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Transplantation of human amniotic epithelial cells repairs brachial plexus injury:pathological and biomechanical analyses 被引量:3

Transplantation of human amniotic epithelial cells repairs brachial plexus injury:pathological and biomechanical analyses
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摘要 A brachial plexus injury model was established in rabbits by stretching the C6 nerve root. Imme- diately after the stretching, a suspension of human amniotic epithelial cells was injected into the injured brachial plexus. The results of tensile mechanical testing of the brachial plexus showed that the tensile elastic limit strain, elastic limit stress, maximum stress, and maximum strain of the injured brachial plexuses were significantly increased at 24 weeks after the injection. The treatment clearly improved the pathological morphology of the injured brachial plexus nerve, as seen by hematoxylin eosin staining, and the functions of the rabbit forepaw were restored. These data indicate that the injection of human amniotic epithelial cells contributed to the repair of brachial plexus injury, and that this technique may transform into current clinical treatment strategies. A brachial plexus injury model was established in rabbits by stretching the C6 nerve root. Imme- diately after the stretching, a suspension of human amniotic epithelial cells was injected into the injured brachial plexus. The results of tensile mechanical testing of the brachial plexus showed that the tensile elastic limit strain, elastic limit stress, maximum stress, and maximum strain of the injured brachial plexuses were significantly increased at 24 weeks after the injection. The treatment clearly improved the pathological morphology of the injured brachial plexus nerve, as seen by hematoxylin eosin staining, and the functions of the rabbit forepaw were restored. These data indicate that the injection of human amniotic epithelial cells contributed to the repair of brachial plexus injury, and that this technique may transform into current clinical treatment strategies.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第24期2159-2163,共5页 中国神经再生研究(英文版)
基金 financially supported by a grant from the Science and Technology Development Project of Jilin Province of China,No.20110492
关键词 nerve regeneration peripheral nerve injury brachial plexus injury animal model human amniotic epithelial cells forepaw function morphology tensile mechanics neural regeneration nerve regeneration peripheral nerve injury brachial plexus injury animal model human amniotic epithelial cells forepaw function morphology tensile mechanics neural regeneration
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