The Treatment of Muscle Atrophy After Rotator Cuff Tears Using Electroconductive Nanofibrous Matrices

肩袖 眼泪 肌肉萎缩 医学 细胞外基质 肌腱 外科 再生(生物学) 肩袖损伤 萎缩 病理 细胞生物学 生物
作者
Xiaoyan Tang,Nikoo Saveh Shemshaki,Varadraj N. Vernekar,Anupama Prabhath,Emmanuel Kuyinu,Ho‐Man Kan,Mohammed A. Barajaa,Yusuf Khan,Cato T. Laurencin
出处
期刊:Regenerative engineering and translational medicine [Springer Science+Business Media]
卷期号:7 (1): 1-9 被引量:20
标识
DOI:10.1007/s40883-020-00186-8
摘要

Rotator cuff tears (RCTs) are a common cause of disability and pain in the adult population. Despite the successful repair of the torn tendon, the delay between the time of injury and time of repair can cause muscle atrophy. The goal of the study was to engineer an electroconductive nanofibrous matrix with an aligned orientation to enhance muscle regeneration after rotator cuff (RC) repair. The electroconductive nanofibrous matrix was fabricated by coating Poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate) (PEDOT:PSS) nanoparticles onto the aligned poly(e-caprolactone) (PCL) electrospun nanofibers. The regenerative potential of the matrix was evaluated using two repair models of RCTs include acute and sub-acute. Sprague-Dawley rats (n=39) were randomly assigned to 1 of 8 groups. For the acute model, the matrix was implanted on supraspinatus muscle immediately after the injury. The repair surgery for the sub-acute model was conducted 6 weeks after injury. The supraspinatus muscle was harvested for histological analysis two and six weeks after repair. The results demonstrated the efficacy of electrical and topographical cues on the treatment of muscle atrophy in vivo. In both acute and sub-acute models, the stimulus effects of topographical and electrical cues reduced the gap area between muscle fibers. This study showed that muscle atrophy can be alleviated by successful surgical repair using an electroconductive nanofibrous matrix in a rat RC model.
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