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Enhanced Histochemical Detection of Iron in Paraffin Sections of Mouse Central Nervous System Tissue Application in the APP/PS1 Mouse Model of Alzheimer?¢????s Disease

机译:小鼠中枢神经系统组织石蜡切片中铁的增强组织化学检测在阿尔茨海默病APP / PS1小鼠模型中的应用

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Histochemical methods of detecting iron in the rodent brain result mainly in the labeling of oligodendrocytes, but as all cells utilize iron, this observation suggests that much of the iron in the central nervous system goes undetected. Paraffin embedding of tissue is a standard procedure that is used to prepare sections for microscopic analysis. In the present study, we questioned whether we could modify the iron histochemical procedure to enable a greater detection of iron in paraffin sections. Indeed, various modifications led to the widespread labeling of iron in mouse brain tissue (for instance, labeling of neurons and neuropil). Sites of focal concentrations, such as cytoplasmic punctate or nucleolar staining, were also observed. The modified procedures were applied to paraffin sections of a mouse model (APP/PS1) of Alzheimer?¢????s disease. Iron was revealed in the plaque core and rim. The plaque rim had a fibrillary or granular appearance, and it frequently contained iron-labeled cells. Further analysis indicated that the iron was tightly associated with the core of the plaque, but less so with the rim. In conclusion, modifications to the histochemical staining revealed new insights into the deposition of iron in the central nervous system. In theory, the approach should be transferrable to organs besides the brain and to other species, and the underlying principles should be incorporable into a variety of staining methods.
机译:在啮齿动物大脑中检测铁的组织化学方法主要导致少突胶质细胞的标记,但是由于所有细胞都利用铁,因此该观察结果表明中枢神经系统中的许多铁都未被发现。组织的石蜡包埋是用于准备切片以进行显微分析的标准程序。在本研究中,我们质疑我们是否可以修改铁的组织化学程序,以便能够在石蜡切片中更好地检测铁。实际上,各种修饰导致铁在小鼠脑组织中的广泛标记(例如,神经元和神经纤维的标记)。还观察到焦点集中的部位,如细胞质点状或核仁染色。将修改后的程序应用于阿尔茨海默氏病小鼠模型(APP / PS1)的石蜡切片。铁被发现在斑块的核心和边缘。斑块边缘呈纤维状或颗粒状外观,并经常含有铁标记的细胞。进一步的分析表明,铁与菌斑的核心紧密相关,而与边缘的紧密相关。总之,对组织化学染色的修饰揭示了中枢神经系统中铁沉积的新见解。从理论上讲,该方法应该可以转移到除大脑以外的器官和其他物种上,并且其基本原理应该可以整合到各种染色方法中。

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