首页> 美国卫生研究院文献>Journal of Clinical Biochemistry and Nutrition >Quantitative imaging mass spectroscopy reveals roles of heme oxygenase-2 for protecting against transhemispheric diaschisis in the brain ischemia
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Quantitative imaging mass spectroscopy reveals roles of heme oxygenase-2 for protecting against transhemispheric diaschisis in the brain ischemia

机译:定量成像质谱揭示了血红素加氧酶2在预防脑缺血中的跨半球透析中的作用

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摘要

Carbon monoxide-generating heme oxygenase-2 is expressed in neurons and plays a crucial role for regulating hypoxic vasodilation through mechanisms unlocking carbon monoxide-dependent inhibition of H2S-generating cystathionine β-synthase expressed in astrocytes. This study aims to examine whether heme oxygenase-2 plays a protective role in mice against stroke. Focal ischemia was induced by middle cerebral artery occlusion. Regional differences in metabolites among ipsilateral and contralateral hemispheres were analysed by quantitative imaging mass spectrometry equipped with an image-processing platform to optimize comparison of local metabolite contents among different animals. Under normoxia, blood flow velocity in precapillary arterioles were significantly elevated in heme oxygenase-2-null mice vs controls, while metabolic intermediates of central carbon metabolism and glutamate synthesis were elevated in the brain of heme oxygenase-2-null mice, suggesting greater metabolic demands to induce hyperemia in these mice. In response to focal ischemia, heme oxygenase-2-null mice exhibited greater regions of ischemic core that coincide with notable decreases in energy metabolism in the contralateral hemisphere as well as in penumbra. In conclusion, these findings suggest that heme oxygenase-2 is involved in mechanisms by which not only protects against compromised energy metabolism of the ipsilateral hemisphere but also ameliorates transhemispheric diaschisis of the contralateral hemisphere in ischemic brain.
机译:产生一氧化碳的血红素加氧酶-2在神经元中表达,并通过解锁一氧化碳依赖性抑制星形胶质细胞中表达的生成H2S的胱硫醚β-合酶的机制,在调节低氧血管舒张中起关键作用。这项研究旨在检查血红素加氧酶2是否在小鼠中风中起保护作用。局灶性缺血是由大脑中动脉闭塞引起的。通过配备有图像处理平台的定量成像质谱法分析同侧和对侧半球之间代谢物的区域差异,以优化不同动物之间局部代谢物含量的比较。在常氧状态下,血红素加氧酶2无效小鼠的毛细血管前毛细血管中的血流速度显着升高,而血红素加氧酶2无效的小鼠大脑中中央碳代谢和谷氨酸合成的代谢中间产物升高,表明新陈代谢更高需要诱导这些小鼠充血。响应于局部缺血,血红素加氧酶-2-无效的小鼠表现出更大的缺血核心区域,这与对侧半球以及半影中能量代谢的显着下降相吻合。总之,这些发现表明,血红素加氧酶-2不仅参与防止同侧半球能量代谢受损的机制,而且还改善了缺血性脑对侧半球的跨半球透析障碍。

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