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首页> 外文期刊>Regenerative Therapy >Improved contractile force generation of tissue-engineered skeletal muscle constructs by IGF-I and Bcl-2 gene transfer with electrical pulse stimulation
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Improved contractile force generation of tissue-engineered skeletal muscle constructs by IGF-I and Bcl-2 gene transfer with electrical pulse stimulation

机译:通过IGF-I和Bcl-2基因转移与电脉冲刺激改善组织工程化骨骼肌结构的收缩力生成

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摘要

Introduction: Tissue-engineered skeletal muscle constructs should be designed to generate contractile force with directional movement. Because electrical impulses from a somatic nervous system are crucial for in vivo skeletal muscle development, electrical pulse stimulation (EPS) culture as an artificial exercise is essential to fabricate functional skeletal muscle tissues in vitro. To further improve muscle functions, the activation of cell-signaling pathways from myogenic growth factors, such as insulin-like growth factor (IGF)-I, is also important. Because tissue-engineered skeletal muscle constructs should maintain a high cell-dense structure, the expression of an anti-apoptotic factor, such as B-cell lymphoma 2 (Bcl-2), could be effective in preventing cell death. Methods: In the present study, myoblasts were genetically modified with inducible expression units of IGF-I and Bcl-2 genes, and the tissue-engineered skeletal muscle constructs fabricated from the myoblasts were cultured under continuous EPS. Results: Overexpression of IGF-I gene induced muscular hypertrophy in the muscle tissue constructs, and Bcl-2-overexpressing myoblasts formed significantly cell-dense and viable muscle tissue constructs. Furthermore, the combination of IGF-I and Bcl-2 gene transfer with EPS culture highly improved the force generation of the tissue-engineered skeletal muscle constructs. Conclusions: This approach has the potential to yield functional skeletal muscle substitutes with high force generation ability.
机译:简介:组织工程化的骨骼肌构造应设计为通过定向运动产生收缩力。由于来自体神经系统的电脉冲对于体内骨骼肌的发育至关重要,因此电脉冲刺激(EPS)培养作为一种人工锻炼对于体外制造功能性骨骼肌组织至关重要。为了进一步改善肌肉功能,从诸如胰岛素样生长因子(IGF)-I之类的成肌生长因子激活细胞信号通路也很重要。由于组织工程化的骨骼肌构建体应保持较高的细胞致密结构,因此抗凋亡因子(例如B细胞淋巴瘤2(Bcl-2))的表达可有效预防细胞死亡。方法:在本研究中,使用诱导型IGF-1和Bcl-2基因表达单元对成肌细胞进行了基因修饰,并在连续EPS下培养了由成肌细胞构建的组织工程化骨骼肌构建体。结果:IGF-I基因的过表达诱导了肌肉组织结构中的肌肉肥大,而Bcl-2过表达的成肌细胞形成了明显的细胞密集和可行的肌肉组织结构。此外,IGF-I和Bcl-2基因转移与EPS培养的结合极大地改善了组织工程化骨骼肌构建体的产生力。结论:这种方法具有产生具有高力产生能力的功能性骨骼肌替代物的潜力。

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