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深区和钙化软骨的多模态多光子微观结构研究。

A multi-modal multiphoton investigation of microstructure in the deep zone and calcified cartilage.

机构信息

School of Physics, University of Exeter, Exeter, UK.

出版信息

J Anat. 2012 Apr;220(4):405-16. doi: 10.1111/j.1469-7580.2012.01479.x. Epub 2012 Feb 14.

Abstract

Multi-modal multiphoton microscopy was used to investigate tissue microstructure in the zone of calcified cartilage, focussing on the collagen fibre organisation at the tidemark and cement line. Thick, unstained and unfixed sagittal sections were prepared from the equine metacarpophalangeal joint. Second harmonic generation (SHG) provided contrast for collagen, two-photon fluorescence (TPF) for endogenous fluorophores, and coherent anti-Stokes Raman scattering (CARS) allowed the cells to be visualised. The structure of radial and calcified cartilage was found to vary with location across the joint, with the palma regions showing a more ordered parallel arrangement of collagen fibres than the cortical ridge and dorsal regions. These patterns may be associated with regional variations in joint loading. In addition, the cell lacunae had a greater diameter in the dorsal region than in the palmar region. At the cement line some collagen fibres were observed crossing between the calcified cartilage and the subchondral bone. At the tidemark the fibres were parallel and continuous between the radial and calcified cartilage. Beneath early superficial lesions the structure of the tidemark and calcified cartilage was disrupted with discontinuities and gaps in the fibrillar organisation. Cartilage microstructure varies in the deep zones between regions of different loading. The variations in collagen structure observed may be significant to the local mechanical properties of the cartilage and therefore may be important to its mechanical interactions with the subchondral bone. The calcified cartilage is altered even below early superficial lesions and therefore is important in the understanding of the aetiology of osteoarthritis.

摘要

多模态多光子显微镜用于研究钙化软骨区域的组织微观结构,重点研究边界带和钙化线处的胶原纤维组织。从马的掌指关节制备了厚的、未经染色和固定的矢状切片。二次谐波产生 (SHG) 为胶原提供对比度,双光子荧光 (TPF) 为内源性荧光团提供对比度,相干反斯托克斯拉曼散射 (CARS) 允许可视化细胞。发现径向和钙化软骨的结构随关节位置的变化而变化,掌侧区域的胶原纤维排列比皮质嵴和背侧区域更有序。这些模式可能与关节负荷的区域变化有关。此外,背侧区域的细胞腔直径大于掌侧区域。在骨水泥线处,观察到一些胶原纤维在钙化软骨和软骨下骨之间穿过。在边界带,纤维在径向和钙化软骨之间平行且连续。在早期浅表病变下方,边界带和钙化软骨的结构被破坏,纤维组织排列不连续且有间隙。在不同负荷区域之间的深层区域,软骨微观结构存在差异。观察到的胶原结构的变化可能对软骨的局部力学性能具有重要意义,因此可能对其与软骨下骨的力学相互作用很重要。甚至在早期浅表病变下方,钙化软骨也会发生改变,因此对于理解骨关节炎的病因很重要。

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