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首页> 外文期刊>Cytotechnology >Characterization of type I, III and V collagens in high-density cultured tenocytes by triple-immunofluorescence technique
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Characterization of type I, III and V collagens in high-density cultured tenocytes by triple-immunofluorescence technique

机译:通过三重免疫荧光技术表征高密度培养肌腱细胞中的I,III和V型胶原

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摘要

The purpose of this study is to examine the intracellular distribution of collagen types I, III and V in tenocytes using triple-label immunofluorescence staining technique in high-density tenocyte culture on Filter Well Inserts (FWI). The tenocytes were incubated for 4?weeks under monolayer conditions and for 3?weeks on FWI. At the end of the third week of high-density culture, we observed tenocyte aggregation followed by macromass cluster formation. Immunofluorescence labeling with anti-collagen type I antibody revealed that the presence of collagen type I was mostly around the nucleus. Type III collagen was more diffused in the cytoplasm. Type V collagen was detected in fibrillar and vesicular forms in the cytoplasm. We conclude that, the high-density culture on FWI is an appropriate method for the production of tenocytes without loosing specialized processes such as the synthesis of different collagen molecules. We consider that the high-density culture system is suitable for in vitro applications which affect tendon biology and will improve our understanding of the biological behavior of tenocytes in view of adequate matrix structure synthesis. Such high-density cultures may serve as a model system to provide sufficient quantities of tenocytes to prepare tenocyte-polymer constructs for tissue engineering applications in tendon repair.
机译:这项研究的目的是使用三重标记免疫荧光染色技术在滤池插入物(FWI)上的高密度肌腱细胞培养中检查肌腱细胞中I,III和V型胶原蛋白的细胞内分布。肌腱细胞在单层条件下孵育4周,在FWI上孵育3周。在高密度培养的第三周结束时,我们观察到肌腱细胞聚集,随后形成巨团簇。用抗I型胶原抗体进行的免疫荧光标记显示I型胶原的存在主要在细胞核周围。 III型胶原更多地扩散在细胞质中。在细胞质中以纤维状和囊状形式检测到V型胶原。我们得出的结论是,在FWI上进行高密度培养是一种合适的方法,可用于生产肌腱细胞,而不会丢失专门的过程,例如合成不同的胶原分子。我们认为高密度培养系统适用于影响肌腱生物学的体外应用,并且鉴于适当的基质结构合成,将提高我们对肌腱细胞生物学行为的了解。这样的高密度培养物可以用作模型系统,以提供足够量的肌腱细胞以制备肌腱-聚合物构建体,用于肌腱修复中的组织工程应用。

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