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Efficient expansion of mouse primary tenocytes using a novel collagen gel culture method

机译:使用新型胶原蛋白凝胶培养方法有效扩增小鼠原代肌腱细胞

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摘要

Development of regenerative therapies for damaged tendons remains a great challenge, largely because of lack of information regarding the mechanisms responsible for differentiation of tenocytes. Mouse tenocytes have not been fully characterized owing to the absence of efficient and reproducible methods for their in vitro expansion without losing phenotypic features. The objective of the study was to establish an improved and reliable method for stable primary culture of mouse tenocytes by using collagen gel. Achilles and tail tendon tissues were harvested and embedded in collagen gel. After 10 days of continuous culture, the gel was digested and cells were passaged on tissue culture-treated plastic dishes. Mouse tenocytes cultured in collagen gel exhibited significantly shorter doubling time and higher numbers of proliferation when maintained on the plastic dishes compared with those cultured without using gel. Transmission electron microscopic analyses showed that cultured tenocytes retained some morphological features of tenocytes in tendon tissues, such as cell-cell junctional complex formation, well-developed rough endoplasmic reticulum, and mitochondria in their cytoplasm. mRNA expression of tenocyte markers (tenomodulin, type I collagen, periostin, and scleraxis) was higher in cells cultured in collagen gel than in those cultured in the absence of gel. Our results show that tenocytes cultured using the collagen gel method express typical lineage markers and exhibit improved growth characteristics, thus providing a stable platform for studying molecular mechanisms that control their differentiation.
机译:对于受损肌腱的再生疗法的发展仍然是一个巨大的挑战,主要是因为缺乏有关负责肌腱细胞分化机制的信息。小鼠肌腱细胞由于缺乏有效且可重复的体外扩增而不丢失表型特征的方法而没有得到充分表征。该研究的目的是建立一种使用胶原蛋白凝胶稳定稳定地进行小鼠肌腱细胞原代培养的方法。收集跟腱和尾腱组织并将其包埋在胶原蛋白凝胶中。连续培养10天后,将凝胶消化,并将细胞传到经组织培养处理的塑料皿中。与不使用凝胶培养的小鼠相比,在胶原蛋白凝胶上培养的小鼠肌腱细胞在塑料培养皿上放置时表现出明显更短的加倍时间和更高的增殖数量。透射电镜分析表明,培养的肌腱细胞在肌腱组织中保留了肌腱细胞的某些形态特征,例如细胞-细胞结合复合物的形成,发达的粗面内质网和细胞质中的线粒体。在胶原凝胶中培养的细胞中,肌腱细胞标记物(肌醇调节蛋白,I型胶原,骨膜素和硬化)的mRNA表达要比没有凝胶时培养的细胞高。我们的结果表明,使用胶原蛋白凝胶法培养的肌腱细胞表达典型的谱系标记并显示出改善的生长特性,从而为研究控制其分化的分子机制提供了稳定的平台。

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