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New insights in osteocyte imaging by synchrotron radiation

机译:同步辐射在骨细胞成像中的新见解

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Author Summary: Bone health depends on the bone mineral density and mechanical strength, characterised quantitatively and inferred through qualitative parameters such as the trabecular and cortical micro-architecture, and other parameters describing the bone cells. Among these cells, the osteocyte has been recognised as the orchestrator of bone remodelling, playing a key role in directing osteoblastic and osteoclastic activities. Conventional optical and electron microscopies have greatly improved our understanding of the cell physiology mechanisms involved in different osteoarticular pathophysiological contexts, especially osteoporosis. More recently, imaging methods exploiting synchrotron radiation, such as X-ray tomography, ptychography, and deep ultraviolet and Fourier transform infrared spectroscopies, have revealed new biochemical, chemical and 3D morphological information about the osteocyte lacuna, the surrounding matrix and the lacunacanalicular network at spatial length scales spanning microns to tens of nanometres. Here, we review recent results in osteocyte lacuna and lacunacanalicular network characterisation by synchrotron radiation imaging in human and animal models, contributing to new insights in different physiologic and pathophysiological situations.
机译:作者摘要:骨骼的健康取决于骨骼的矿物质密度和机械强度,这些特征可以通过定量参数进行表征,并通过定性参数(如小梁和皮质微结构)以及描述骨骼细胞的其他参数来推断。在这些细胞中,骨细胞已被公认为是骨重塑的协调器,在指导成骨细胞和破骨细胞活动中起关键作用。常规的光学和电子显微镜检查极大地改善了我们对涉及不同骨关节病理生理环境,尤其是骨质疏松症的细胞生理机制的理解。最近,利用同步加速器辐射的成像方法(例如X射线断层扫描,typchography和深紫外和傅里叶变换红外光谱)揭示了有关骨细胞腔,周围基质和腔室网络的新的生化,化学和3D形态学信息。空间长度范围从微米到数十纳米。在这里,我们通过人类和动物模型中的同步辐射成像回顾了骨细胞腔和腔管网状网络表征的最新结果,为不同生理和病理生理情况的新见解做出了贡献。

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