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首页> 外文期刊>Journal of Neuroscience Methods >Mannitol-facilitated perfusion staining with 2,3,5-triphenyltetrazolium chloride (TTC) for detection of experimental cerebral infarction and biochemical analysis.
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Mannitol-facilitated perfusion staining with 2,3,5-triphenyltetrazolium chloride (TTC) for detection of experimental cerebral infarction and biochemical analysis.

机译:甘露醇促进的2,3,5-三苯四唑氯化物(TTC)染色用于实验性脑梗死的检测和生化分析。

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摘要

A simple method to quantify cerebral infarction has great value for mechanistic and therapeutic studies in experimental stroke research. Immersion staining of unfixed brain slices with 2,3,5-triphenyltetrazolium chloride (TTC) is a popular method to determine cerebral infarction in preclinical studies. However, it is often difficult to apply immersion TTC-labeling to severely injured or soft newborn brains in rodents. Here we report an in vivo TTC perfusion-labeling method based on osmotic opening of blood-brain-barrier with mannitol-pretreatment. This new method delineates cortical infarction correlated with the boundary of morphological cell injury, differentiates the induction or subcellular redistribution of apoptosis-related factors between viable and damaged areas, and easily determines the size of cerebral infarction in both adult and newborn mice. Using this method, we confirmed that administration of lipopolysaccharide 72 h before hypoxia-ischemia increases the damage in neonatal mouse brains, in contrast to its effect of protective preconditioning in adults. These results demonstrate a fast and inexpensive method that simplifies the task of quantifying cerebral infarction in small or severely injured brains and assists biochemical analysis of experimental cerebral ischemia.
机译:一种简单的定量脑梗死的方法,对于实验性卒中研究的机制和治疗研究具有重要的价值。在临床前研究中,用2,3,5-三苯基四唑氯化物(TTC)对未固定的脑切片进行浸没染色是一种确定脑梗塞的常用方法。但是,通常很难将浸泡式TTC标记应用于啮齿动物中严重受伤或柔软的新生大脑。在这里,我们报告基于体内的血脑屏障与甘露醇预处理渗透打开的体内TTC灌注标记方法。该新方法描绘了与形态细胞损伤边界相关的皮质梗塞,区分了存活和受损区域之间凋亡相关因子的诱导或亚细胞再分布,并容易确定了成年和新生小鼠的脑梗塞大小。使用这种方法,我们证实了缺氧缺血前72小时给予脂多糖会增加新生鼠脑的损伤,与其在成人中进行保护性预处理的作用相反。这些结果证明了一种快速且廉价的方法,该方法简化了量化小型或严重受伤的大脑中的脑梗死的任务,并有助于实验性脑缺血的生化分析。

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