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Stimulating effect of thyroid hormones in peripheral nerve regeneration:research history and future direction toward clinical therapy 被引量:4
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作者 I.Barakat-Walter R.Kraftsik 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第4期599-608,共10页
Injury to peripheral nerves is often observed in the clinic and severe injuries may cause loss of motor and sensory functions.Despite extensive investigation,testing various surgical repair techniques and neurotrophic... Injury to peripheral nerves is often observed in the clinic and severe injuries may cause loss of motor and sensory functions.Despite extensive investigation,testing various surgical repair techniques and neurotrophic molecules,at present,a satisfactory method to ensuring successful recovery does not exist.For successful molecular therapy in nerve regeneration,it is essential to improve the intrinsic ability of neurons to survive and to increase the speed of axonal outgrowth.Also to induce Schwann cell phenotypical changes to prepare the local environment favorable for axonal regeneration and myelination.Therefore,any molecule that regulates gene expression of both neurons and Schwann cells could play a crucial role in peripheral nerve regeneration.Clinical and experimental studies have reported that thyroid hormones are essential for the normal development and function of the nervous system,so they could be candidates for nervous system regeneration.This review provides an overview of studies devoted to testing the effect of thyroid hormones on peripheral nerve regeneration.Also it emphasizes the importance of combining biodegradable tubes with local administration of triiodothyronine for future clinical therapy of human severe injured nerves.We highlight that the local and single administration of triiodothyronine within biodegradable nerve guide improves significantly the regeneration of severed peripheral nerves,and accelerates functional recovering.This technique provides a serious step towards future clinical application of triiodothyronine in human severe injured nerves.The possible regulatory mechanism by which triiodothyronine stimulates peripheral nerve regeneration is a rapid action on both axotomized neurons and Schwann cells. 展开更多
关键词 peripheral nerve regeneration thyroid hormones thyroid hormone nuclear receptors biodegradable nerve growth guides axotomized neuron survival MICROSURGERY reinnervation of denervated muscles compound muscle action potential
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单、双神经植入使肌肉恢复神经支配的实验研究及临床应用
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作者 杨超 葛宝丰 刘兴炎 《中华创伤杂志》 CAS CSCD 北大核心 1992年第6期331-334,共4页
用单、双神经植入失神经肌不同部位,比较神经植入的数量与植入部位对肌肉功能重建的影响。肌电图、肌重、肌力及组织学、组织化学、透射电镜的观察测定证明:原运动终板失去神经后,不植入神经,8周时已失去正常形态,并无神经轴突与肌纤维... 用单、双神经植入失神经肌不同部位,比较神经植入的数量与植入部位对肌肉功能重建的影响。肌电图、肌重、肌力及组织学、组织化学、透射电镜的观察测定证明:原运动终板失去神经后,不植入神经,8周时已失去正常形态,并无神经轴突与肌纤维连接。双神经植入后4周,两根神经均与肌纤维产生了新的终末连接结构,能使较多的肌纤维恢复支配,有比单神经植入更完善的肌电图及肌力的恢复。观察到神经轴突肌肉内生长过程及新生终板的形态,发现新生终板具有正常终板的超微结构特征。临床采用游离腓肠肌移植重建前臂屈肌功能6例,疗效满意。 展开更多
关键词 植入术 肌肉功能重建 神经外科手术
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