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Effects of electrical stimulation in C2C12 muscle constructs

机译:电刺激对C2C12肌肉结构的影响

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Electrical stimulation affects the deposition of extracellular matrices and cellular differentiation. Type I collagen is one of the most abundant extracellular matrix proteins; however, not much is known about the effects of electrical stimulation on collagen type I deposition in C2C12 cells. Thus, we studied the effects of electrical voltage and stimulation frequency in 3D cultured C2C12 muscle cells in terms of metabolic activity, type I collagen deposition and cell morphology. Electrically excitable C2C12 muscle cells were seeded in collagen scaffolds and stimulated with rectangular signals of voltage (2, 5, 7 V) and frequency (1, 2 Hz), using parallel carbon electrodes spaced 1 cm apart. Metabolic activity was quantified by the glucose: lactate concentration ratio in the medium. Apoptotic activity was assessed by TUNEL staining and changes in collagen deposition were identified by immunohistology. The ultrastructure of the tissue was examined by TEM. Glucose and lactate analysis indicated that all groups had similar metabolic activity. TUNEL stain showed no significant difference in apoptotic damage induced by electrical stimulation compared to the control. Samples stimulated at 2 Hz exhibited reduced collagen deposition compared to the control and 1 Hz stimulated samples. Muscle-protein marker desmin was highly expressed in constructs stimulated with 1 Hz/5 V sample. TEM revealed that the stimulated samples developed highly organized sarcomeres, which coincided with improved contractile properties in the 1 Hz/5 V- and 2 Hz/5 V-stimulated groups. Our data implicate that a specific electrical frequency may modulate type I collagen accumulation and a specific voltage may affect the differentiation of muscle sarcomeres in excitable cells.
机译:电刺激影响细胞外基质的沉积和细胞分化。 I型胶原蛋白是最丰富的细胞外基质蛋白之一。然而,关于电刺激对C2C12细胞中I型胶原沉积的影响知之甚少。因此,我们研究了3D培养的C2C12肌肉细胞中的电压和刺激频率在代谢活性,I型胶原沉积和细胞形态方面的影响。将可电激发的C2C12肌肉细胞接种在胶原蛋白支架中,并使用间隔为1 cm的平行碳电极用电压(2、5、7 V)和频率(1、2 Hz)的矩形信号进行刺激。代谢活性通过培养基中葡萄糖:乳酸的浓度比定量。通过TUNEL染色评估凋亡活性,并通过免疫组织学鉴定胶原沉积的变化。通过TEM检查组织的超微结构。葡萄糖和乳酸分析表明所有组具有相似的代谢活性。与对照相比,TUNEL染色显示由电刺激引起的凋亡损伤无显着差异。与对照和1 Hz刺激的样品相比,以2 Hz刺激的样品显示出减少的胶原蛋白沉积。肌肉蛋白标记物desmin在用1 Hz / 5 V样品刺激的构建体中高表达。 TEM显示,受刺激的样品形成了高度组织化的肉瘤,与1 Hz / 5 V和2 Hz / 5 V刺激的组的收缩特性相吻合。我们的数据表明,特定的电频率可能会调节I型胶原蛋白的积累,特定的电压可能会影响可兴奋细胞中肌肉肉瘤的分化。

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