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A novel in vitro three-dimensional skeletal muscle model

机译:一种新型的体外三维骨骼肌模型

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摘要

A novel three-dimensional (3D) skeletal muscle model composed of C2C12 mouse myoblasts is described. This model was generated by cultivating myoblasts in suspension using the rotary cell culture system (RCCS), a unique culture environment. Single-cell suspensions of myoblasts were seeded at 5 x 10(5)/ml in growth medium without exogenous support structures or substrates. Cell aggregation occurred in both RCCS and suspension control (SC) conditions within 12 h but occurred more rapidly in the SC at all time intervals examined. RCCS-cultured myoblasts fused and differentiated into a 3D construct without serum deprivation or alterations. Syncitia were quantified at 3 and 6+ d in stained thin sections. A significantly greater number of syncitia was found at 6+ d in the RCCS cultures compared to the SC. The majority of syncitia were localized to the periphery of the cell constructs for all treatments. The expression of sarcomeric myosin heavy chain (MHC) was localized at or near the periphery of the 3D construct. The majority of MHC was associated with the large cells (syncitia) of the 6+-d aggregates. These results show, for the first time, that myoblasts form syncitia and express MHC in the presence of growth factors and without the use of exogenous supports or substrates. This model test system is useful for investigating initial cell binding, myoblast fusion and syncitia formation, and differentiation processes.
机译:描述了由C2C12小鼠成肌细胞组成的新型三维(3D)骨骼肌模型。该模型是通过使用独特的培养环境旋转细胞培养系统(RCCS)悬浮培养成肌细胞而生成的。将成肌细胞的单细胞悬浮液以5 x 10(5)/ ml的密度接种在没有外源支持结构或底物的生长培养基中。细胞聚集在12小时内在RCCS和悬浮液控制(SC)条件下均发生,但在所有检查的时间间隔内均以更快的速度在SC中发生。 RCCS培养的成肌细胞融合并分化成3D构建体,无血清剥夺或改变。在染色的薄切片中在3和6 + d量化突触。与SC相比,在RCCS培养6 d时发现大量的神经痛。对于所有处理,大多数的神经痛症都定位于细胞构建体的外围。肌节肌球蛋白重链(MHC)的表达位于3D构建体的外围或附近。 MHC的大部分与6 + -d聚集体的大细胞(合胞体)有关。这些结果首次表明,在存在生长因子且不使用外源性支持物或底物的情况下,成肌细胞会形成合胞体并表达MHC。该模型测试系统可用于研究初始细胞结合,成肌细胞融合和合胞体形成以及分化过程。

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