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Electrospun degradable polyesterurethane membranes: potential scaffolds for skeletal muscle tissue engineering

机译:电纺可降解聚酯聚氨酯膜:骨骼肌组织工程的潜在支架

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摘要

Skeletal muscle tissue engineering represents an attractive approach to overcome problems associated with autologous transfer of muscle tissue and provides a valid alternative in muscle regeneration enhancement. The aim of this study was to investigate the suitability, as scaffold for skeletal muscle tissue engineering, of a known biodegradable block copolymer (DegraPol (R)) processed by electrospinning in the novel form of microfibrous membranes. Scaffolds were characterized with reference to their morphological, degradative and mechanical properties. Subsequently, cell viability, adhesion and differentiation on coated and uncoated DegraPol (R) slides were investigated using line cells (C2C12 and L6) and primary human satellite cells (HSCs). The membranes exhibited absence of toxic residuals and satisfactory mechanical properties (linear elastic behavior up to 10% deformation, E modulus in the order of magnitude of MPa). A promising cellular response was also found in preliminary experiments: both line cells and HSCs adhered, proliferated and fused on differently coated electrospun membranes. Positive staining for myosin heavy chain expression indicated that differentiation of C2C12 multinucleated cells occurred within the porous elastomeric substrate. Together the results of this study provide significant evidence of the suitability of electrospun DegraPol (R) membranes as scaffolds for skeletal muscle tissue engineering and that they represent a promising alternative to scaffolds currently used in this field. (c) 2004 Elsevier Ltd. All rights reserved.
机译:骨骼肌组织工程学是克服与肌肉组织自体转移相关的问题的一种有吸引力的方法,并为增强肌肉再生提供了有效的替代方法。这项研究的目的是研究通过电纺丝以新型形式的微纤维膜加工的已知可生物降解的嵌段共聚物(DegraPol(R))作为骨骼肌组织工程的支架的适用性。参照其形态,降解和机械性能对其进行表征。随后,使用线细胞(C2C12和L6)和原代人卫星细胞(HSC)研究了包被和未包被的DegraPol®载玻片上的细胞活力,粘附力和分化。膜表现出无毒残留物和令人满意的机械性能(线性弹性行为,直至10%变形,E模量为MPa量级)。在初步实验中还发现了有希望的细胞应答:系细胞和HSC都粘附,增殖并融合在不同涂层的电纺膜上。肌球蛋白重链表达的阳性染色表明,多孔弹性体基质内发生了C2C12多核细胞的分化。这项研究的结果共同提供了电纺DegraPol(R)膜作为骨骼肌组织工程支架的适用性的重要证据,并且它们代表了该领域目前使用的支架的有希望的替代品。 (c)2004 Elsevier Ltd.保留所有权利。

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