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急性三甲基锡暴露诱导的线粒体生物合成的脑区和性别特异性变化

Brain Region and Sex-specific Changes in Mitochondrial Biogenesis Induced by Acute Trimethyltin Exposure.

作者信息

Lee Jung Ho, Jang Eun Hye, Kim Soon Ae

机构信息

Department of Pharmacology, School of Medicine, Eulji University, Daejeon, Korea.

出版信息

Clin Psychopharmacol Neurosci. 2022 Aug 31;20(3):474-481. doi: 10.9758/cpn.2022.20.3.474.

Abstract

OBJECTIVE

In this study, we investigated sex- and region-specific effects of acute trimethyltin (TMT) exposure on mitochondrial biogenesis.

METHODS

We treated TMT to primary neuronal cultures and 4-week-old male and female mice. We measured the mitochondrial DNA copy numbers using the quantitative polymerase chain reaction method. We also measured mitochondrial biogenesis related genes (sirtuin-1, estrogen-related receptor alpha, cytochrome C oxidase subunit IV) by western blotting.

RESULTS

The mitochondrial DNA copy number increased in the primary hippocampal neuron; however, it decreased in the primary cortical neuron. The mitochondrial copy number increased in the hippocampus and decreased in the cortex in the TMT treated female mice, though the mitochondrial copy number increased in both cortex and hippocampus in the TMT treated male mice. TMT treatment increased sirtuin-1 expression in the male hippocampus but did not in the female brain. In the female brain, estrogen-related receptor alpha expression decreased in the cortex though there is no significant change in the male brain. The protein level of mitochondrial protein, cytochrome C oxidase subunit IV, increased in both cortex and hippocampus after TMT injection in male mice brain, but not in female mice brain.

CONCLUSION

Our data suggest that acute TMT exposure induces distinct sex-specific metabolic characteristics in the brain before significant sexual maturation.

摘要

目的

在本研究中,我们调查了急性三甲基锡(TMT)暴露对线粒体生物合成的性别和区域特异性影响。

方法

我们将TMT处理原代神经元培养物以及4周龄的雄性和雌性小鼠。我们使用定量聚合酶链反应方法测量线粒体DNA拷贝数。我们还通过蛋白质印迹法测量线粒体生物合成相关基因(沉默调节蛋白-1、雌激素相关受体α、细胞色素C氧化酶亚基IV)。

结果

原代海马神经元中线粒体DNA拷贝数增加;然而,原代皮质神经元中线粒体DNA拷贝数减少。在TMT处理的雌性小鼠中,海马体中线粒体拷贝数增加而皮质中减少,而在TMT处理的雄性小鼠中,皮质和海马体中的线粒体拷贝数均增加。TMT处理增加了雄性海马体中沉默调节蛋白-1的表达,但在雌性大脑中未增加。在雌性大脑中,皮质中雌激素相关受体α的表达降低,而在雄性大脑中没有显著变化。在雄性小鼠大脑中注射TMT后,皮质和海马体中线粒体蛋白细胞色素C氧化酶亚基IV的蛋白水平均升高,但在雌性小鼠大脑中未升高。

结论

我们的数据表明,急性TMT暴露在显著的性成熟之前会在大脑中诱导出明显的性别特异性代谢特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd80/9329116/221d6a8b97b1/cpn-20-3-474-f1.jpg

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