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鸟类足部发育肌腱的免疫组织学和超微结构研究。

Immunohistological and ultrastructural study of the developing tendons of the avian foot.

作者信息

Ros M A, Rivero F B, Hinchliffe J R, Hurle J M

机构信息

Departamento de Anatomía y Biología Celular Universidad de Cantabria, Santander, Spain.

出版信息

Anat Embryol (Berl). 1995 Dec;192(6):483-96. doi: 10.1007/BF00187179.

Abstract

The aim of the present report is to provide a detailed description of the morphogenesis and initial differentiation of the long tendons of the chick foot, the long autopodial tendons (LAT), from day 6 to day 11 of development. The fine structure of the developing LAT was studied by light and transmission electron microscopy. The characterization by immunofluorescent techniques of the extracellular matrix was performed using laser scanning confocal (tenascin, elastin, fibrillin, emilin, collagen type I, II, III, IV and VI) or routine fluorescence (tenascin, 13F4) microscopy. In addition, cell proliferation in pretendinous blastemas was analyzed by the detection of BrdU incorporation by immunofluorescence. The light microscopic analysis permitted the identification of different stages during LAT morphogenesis. The first stage is the formation of a thick ectoderm-mesenchyme interface along the digital rays, followed by the differentiation of the "mesenchyme lamina", an extracellular matrix tendon precursor, and ending with the formation and differentiation of the cellular condensation that forms the tendon blastema around this lamina. The immunofluorescence study revealed the presence and arrangement of the different molecules analyzed. Tenascin and collagen type VI are precocious markers of the developing tendons and remain present during the whole process of tendon formation. Collagen type I becomes mainly restricted to the developing tendons from day 7.5. Collagens type II and IV are never detected in the developing tendons, while a faint labeling for collagen type III is first detected at day 7. The analysis of the distribution of the elastic matrix components in the developing tendons is a major contribution of our study. Elastin was detected in the periphery of the tendons from day 8 and also in fibrils anchoring the tendons to the skeletal elements. At the same stage, emilin strongly stains the core of the tendon rods, while fibrillin is detected a little later. Our study indicates the existence of an ectoderm-mesoderm interaction at the first stage of the tendon formation. In addition, our results show the different spatial and temporal pattern of distribution of extracellular matrix molecules in developing tendons. Of special importance are the findings concerning the tendinous elastic matrix and its possible role in tendon maturation and stabilization.

摘要

本报告旨在详细描述鸡足长肌腱,即长自足趾的肌腱(LAT)在发育第6天至第11天的形态发生和初始分化过程。通过光学显微镜和透射电子显微镜研究发育中的LAT的精细结构。利用激光扫描共聚焦显微镜(肌腱蛋白、弹性蛋白、原纤蛋白、埃米林、I型、II型、III型、IV型和VI型胶原)或常规荧光显微镜(肌腱蛋白、13F4)对细胞外基质进行免疫荧光技术表征。此外,通过免疫荧光检测BrdU掺入来分析假肌腱芽中的细胞增殖。光学显微镜分析有助于识别LAT形态发生过程中的不同阶段。第一阶段是沿指射线形成厚的外胚层 - 间充质界面,随后是“间充质板层”的分化,这是一种细胞外基质肌腱前体,最后是围绕该板层形成并分化形成肌腱芽的细胞凝聚物。免疫荧光研究揭示了所分析的不同分子的存在和排列。肌腱蛋白和VI型胶原是发育中肌腱的早熟标记物,并且在肌腱形成的整个过程中都存在。I型胶原从7.5天开始主要局限于发育中的肌腱。在发育中的肌腱中从未检测到II型和IV型胶原,而在第7天首次检测到III型胶原的微弱标记。对发育中肌腱中弹性基质成分分布的分析是我们研究的一项主要贡献。从第8天起在肌腱周边检测到弹性蛋白,并且在将肌腱锚定到骨骼元件的纤维中也检测到弹性蛋白。在同一阶段,埃米林强烈染色肌腱杆的核心,而原纤蛋白稍后被检测到。我们的研究表明在肌腱形成的第一阶段存在外胚层 - 中胚层相互作用。此外,我们的结果显示了发育中肌腱中细胞外基质分子分布的不同时空模式。关于肌腱弹性基质及其在肌腱成熟和稳定中的可能作用的发现尤为重要。

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