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A Simplified Method for the Histochemical Detection of Iron in Paraffin Sections: Intracellular Iron Deposits in Central Nervous System Tissue

机译:石蜡切片中铁组织化学检测的简化方法:中枢神经系统组织中的细胞内铁沉积物

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摘要

Although all cells contain iron, most histochemical methods fail to reveal the presence of iron within many cells of the central nervous system (CNS), particularly neurons. Previously, a sensitive method was developed that limited the extraction of iron in paraffin sections, and this method revealed staining within neurons. However, the staining was often too robust making it difficult to discern discrete intracellular structures. In 1970, a study incorporated acetone in an iron histochemical procedure to facilitate the demarcation of staining features. In the present study, both acetone and limits to iron extraction were included in a simplified staining procedure. This procedure was applied to paraffin sections of CNS tissue from CISD2 deficient and littermate control mice. Discrete nuclear and cytoplasmic staining features were detected in all mice. Although widely present in neurons, punctate cytoplasmic staining was particularly prominent in large neurons within the hindbrain. Evaluation of extended depth of focus images, from serial focal planes, revealed numerous stained cytoplasmic structures. Additionally, the simplified staining procedure was applied to paraffin sections from Alzheimer’s disease and control cases. Despite suboptimal processing conditions compared to mouse tissue, discrete staining of cytoplasmic structures was revealed in some neurons, although many other neurons had nondescript staining features. In addition, initial findings revealed iron deposited within some vessels from patients with Alzheimer’s disease. In summary, since paraffin sections are commonly used for histological preparations, this simplified histochemical procedure could facilitate the study of iron in various CNS conditions by revealing staining details often missed by other procedures.
机译:尽管所有细胞含有铁,但最多的组织化学方法未能在中枢神经系统(CNS)的许多细胞内,特别是神经元的存在。以前,开发了一种敏感方法,其限制了石蜡切片中的铁的萃取,并且该方法揭示了神经元的染色。然而,染色通常太稳健,使得难以辨别离散的细胞内结构。 1970年,一项研究在铁组织化学程序中掺入丙酮,以促进染色特征的划分。在本研究中,丙酮和铁萃取的限制均包含在简化的染色过程中。将该程序应用于来自CISD2缺陷和凋落物对照小鼠的CNS组织的石蜡切片。在所有小鼠中检测到离散的核和细胞质染色特征。虽然广泛存在于神经元中,但点状细胞质染色在后脑内的大神经元中特别突出。从连续焦平平面评估扩展深度图像的扩展深度揭示了许多染色的细胞质结构。另外,将简化的染色程序应用于来自阿尔茨海默病和对照病例的石蜡切片。尽管与小鼠组织相比,尽管与小鼠组织相比,在一些神经元中揭示了细胞质结构的离散染色,尽管许多其他神经元具有非符号染色特征。此外,初步发现揭示了阿尔茨海默病患者的一些血管内沉积的铁。总之,由于石蜡部分通常用于组织学制剂,因此这种简化的组织化学方法可以通过揭示其他程序经常错过的细节来促进各种CNS条件中的铁。

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