首页> 美国卫生研究院文献>Tissue Engineering. Part A >Effects of B-Cell Lymphoma 2 Gene Transfer to Myoblast Cells on Skeletal Muscle Tissue Formation Using Magnetic Force-Based Tissue Engineering
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Effects of B-Cell Lymphoma 2 Gene Transfer to Myoblast Cells on Skeletal Muscle Tissue Formation Using Magnetic Force-Based Tissue Engineering

机译:B细胞淋巴瘤2基因转移到成肌细胞对骨骼肌组织形成的影响基于磁力的组织工程学

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摘要

Tissue-engineered skeletal muscle should possess a high cell-dense structure with unidirectional cell alignment. However, limited nutrient and/or oxygen supply within the artificial tissue constructs might restrict cell viability and muscular functions. In this study, we genetically modified myoblast cells with the anti-apoptotic B-cell lymphoma 2 (Bcl-2) gene and evaluated their function in artificial skeletal muscle tissue constructs. Magnetite cationic liposomes were used to magnetically label C2C12 myoblast cells for the construction of skeletal muscle bundles by applying a magnetic force. Bcl-2-overexpressing muscle bundles formed highly cell-dense and viable tissue constructs, while muscle bundles without Bcl-2 overexpression exhibited substantial necrosis/apoptosis at the central region of the bundle. Bcl-2-overexpressing muscle bundles contracted in response to electrical pulses and generated a significantly higher physical force. These findings indicate that the incorporation of anti-apoptotic gene-transduced myoblast cells into tissue constructs significantly enhances skeletal muscle formation and function.
机译:组织工程化的骨骼肌应具有高细胞密度的结构,具有单向细胞排列。然而,在人造组织构建体内有限的营养和/或氧气供应可能会限制细胞活力和肌肉功能。在这项研究中,我们用抗凋亡B细胞淋巴瘤2(Bcl-2)基因遗传修饰了成肌细胞,并评估了它们在人工骨骼肌组织构建物中的功能。磁铁矿阳离子脂质体用于磁性标记C2C12成肌细胞,通过施加磁力来构建骨骼肌束。 Bcl-2过表达的肌肉束形成高度细胞密集和可行的组织构造,而没有Bcl-2过表达的肌肉束在束的中央区域表现出实质性的坏死/凋亡。 Bcl-2过表达的肌肉束响应电脉冲而收缩,并产生明显更高的物理力。这些发现表明,将抗凋亡基因转导的成肌细胞掺入组织构建体中显着增强了骨骼肌的形成和功能。

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