首页> 外文期刊>The journal of histochemistry and cytochemistry >Quantification of the Extracellular Matrix Molecule Thrombospondin 1 and Its Pericellular Association in the Brain Using a Semiautomated Computerized Approach
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Quantification of the Extracellular Matrix Molecule Thrombospondin 1 and Its Pericellular Association in the Brain Using a Semiautomated Computerized Approach

机译:使用半自动化的计算机方法量化的细胞外基质分子血小板反应蛋白1及其在大脑中的细胞周围缔合。

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The structure and functions of the extracellular matrix (ECM), its spatial distribution and pericellular association of ECM molecules remain poorly understood. Colocalization of ECM molecules with cell phenotypes through immunohistochemistry can provide crucial insights into their juxtacrine signaling role as well as their structural relevance to tissue architecture. As manual quantification of images introduces intra- and inter-user bias and is cumbersome for high-throughput approaches, we implemented an automated high-throughput method to quantify the spatial distribution and cellular association of one ECM molecule, thrombospondin 1 (TSP1) with two major cell phenotypes, neurons, and astrocytes. The distribution of TSP1 was homogeneous throughout the striatum and cortex along the anterior–posterior axis. TSP1 occupied 8.85% of the striatum and 7.40% in the cortex. TSP1 also associated with 94.58% and 88.45% of neurons in the striatum and cortex. The association with astrocytes was significantly lower at 47.55% and 28.09%. These findings highlight the key role that TSP1 plays in neuron physiology in a healthy brain, but also highlights key regional difference in astrocytes secreting ECM molecules. The semiautomated approach implemented here will improve the throughput and reliability of measuring the distribution and cellular colocalization of ECM molecules.
机译:细胞外基质(ECM)的结构和功能,其空间分布和ECM分子的细胞周围结合仍然知之甚少。通过免疫组织化学将ECM分子与细胞表型共定位可以提供关键的洞察力,以了解其邻苯并林信号传导作用及其与组织结构的结构相关性。由于图像的手动量化会引入用户内部和用户之间的偏见,并且对于高通量方法而言比较麻烦,因此我们实现了自动化的高通量方法来量化一个ECM分子血小板反应蛋白1(TSP1)与两个ECM分子的空间分布和细胞缔合。主要细胞表型,神经元和星形胶质细胞。 TSP1的分布沿前后轴在整个纹状体和皮质中均一。 TSP1占纹状体的8.85%,皮质占7.40%。 TSP1还与纹状体和皮层神经元的94.58%和88.45%相关。与星形胶质细胞的结合显着降低,分别为47.55%和28.09%。这些发现突出了TSP1在健康大脑的神经元生理中发挥的关键作用,同时也突出了分泌ECM分子的星形胶质细胞的关键区域差异。此处实施的半自动化方法将提高测量ECM分子的分布和细胞共定位的吞吐量和可靠性。

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