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首页> 外文期刊>Tissue engineering, Part A >Engineered Skeletal Muscle Units for Repair of Volumetric Muscle Loss in the Tibialis Anterior Muscle of a Rat
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Engineered Skeletal Muscle Units for Repair of Volumetric Muscle Loss in the Tibialis Anterior Muscle of a Rat

机译:工程骨骼肌单元修复大鼠胫骨前肌中体积性肌肉丢失的修复

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摘要

Volumetric muscle loss (VML) is the traumatic, degenerative, or surgical loss of muscle tissue, which may result in function loss and physical deformity. To date, clinical treatments for VML-the reflected muscle flap or transferred muscle graft-are limited by tissue availability and donor site morbidity. To address the need for more innovative skeletal muscle repair options, our laboratory has developed scaffoldless tissue-engineered skeletal muscle units (SMUs), multiphasic tissue constructs composed of engineered skeletal muscle with engineered bone-tendon ends, myotendinous junctions, and entheses, which in vitro can produce force both spontaneously and in response to electrical stimulation. Though phenotypically immature in vitro, we have shown that following 1 week of implantation in an ectopic site, our muscle constructs develop vascularization and innervation, an epimysium-like outer layer of connective tissue, an increase in myosin protein content, formation of myofibers, and increased force production. These findings suggest that our engineered muscle tissue survives implantation and develops the interfaces necessary to advance the phenotype toward adult muscle. The purpose of this study was to evaluate the potential of our SMUs to restore muscle tissue to sites of acute VML. Our results indicate that our SMUs continue to mature in vivo with longer recovery times and have the potential to repair VML sites by providing additional muscle fibers to damaged muscles. We conclude from this study that our SMUs have the potential to restore lost tissue volume in cases of acute VML.
机译:体积性肌肉丢失(VML)是肌肉组织的创伤性,变性性或外科性丧失,可能导致功能丧失和身体畸形。迄今为止,VML的临床治疗(反射的肌肉皮瓣或转移的肌肉移植物)受到组织可用性和供体部位发病率的限制。为了满足对更多创新性骨骼肌修复方案的需求,我们的实验室开发了无支架组织工程化骨骼肌单元(SMU),由工程化骨骼肌组成的多相组织结构,其中工程化骨骼肌端,肌腱连接点和骨骼均在其中体外可以自发地产生力并响应电刺激而产生力。尽管在体外表型不成熟,但我们已经表明,在异位部位植入1周后,我们的肌肉结构会出现血管化和神经支配,结缔组织的表皮样外层,肌球蛋白的含量增加,肌纤维形成,并且增加部队生产。这些发现表明,我们的工程肌肉组织在植入过程中幸存下来,并发展了将表型推向成年肌肉所必需的界面。这项研究的目的是评估我们的SMU将肌肉组织恢复到急性VML部位的潜力。我们的结果表明,我们的SMU继续在体内以更长的恢复时间在体内成熟,并具有通过向受损的肌肉提供额外的肌肉纤维来修复VML部位的潜力。我们从这项研究中得出结论,在急性VML的情况下,我们的SMU具有恢复丢失的组织体积的潜力。

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