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Targeted 2D histology and ultrastructural bone analysis based on 3D microCT anatomical locations

机译:基于3D microct解剖位置的有针对性的2D组织学和超微结构骨分析

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Histological processing of mineralised tissue (e.g.bone) allows examining the anatomy of cells and tissues as well as the material properties of the tissue. However, resin-embedding offers limited control over the specimen position for cutting. Moreover, specific anatomical planes (coronal, sagittal) or defined landmarks are often missed with standard microtome sectioning. Here we describe a method to precisely locate a specific anatomical 2D plane or any anatomical feature of interest (e.g.bone lesions, newly formed bone, etc.) using 3D micro computed tomography (microCT), and to expose it using controlled-angle microtome cutting. The resulting sections and corresponding specimen's block surface offer correlative information of the same anatomical location, which can then be analysed using multiscale imaging. Moreover, this method can be combined with immunohistochemistry (IHC) to further identify any component of the bone microenvironment (cells, extracellular matrix, proteins, etc.) and guide subsequent in-depth analysis. Overall, this method allows to:?Cut your specimens in a consistent position and precise manner using microCT-based controlled-angle microtome sectioning.?Locate and expose a specific anatomical plane (coronal, sagittal plane) or any other anatomical landmarks of interest based on microCT.?Identify any cell or tissue markers based on IHC to guide further in-depth examination of those regions of interest.
机译:矿化组织(例如)的组织学加工允许检查细胞和组织的解剖学以及组织的材料性质。然而,树脂嵌入物可控制对剪切标本位置的有限控制。此外,经常用标准的切片切片错过特定的解剖结构(冠状,矢状)或定义的地标。在这里,我们描述了一种精确地定位特定解剖学2D平面或使用3D微型计算机断层扫描(MicroCT)的感兴趣的解剖学2D平面或任何解剖学特征的方法,并使用受控角度切割切割暴露它。所得到的部分和相应的样本的块表面提供相同解剖位置的相关信息,然后可以使用多尺度成像来分析。此外,该方法可以与免疫组织化学(IHC)结合,以进一步鉴定骨微环境(细胞,细胞外基质,蛋白质等)的任何组分,并引导随后的深入分析。总的来说,这种方法允许:使用微微基于控制角分切线切割的一致位置和精确的方式切割标本.?拆除和暴露特定的解剖平面(冠状,矢状平面)或基于其他感兴趣的任何其他解剖标记在Microct上。基于IHC的任何细胞或组织标记,进一步深入地检查这些感兴趣区域。

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