CYP 2E1 mutant mice are resistant to DDC-induced enhancement of MPTP toxicity.

C Viaggi, F Vaglini, C Pardini, P Sgadò, A Caramelli, G U Corsini
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引用次数: 5

Abstract

In order to reach a deeper insight into the mechanism of diethyldithiocarbamate (DDC)-induced enhancement of MPTP toxicity in mice, we showed that CYP450 (2E1) inhibitors, such as diallyl sulfide (DAS) or phenylethylisothiocyanate (PIC), also potentiate the selective DA neuron degeneration in C57/bl mice. Furthermore we showed that CYP 2E1 is present in the brain and in the basal ganglia of mice (Vaglini et al., 2004). However, because DAS and PIC are not selective CYP 2E1 inhibitors and in order to provide direct evidence for CYP 2E1 involvement in the enhancement of MPTP toxicity, CYP 2E1 knockout mice (GONZ) and wild type animals (SVI) of the same genetic background were treated with MPTP or the combined DDC + MPTP treatment. In CYP 2E1 knockout mice, DDC pretreatment completely fails to enhance MPTP toxicity, although enhancement of MPTP toxicity was regularly present in the SVI control animals. The immunohistochemical study confirms our results and suggests that CYP 2E1 may have a detoxifying role.

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CYP 2E1突变小鼠对ddc诱导的MPTP毒性增强具有抗性。
为了更深入地了解二乙基二硫代氨基甲酸酯(DDC)诱导小鼠MPTP毒性增强的机制,我们发现CYP450 (2E1)抑制剂,如二烯丙基硫化物(DAS)或苯乙基异硫氰酸酯(PIC),也会增强C57/bl小鼠的选择性DA神经元变性。此外,我们发现CYP 2E1存在于小鼠的大脑和基底神经节中(Vaglini et al., 2004)。然而,由于DAS和PIC不是选择性的CYP 2E1抑制剂,并且为了提供CYP 2E1参与MPTP毒性增强的直接证据,我们用MPTP或DDC + MPTP联合治疗具有相同遗传背景的CYP 2E1敲除小鼠(GONZ)和野生型动物(SVI)。在CYP 2E1敲除小鼠中,DDC预处理完全不能增强MPTP毒性,尽管在SVI对照动物中MPTP毒性有规律地增强。免疫组化研究证实了我们的结果,并提示CYP 2E1可能具有解毒作用。
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