [Zn2+]i. These findings demonstrate the feasibility of measuring changes in [Zn2+]i in neurons.
机译:在中枢神经系统的兴奋性神经元的突触前末端发现高浓度的Zn2 +。 Zn2 +可以在突触活动期间释放并调节突触后受体,但对Zn2 +进入突触后细胞并在细胞内Zn2 +浓度([Zn2 +] i)中产生动态变化的可能性知之甚少。我们使用fura-2和magfura-2在限制细胞内Ca2 +和Mg2 +浓度变化的条件下检测培养的神经元中Zn2 +流入的后果。 Zn2 +螯合剂N,N,N',N'-四(2-吡啶基甲基)乙二胺可完全逆转两种染料的比率变化,表明这些染料正在测量[Zn2 +] i的变化。我们发现fura-2可用于测量与单独暴露于Zn2 +可能由Na + / Ca2 +交换子介导的[Zn2 +] i的小幅增加。对Zn2 +具有较低亲和力的Magfura-2在测量激动剂刺激的[Zn2 +] i的增加方面更有用。 300 microM Zn2 +和100 microM谷氨酸/ 10 microM甘氨酸的共同应用导致[Zn2 +] i的增加约40-100 nM,可被NMDA受体拮抗剂MK-801(30 microM)抑制,或细胞外Na +。这表明Zn2 +流入可以通过至少两种不同的途径发生,从而导致[Zn2 +] i的增加变化。这些发现证明了测量神经元中[Zn2 +] i变化的可行性。

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