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Third harmonic generation imaging and analysis of the effect of low gravity on the lacuno-canalicular network of mouse bone

机译:低谐波对小鼠骨腔-小管网的影响的三次谐波成像及分析

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摘要

The lacuno-canalicular network (LCN) hosting the osteocytes in bone tissue represents a biological signature of the mechanotransduction activity in response to external biomechanical loading. Using third-harmonic generation (THG) microscopy with sub-micrometer resolution, we investigate the impact of microgravity on the 3D LCN structure in mice following space flight. A specific analytical procedure to extract the LCN characteristics from THG images is described for ex vivo studies of bone sections. The analysis conducted in different anatomical quadrants of femoral cortical bone didn’t reveal any statistical differences between the control, habitat control and flight groups, suggesting that the LCN connectivity is not affected by one month space flight. However, significant variations are systematically observed within each sample. We show that our current lack of understanding of the extent of the LCN heterogeneity at the organ level hinders the interpretation of such investigations based on a limited number of samples and we discuss the implications for future biomedical studies.
机译:在骨组织中容纳骨细胞的腔管网络(LCN)代表了机械转导活性对外部生物力学负荷的响应的生物学特征。使用具有次微米分辨率的三次谐波产生(THG)显微镜,我们研究了太空飞行后微重力对小鼠3D LCN结构的影响。描述了从THG图像提取LCN特征的特定分析程序,用于离体研究骨切片。在股骨皮质的不同解剖象限中进行的分析未显示对照组,栖息地对照组和飞行组之间的任何统计差异,这表明LCN连通性不受一个月的太空飞行影响。但是,在每个样本中系统地观察到明显的变化。我们表明,我们目前对器官水平LCN异质性程度的了解不足,阻碍了基于有限数量样本的此类研究的解释,并且我们讨论了对未来生物医学研究的意义。

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