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纳米级结构图谱作为衡量小鼠前额皮质成熟度的指标。

Nanoscale structural mapping as a measure of maturation in the murine frontal cortex.

机构信息

LAAS-CNRS, Université de Toulouse, CNRS, Toulouse, France.

ITAV-CNRS, Université de Toulouse, CNRS, Toulouse, France.

出版信息

Brain Struct Funct. 2018 Jan;223(1):255-265. doi: 10.1007/s00429-017-1486-z. Epub 2017 Aug 4.

Abstract

Atomic force microscopy (AFM) is emerging as an innovative tool to phenotype the brain. This study demonstrates the utility of AFM to determine nanomechanical and nanostructural features of the murine dorsolateral frontal cortex from weaning to adulthood. We found an increase in tissue stiffness of the primary somatosensory cortex with age, along with an increased cortical mechanical heterogeneity. To characterize the features potentially responsible for this heterogeneity, we applied AFM scan mode to directly image the topography of thin sections of the primary somatosensory cortical layers II/III, IV and V/VI. Topographical mapping of the cortical layers at successive ages showed progressive smoothing of the surface. Topographical images were also compared with histochemically derived morphological information, which demonstrated the deposition of perineuronal nets, important extracellular components and markers of maturity. Our work demonstrates that high-resolution AFM images can be used to determine the nanostructural properties of cortical maturation, well beyond embryonic and postnatal development. Furthermore, it may offer a new method for brain phenotyping and screening to uncover topographical changes in early stages of neurodegenerative diseases.

摘要

原子力显微镜(AFM)正成为一种研究大脑表型的创新工具。本研究展示了 AFM 在确定从小鼠断奶到成年期背外侧前额皮质的纳米力学和纳米结构特征方面的应用。我们发现组织硬度随年龄增长而增加,同时皮质机械异质性也增加。为了表征可能导致这种异质性的特征,我们应用 AFM 扫描模式直接对初级体感皮质层 II/III、IV 和 V/VI 的薄片进行形貌成像。在不同年龄段对皮质层进行形貌测绘显示表面逐渐变平滑。形貌图像还与组织化学衍生的形态信息进行了比较,这表明了神经周围网络、重要的细胞外成分和成熟标志物的沉积。我们的工作表明,高分辨率 AFM 图像可用于确定皮质成熟的纳米结构特性,这远远超出了胚胎和出生后的发育阶段。此外,它可能为脑表型分析和筛选提供一种新方法,以揭示神经退行性疾病早期的地形变化。

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