首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >In vitro changes in human tenocyte cultures obtained from proximal biceps tendon: Multiple passages result in changes in routine cell markers
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In vitro changes in human tenocyte cultures obtained from proximal biceps tendon: Multiple passages result in changes in routine cell markers

机译:从近端二头肌腱获得的人肌腱细胞培养物的体外变化:多次传代导致常规细胞标志物的变化

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Purpose: Results of in vitro cell models are commonly used to promote new therapies (e. g., platelet-rich plasma), and clinicians have to be aware of the specific limitations of such models. To gain a sufficient and effective cell load, many current in vitro models use cells multiplied through various passages. This is especially important in tendon-like cell (TLC) models, since native tendon tissue is not available unlimited and contains limited amount of tenocytes. The purpose was to determine the occurrence of phenotypic changes following extended monolayer culture of TLCs, according to cell-passage number. Methods: Tendon samples were obtained from 15 healthy patients undergoing biceps tenodesis. Tendons were digested and cultured (monolayer) for six passages. Tendon-specific markers (collagens I and III, decorin, tenascin-C, and tenomodulin) and their histology were analyzed using gene expression and protein content assays. Native cells, the cells cultured and cells passaged one to six times were analyzed at each passage. Results: Gene expression of types I and III collagen of cultured TLCs significantly decreased after two passages. Gene expression of decorin, tenascin-C, and tenomodulin exhibited a trend of decreased gene expression with increased passage. Protein levels of types I and III collagen and decorin decreased after four passages. Conclusions: The significant findings let conclude that tenocyte-like cells obtained from human LHB can be maintained in monolayer culture at low passages, before the signs of phenotypic drift are present. But researchers must be aware of rapid phenotypic drift at higher passage numbers. Therefore, only cells within the first 3 passages should be used as a precaution for in vitro monolayer cell models, and one has to be aware of the phenotypic changes if TLCs passaged multiple times are used. The clinical relevance of this data is that understanding of in vitro TLC models, and their limitations may finally help the clinician to judge the potential of experimental data of new biologic treatment options.
机译:目的:体外细胞模型的结果通常用于促进新疗法(例如富含血小板的血浆),并且临床医生必须意识到这种模型的具体局限性。为了获得足够和有效的细胞负荷,许多当前的体外模型使用通过各种传代繁殖的细胞。这在肌腱样细胞(TLC)模型中尤其重要,因为天然肌腱组织不是无限可用的,并且肌腱细胞数量有限。目的是根据细胞传代数确定在TLC的扩展单层培养后表型变化的发生。方法:从15例健康的二头肌腱断裂患者中获取肌腱样本。将肌腱消化并培养(单层)六代。使用基因表达和蛋白质含量测定法分析了肌腱特异性标志物(胶原I和III,除蛋白,肌腱蛋白C和腱调蛋白)及其组织学。在每次传代中分析天然细胞,培养的细胞和传代1-6次的细胞。结果:经过两次传代后,培养的TLC的I型和III型胶原蛋白的基因表达显着下降。 decorin,tenascin-C和tenomodulin的基因表达显示出随着传代增加基因表达减少的趋势。经过四代后,I型和III型胶原蛋白和核心蛋白聚糖的蛋白质水平下降。结论:重要的发现可以得出结论,从人LHB获得的肌腱细胞样细胞可以在出现表型漂移迹象之前以低传代率维持在单层培养中。但是研究人员必须意识到在较高的传代次数下快速表型漂移。因此,只有前3代内的细胞才应作为体外单层细胞模型的预防措施,如果使用多次传代的TLC,则必须注意表型的变化。该数据的临床相关性在于对体外TLC模型及其局限性的了解最终可以帮助临床医生判断新的生物治疗方法的实验数据的潜力。

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