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Mesenchymal Stem Cells and Biomaterials Systems-Perspectives for Skeletal Muscle Tissue Repair and Regeneration

机译:间充质干细胞和生物材料系统 - 骨骼肌组织修复和再生的透视

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Skeletal muscle is essential in voluntary movement and other major vital functions. Muscle injuries are important in clinical practice and, despite skeletal muscle's good regenerative ability, severe tissue loss impairs complete myofibre regeneration, limiting structural and functional recovery of the affected muscle, eventually leading to the development of non-contractile fibrous scar. The intrinsic healing mechanisms rely in great extent on the residing progenitor population but significant drawbacks to their practical application in regenerative strategies boosted the search for alternative cell sources, such as extra-fetal mesenchymal stem cells (MSCs). MSCs have demonstrated to positively influence the regeneration of different disease models. When severe volumetric muscle tissue loss occurs, the body is seldom capable of replacing the lost portions with folly functional tissue. A rational strategy to aid the healing of such situations is the application of biomaterial implants that provide a structural matrix for the ingrowth of regenerating muscle fibres. Both synthetic and natural biomaterials have been hypothesized for this purpose and some have reached as far clinical cases applications. Obvious improvements are observed in most cases, but reaction to some biomaterials and functional recovery are still a challenge. The addition of MSCs to the biomaterials seems to improve the systems' performance in the overall regenerative milieu. This strategies promote scaffold's vascularization and integration, as well as accelerated tissue ingrowth and reduces scar formation, resulting in improved recovery rates at both structural and functional levels.
机译:骨骼肌在自愿运动和其他主要重要功能方面是必不可少的。肌肉伤害在临床实践中是重要的,尽管骨骼肌的良好再生能力良好,严重的组织损失损害了完全的肌纤维再生,限制受影响的肌肉的结构和功能恢复,最终导致非收缩纤维瘢痕的发展。内在愈合机制在很大程度上依赖于居住的祖先人群,但在再生策略中的实际应用中的显着缺点提高了寻找替代细胞来源,例如胎儿间充质干细胞(MSCs)。 MSCS已经证明了对不同疾病模型的再生产生积极影响。当发生严重的体积肌肉组织损失时,身体很少能够用愚蠢的功能组织更换丢失的部分。有助于援助这种情况的愈合的理性策略是施用生物材料植入物,其提供用于再生肌纤维的生长的结构基质。为此目的已经假设合成和天然生物材料,有些已经达到了远远临床案例应用。在大多数情况下观察到明显的改善,但对某些生物材料的反应和功能性恢复仍然是一个挑战。向生物材料添加MSC似乎可以改善整个再生环境中的系统性能。该策略促进了脚手架的血管化和整合,以及加速组织造成和减少瘢痕形成,导致结构和功能水平的恢复率改善。

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