Suppr超能文献

通过电子显微镜成像确定火鸡腿肌腱矿化的矢量序列。

Vectorial sequence of mineralization in the turkey leg tendon determined by electron microscopic imaging.

作者信息

Arsenault A L, Frankland B W, Ottensmeyer F P

机构信息

University of British Columbia, Vancouver, Canada.

出版信息

Calcif Tissue Int. 1991 Jan;48(1):46-55. doi: 10.1007/BF02555795.

Abstract

Turkey leg tendons were used as a model tissue to study the spatial and temporal relationships of mineral deposition between matrix vesicles and collagen fibrils by various electron microscopic techniques--bright field, selected-area dark field (SADF), and electron spectroscopic imaging (ESI). These latter imaging techniques enabled the direct localization and spatial distributions of both apatite crystals and atomic elements (Ca, P) within matrix vesicles and collagen. In longitudinal planes of section, a consistent vectorial gradient of mineralization was observed which started with the first localization of apatite mineral in matrix vesicles; with further development, the mineral spread from the vesicle to the extravesicular interstices and then into the adjacent collagen fibrils. Once intrafibrillar, the mineral was observed to advance both laterally and axially. The association of vesicle/collagen mineral was examined by ESI analysis of Ca and P elemental maps and appeared as a continuum between the vesicles and the adjacent collagen fibrils. Similarly, an intimate spatial relationship was observed between the mineral of vesicles and collagen in transversely cut sections of tendon. The sequential development of this mineralized matrix is discussed in light of matrix vesicle/collagen interactions.

摘要

火鸡腿肌腱被用作模型组织,通过各种电子显微镜技术——明场、选区暗场(SADF)和电子光谱成像(ESI),来研究基质小泡与胶原纤维之间矿物质沉积的时空关系。这些后一种成像技术能够直接定位磷灰石晶体以及基质小泡和胶原内的原子元素(钙、磷)及其空间分布。在纵切面上,观察到了一致的矿化矢量梯度,其始于磷灰石矿物在基质小泡中的首次定位;随着进一步发展,矿物质从泡内扩散到泡外间隙,然后进入相邻的胶原纤维。一旦进入纤维内,观察到矿物质会横向和轴向推进。通过对钙和磷元素图的ESI分析研究了泡/胶原矿物质的关联,其表现为小泡与相邻胶原纤维之间的连续体。同样,在肌腱的横切面上,观察到小泡矿物质与胶原之间存在紧密的空间关系。根据基质小泡/胶原相互作用讨论了这种矿化基质的顺序发育。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验