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首页> 外文期刊>European journal of oral sciences >A three-dimensional in vitro model system to study the adaptation of craniofacial skeletal muscle following mechanostimulation.
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A three-dimensional in vitro model system to study the adaptation of craniofacial skeletal muscle following mechanostimulation.

机译:三维体外模型系统,用于研究机械刺激后颅面骨骼肌的适应性。

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摘要

The aim of this study was to investigate the in vitro response of human craniofacial muscle-derived myotubes (primitiveascent muscle fibres), in three-dimensional constructs, to strain in vitro to mimic clinical scenarios, using expression of the mechanoresponsive gene gelatinase-A/matrix metalloproteinase-2 (MMP-2) as a marker of remodelling of muscle extracellular matrix. Three-dimensional (3D) constructs of cells derived from explants of human masseter muscle (human craniofacial muscle-derived cells; hCMDC) in collagen sponges were subjected to mechanical, uniaxial strain using the Bio-Stretch system. 3D myotube constructs were exposed to the strain regimes of rapid ramp stretch (RRS) or cyclical ramp strain (CRS) with 7.5% and 15% strain. The activity of MMP-2 was assessed by zymography of construct-conditioned medium, whilst lysates of the constructs were used to measure creatine phosphokinase (CPK) activity to confirm the presence of myotubes in the strained constructs. Scanning electron microscopy of the collagen sponges and the CPK assays confirmed the presence of myotubes. MMP-2 was expressed by all the samples and controls, but expression was found to be significantly higher in those cultures strained continuously (RRS), compared to cyclical strain (CRS), and in those strained at 15% compared to 7.5%. Thus, MMP-2 expression, and hence extracellular matrix remodelling, is up-regulated in response to strain and is dependent upon the amount and type of strain to which the muscle is subjected.
机译:这项研究的目的是研究人体颅面肌肉衍生的肌管(原始/新生肌纤维)在三维结构中的体外响应,以使用机械响应基因明胶酶- A /基质金属蛋白酶2(MMP-2)作为肌肉细胞外基质重塑的标志物。使用Bio-Stretch系统对胶原海绵中源自人类咬肌的外植体的细胞的三维(3D)构建(人类颅面肌衍生的细胞; hCMDC)进行机械,单轴应变。将3D肌管构造体置于快速坡道拉伸(RRS)或周期性坡道应变(CRS)的应变方案中,应变率为7.5%和15%。通过对构建体条件培养基的酶谱分析来评估MMP-2的活性,同时使用该构建体的裂解液测量肌酸磷酸激酶(CPK)活性,以确认该菌株中存在肌管。胶原海绵的扫描电子显微镜和CPK分析证实了肌管的存在。 MMP-2在所有样品和对照中均有表达,但发现与连续菌株(CRS)相比,在连续拉紧(RRS)的那些培养物中表达显着更高,而在15%相对于7.5%的菌株中,表达明显更高。因此,响应于应变,MMP-2表达以及由此的细胞外基质重塑被上调,并且取决于肌肉所经受的应变的量和类型。

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