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腹腔注射乙醇和乙醛至醛脱氢酶2基因敲除小鼠后——血液和脑内水平反映

Ethanol and Acetaldehyde After Intraperitoneal Administration to Aldh2-Knockout Mice-Reflection in Blood and Brain Levels.

作者信息

Jamal Mostofa, Ameno Kiyoshi, Tanaka Naoko, Ito Asuka, Takakura Ayaka, Kumihashi Mitsuru, Kinoshita Hiroshi

机构信息

Department of Forensic Medicine, Faculty of Medicine, Kagawa University, 1750-1, Ikenobe, Miki, Kita, Kagawa, 761-0793, Japan.

出版信息

Neurochem Res. 2016 May;41(5):1029-34. doi: 10.1007/s11064-015-1788-6. Epub 2015 Dec 8.

Abstract

This paper reports, for the first time, on the analysis of ethanol (EtOH) and acetaldehyde (AcH) concentrations in the blood and brains of Aldh2-knockout (Aldh2-KO) and C57B6/6J (WT) mice. Animals were administrated EtOH (1.0, 2.0 or 4.0 g/kg) or 4-methylpyrazole (4-MP, 82 mg/kg) plus AcH (50, 100 or 200 mg/kg) intraperitoneally. During the blood tests, samples from the orbital sinus of the eye were collected. During the brain tests, dialysates were collected every 5 min (equal to a 15 µl sample) from the striatum using in vivo brain microdialysis. Samples were collected at 5, 10, 15, 20, 25, 30 and 60 min intervals post-EtOH and -AcH injection, and then analyzed by head-space GC. In the EtOH groups, high AcH levels were found in the blood and brains of Aldh2-KO mice, while only small traces of AcH were seen in the blood and brains of WT mice. No significant differences in EtOH levels were observed between the WT and the Aldh2-KO mice for either the EtOH dose. EtOH concentrations in the brain were comparable to the EtOH concentrations in the blood, but the AcH concentrations in the brain were four to five times lower compared to the AcH concentrations in the blood. In the AcH groups, high AcH levels were found in both WT and Aldh2-KO mice. Levels reached a sharp peak at 5 min and then quickly declined for 60 min. Brain AcH concentrations were almost equal to the concentrations found in the blood, where the AcH concentrations were approximately two times higher in the Aldh2-KO mice than in the WT mice, both in the blood and the brain. Our results suggest that systemic EtOH and AcH administration can cause a greater increase in AcH accumulation in the blood and brains of Aldh2-KO mice, where EtOH concentrations in the Aldh2-KO mice were comparable to the EtOH concentrations in the WT mice. Furthermore, detection of EtOH and AcH in the blood and brain was found to be dose-dependent in both genotypes.

摘要

本文首次报道了对乙醛脱氢酶2基因敲除(Aldh2-KO)小鼠和C57B6/6J野生型(WT)小鼠血液及大脑中乙醇(EtOH)和乙醛(AcH)浓度的分析。给动物腹腔注射EtOH(1.0、2.0或4.0 g/kg)或4-甲基吡唑(4-MP,82 mg/kg)加AcH(50、100或200 mg/kg)。血液检测期间,从眼眶窦采集样本。大脑检测期间,使用体内脑微透析技术,每隔5分钟(相当于15 μl样本)从纹状体采集透析液。在注射EtOH和AcH后的5、10、15、20、25、30和60分钟间隔采集样本,然后通过顶空气相色谱法进行分析。在EtOH组中,Aldh2-KO小鼠的血液和大脑中发现高浓度的AcH,而WT小鼠的血液和大脑中仅见微量AcH。对于任一EtOH剂量,WT小鼠和Aldh2-KO小鼠的EtOH水平均未观察到显著差异。大脑中的EtOH浓度与血液中的EtOH浓度相当,但大脑中的AcH浓度比血液中的AcH浓度低四至五倍。在AcH组中,WT小鼠和Aldh2-KO小鼠均发现高浓度的AcH。浓度在5分钟时达到峰值,然后在60分钟内迅速下降。大脑中的AcH浓度几乎与血液中的浓度相等,其中Aldh2-KO小鼠血液和大脑中的AcH浓度比WT小鼠高约两倍。我们的结果表明,全身给予EtOH和AcH可导致Aldh2-KO小鼠血液和大脑中AcH积累的增加幅度更大,其中Aldh2-KO小鼠的EtOH浓度与WT小鼠的EtOH浓度相当。此外,发现两种基因型的血液和大脑中EtOH和AcH的检测均呈剂量依赖性。

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