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共聚焦激光扫描显微镜对小鼠牙周膜中氧化弹力纤维三维分布的观察

Confocal laser scanning-microscopic observations on the three-dimensional distribution of oxytalan fibres in mouse periodontal ligament.

作者信息

Chantawiboonchai P, Warita H, Ohya K, Soma K

机构信息

First Department of Orthodontics, Faculty of Dentistry, Tokyo Medical and Dental University, Japan.

出版信息

Arch Oral Biol. 1998 Oct;43(10):811-7. doi: 10.1016/s0003-9969(98)00057-0.

Abstract

The purpose was to improve confocal laser scanning-microscopic (CLSM) techniques to observe the three-dimensional (3-D) distribution of oxytalan fibres in mouse periodontal ligament and to clarify the 3-D relation between those fibres and blood vessels. As aldehyde fuchsin is a contrast agent and the specific wavelength affects the depth of penetration, CLSM reflectance imaging of oxytalan stained with aldehyde fuchsin after oxidization provides strong contrast. Oxytalan fibres, whose precise roles have not yet been clarified, are connective tissue fibres present in human periodontal ligament in addition to collagen fibres. Despite many studies on their arrangement and biomechanical characteristics, their 3-D distribution in relation to other structures has never been reported. Mandibular first molars of mice were sectioned mesiodistally, pre-oxidized by monopersulphate compound (Oxone), stained with aldehyde fuchsin and examined by CLSM. CLSM images clearly revealed the 3-D distribution, and relation of oxytalan fibres to blood vessels and other structures, as well as their branching patterns in the periodontal ligament. The marked anatomical correlations between the direction, distribution and branching patterns of oxytalan fibres and blood vessels suggest that they interact to perform a specialized physiological role in the periodontal ligament.

摘要

目的是改进共聚焦激光扫描显微镜(CLSM)技术,以观察小鼠牙周膜中氧化弹力纤维的三维(3-D)分布,并阐明这些纤维与血管之间的三维关系。由于醛复红是一种造影剂,且特定波长会影响穿透深度,因此氧化后用醛复红染色的氧化弹力纤维的CLSM反射成像提供了强烈的对比度。氧化弹力纤维除了胶原纤维外,是存在于人类牙周膜中的结缔组织纤维,其确切作用尚未阐明。尽管对其排列和生物力学特性进行了许多研究,但它们与其他结构的三维分布从未被报道过。将小鼠下颌第一磨牙近远中切片,用过一硫酸化合物(过硫酸钾)预氧化,用醛复红染色,然后用CLSM检查。CLSM图像清楚地显示了氧化弹力纤维的三维分布、与血管和其他结构的关系,以及它们在牙周膜中的分支模式。氧化弹力纤维的方向、分布和分支模式与血管之间明显的解剖学相关性表明,它们相互作用以在牙周膜中发挥特定的生理作用。

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