Effect of human myoblasts on tenogenic progression in 2D and 3D culture models.

IF 1.8 3区 医学 Q2 ANATOMY & MORPHOLOGY
Yoshifumi Tsuchiya, Ching-Yan Chloé Yeung, Rene B Svensson, Michael Kjaer
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引用次数: 0

Abstract

Tendon injuries and disorders associated with mechanical tendon overuse are common musculoskeletal problems. Even though tendons play a central role in human movement, the intrinsic healing process of tendon is very slow. So far, it is known that tendon cell activity is supported by several interstitial cells within the tendon. However, the interplay between the tendon and the adjacent muscle for tendon regeneration and development processes has not been fully investigated. Here, we tested whether factors released from muscle derived myogenic cells (myoblasts) enhance tenogenic progressions of human tendon derived cells (tendon fibroblasts) using two-dimensional (2D) culture model and a three-dimensional (3D)-engineered tendon construct culture model, which mimics tendon regeneration and development. The conditioned media from myoblasts and unconditioned media as control were applied to tendon fibroblasts. In 2D, immunofluorescence analysis revealed increased collagen type I expressing area and increased migration potential when conditioned media from myoblasts were applied. In the 3D-engineered human tendon construct model, wet weight, diameter, and cross-sectional area of the tendon constructs were increased in response to the application of conditioned media from myoblasts, whereas the collagen density was lower and mechanical function was reduced both at the functional level (maximum stiffness) and the material level (maximum stress and modulus). These results indicate that myoblast-derived factors extend collagen expressing area and enhance migration of tendon fibroblasts, while factors involved in the robustness of extra-cellular matrix deposition of tissue-engineered tendon constructs are lacking. Our findings suggest that adjacent muscle affects the signaling interplay in tendons.

人成肌细胞在2D和3D培养模型中对肌腱生成进程的影响。
与机械肌腱过度使用相关的肌腱损伤和疾病是常见的肌肉骨骼问题。尽管肌腱在人体运动中起着核心作用,但肌腱的内在愈合过程非常缓慢。到目前为止,已知肌腱细胞的活动是由肌腱内的几个间质细胞支持的。然而,肌腱和邻近肌肉在肌腱再生和发育过程中的相互作用尚未得到充分研究。在这里,我们使用二维(2D)培养模型和三维(3D)工程肌腱构建培养模型来测试从肌肉来源的成肌细胞(成肌细胞)释放的因子是否会促进人肌腱来源的细胞(肌腱成纤维细胞)的成肌腱进展,模拟肌腱的再生和发育。将成肌细胞的条件培养基和作为对照的无条件培养基应用于肌腱成纤维细胞。在2D中,免疫荧光分析显示,当使用来自成肌细胞的条件培养基时,I型胶原表达面积增加,迁移潜力增加。在3d工程人体肌腱构建模型中,由于应用了成肌细胞条件培养基,肌腱构建物的湿重、直径和横截面积增加,而胶原密度降低,机械功能在功能水平(最大刚度)和材料水平(最大应力和模量)上都有所降低。这些结果表明,成肌细胞衍生因子扩大了胶原表达面积,增强了肌腱成纤维细胞的迁移,而组织工程肌腱构建的细胞外基质沉积的稳健性缺乏相关因子。我们的研究结果表明邻近肌肉影响肌腱的信号相互作用。
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来源期刊
Journal of Anatomy
Journal of Anatomy 医学-解剖学与形态学
CiteScore
4.80
自引率
8.30%
发文量
183
审稿时长
4-8 weeks
期刊介绍: Journal of Anatomy is an international peer-reviewed journal sponsored by the Anatomical Society. The journal publishes original papers, invited review articles and book reviews. Its main focus is to understand anatomy through an analysis of structure, function, development and evolution. Priority will be given to studies of that clearly articulate their relevance to the anatomical community. Focal areas include: experimental studies, contributions based on molecular and cell biology and on the application of modern imaging techniques and papers with novel methods or synthetic perspective on an anatomical system. Studies that are essentially descriptive anatomy are appropriate only if they communicate clearly a broader functional or evolutionary significance. You must clearly state the broader implications of your work in the abstract. We particularly welcome submissions in the following areas: Cell biology and tissue architecture Comparative functional morphology Developmental biology Evolutionary developmental biology Evolutionary morphology Functional human anatomy Integrative vertebrate paleontology Methodological innovations in anatomical research Musculoskeletal system Neuroanatomy and neurodegeneration Significant advances in anatomical education.
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