首页> 美国卫生研究院文献>Oncotarget >Isradipine attenuates MPTP-induced dopamine neuron degeneration by inhibiting up-regulation of L-type calcium channels and iron accumulation in the substantia nigra of mice
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Isradipine attenuates MPTP-induced dopamine neuron degeneration by inhibiting up-regulation of L-type calcium channels and iron accumulation in the substantia nigra of mice

机译:伊拉地平通过抑制小鼠黑质中L型钙通道的上调和铁蓄积来减轻MPTP诱导的多巴胺神经元变性

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摘要

The aim of this study is to investigate the effects of L-type calcium channels (LTCCs) on MPTP-induced dopamine (DA) neuron degeneration and iron accumulation in the substantia nigra (SN) of mice. By real-time PCR and western blots, we first quatified expressions of L-type Cav1.2 and Cav1.3 calcium channel α1 subunits in the SN of experimental mice treated with MPTP. We found that the expressions of Cav1.2 and Cav1.3 calcium channel α1 subunits markedly increased after MPTP treatment for 2 and 3 weeks. Secondly, we observed the effects of isradipine, a LTCC antagonist, on MPTP-induced DA neuron degeneration and iron accumulation in the SN. Our results showed that isradipine treatment prevented against MPTP-induced Cav1.2 and Cav1.3 calcium channel α1 subunits up-regulation in the SN. We also found that isradipine prevented against MPTP-induced DA neuron depletion in the SN and partly restored the DA content in the striatum. Moreover, we found that isradipine inhibited the increase of iron positive cells in the SN of the MPTP-treated mice. Finally, we investigated the effects of isradipine on cellular iron accumulation in the dopaminergic MES23.5 cell line. Our studies showed that MPP+ treatment accelerated iron influx in the MES23.5 cells. Treatment with Bayk8644 further aggravated iron accumulation. Treatment with isradipine prevented against MPP+-induced iron influx in the MES23.5 cells. These results suggest that up-regulation of LTCCs may be responsible for the DA neuron degeneration in the MPTP-treated mice, The LTCCs may directly contribute to iron influx into DA neurons, and isradipine may suppress cellular iron accumulation and prevents neurodegeneration.
机译:这项研究的目的是调查L型钙通道(LTCCs)对MPTP诱导的多巴胺(DA)神经元变性和黑质(SN)小鼠铁蓄积的影响。通过实时PCR和western印迹,我们首先量化了用MPTP处理的实验小鼠SN中L型Cav1.2和Cav1.3钙通道α1亚基的表达。我们发现MPTP处理2周和3周后,Cav1.2和Cav1.3钙通道α1亚基的表达明显增加。其次,我们观察到了LTCC拮抗剂伊拉地平对MPTP诱导的DA神经元变性和SN中铁蓄积的影响。我们的结果表明,伊拉地平治疗可预防SN中MPTP诱导的Cav1.2和Cav1.3钙通道α1亚基上调。我们还发现,伊拉地平可预防MPTP诱导的SN中DA神经元耗竭,并部分恢复纹状体中DA的含量。此外,我们发现伊拉地平抑制了MPTP处理的小鼠的SN中铁阳性细胞的增加。最后,我们研究了伊拉地平对多巴胺能MES23.5细胞系中细胞铁积累的影响。我们的研究表明,MPP + 处理可加速MES23.5细胞中铁的流入。用Bayk8644处理进一步加剧了铁的积累。用异拉地平治疗可防止MES23.5细胞中MPP + 诱导的铁内流。这些结果表明,LTCCs的上调可能是MPTP处理小鼠DA神经元变性的原因。LTCCs可能直接导致铁流入DA神经元,而伊拉地平则可能抑制细胞中铁的积累并防止神经退行性变。

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