搜索到66867篇“ NERVE“的相关文章
EZH2-dependent myelination following sciatic nerve injury
2025年
Demyelination and remyelination have been major focal points in the study of peripheral nerve regeneration following peripheral nerve injury.Notably,the gene regulatory network of regenerated myelin differs from that of native myelin.Silencing of enhancer of zeste homolog 2(EZH2)hinders the differentiation,maturation,and myelination of Schwann cells in vitro.To further determine the role of EZH2 in myelination and recovery post-peripheral nerve injury,conditional knockout mice lacking Ezh2 in Schwann cells(Ezh2^(fl/fl);Dhh-Cre and Ezh2^(fl/fl);Mpz-Cre)were generated.Our results show that a significant proportion of axons in the sciatic nerve of Ezh2-depleted mice remain unmyelinated.This highlights the crucial role of Ezh2 in initiating Schwann cell myelination.Furthermore,we observed that 21 days after inducing a sciatic nerve crush injury in these mice,most axons had remyelinated at the injury site in the control nerve,while Ezh2^(fl/fl);Mpz-Cre mice had significantly fewer remyelinated axons compared with their wild-type littermates.This suggests that the absence of Ezh2 in Schwann cells impairs myelin formation and remyelination.In conclusion,EZH2 has emerged as a pivotal regulatory factor in the process of demyelination and myelin regeneration following peripheral nerve injury.Modulating EZH2 activity during these processes may offer a promising therapeutic target for the treatment of peripheral nerve injuries.
Hui ZhuLi MuXi XuTianyi HuangYing WangSiyuan XuYiting WangWencong WangZhiping WangHongkui WangChengbin Xue
关键词:DEMYELINATIONEZH2MYELINATIONREMYELINATION
聚氨酯材料修复周围神经的新思路与机遇
2025年
背景:聚氨酯材料因优异的理化性质在生物医学领域中具有广泛的应用前景,对基于聚氨酯材料构建的神经导管进行仿生设计和功能化修饰,有望进一步解决神经再生修复难题。目的:综述基于聚氨酯材料构建的神经导管在周围神经修复领域的应用现状及进展。方法:设置英文检索词为“polyurethane,PU,polyurethane material,polyurethane biomaterials,nerve regeneration,peripheral nerve injury,nerve repair,nerve scaffold,nerve guidance conduit,nerve conduits”,中文检索词为“聚氨酯,PU,聚氨酯材料,聚氨酯生物材料,神经再生,周围神经损伤,神经修复,神经支架,神经导管”,检索PubMed、Web of Science、中国知网和万方数据库中2014-2024年发表的文献,最终纳入61篇文献进行综述。结果与结论:成分仿生是提高聚氨酯神经导管生物活性的有效策略。通过结构仿生优化聚氨酯神经导管,能够为神经组织再生提供生物引导线索。生物力学仿生聚氨酯神经导管可能在免疫调节和促进轴突生长中发挥重要作用。通过优化聚氨酯材料的导电微环境,有助于重建神经电信号传导通路。聚氨酯神经导管可作为药物载体,发挥抗炎和神经保护作用。联合应用多种设计策略优化聚氨酯神经导管虽然可以在多方面改善受损神经的功能,但由于神经复杂的结构和动态变化的病理生理微环境,神经导管设计策略仍旧有待完善。未来进一步改进和创新神经仿生设计策略,有望为神经组织工程领域的发展提供新的思路和机遇。
蓝晓倩冯光力覃诗忆钟莲梅李庆
关键词:聚氨酯周围神经修复神经导管
不同频率电刺激促进周围神经损伤的恢复
2025年
背景:电刺激是治疗周围神经损伤有效的治疗方案,但不同频率电刺激促进周围神经恢复的机制和应用不同。目的:旨在系统梳理和总结不同频率电刺激在周围神经损伤治疗中的作用和应用,深入分析各种方法的优缺点,以期找到最有利于患者神经恢复的治疗策略。方法:应用计算机检索中国知网、PubMed数据库自建库至2024年5月期间的相关文献,英文检索词为“peripheral nerve injury,electrical stimulation,low frequency electrical stimulation,medium frequency electrical stimulation,high frequency electrical stimulation,TENS,interfering electricity,short wave,ultrashort wave,frequency”,中文检索词为“周围神经损伤,电刺激,低频电刺激,中频电刺激,高频电刺激,干扰电疗法,短波,超短波,频率,周围神经再生”,最终纳入74篇文献进行分析。结果与结论:周围神经损伤作为临床中常见的疾病,会引起患者感觉与运动功能障碍。低频电刺激能够促进电刺激后细胞增殖并加速细胞内神经生长因子表达,促进巨噬细胞募集和浸润,加速髓磷脂碎片的清除,促进受损轴突的髓鞘再生。中频电刺激能够作用于更深部位组织,对于缓解神经性疼痛方面更佳。高频电刺激能够促进施万细胞和巨噬细胞增殖并抑制炎性因子,更快募集到神经损伤部位,加快神经修复的速度。不同频率的电刺激在周围神经损伤恢复中各具优点,但是仍存在一些问题,例如电刺激的部位以及应对各种疾病类型的方案不同等。
刘敏琦高明威褚晓蕾邢政李世浩丁宁李亚杰李奇
关键词:周围神经损伤电刺激低频电刺激神经再生周围神经
A functional tacrolimus-releasing nerve wrap for enhancing nerve regeneration following surgical nerve repair
2025年
Axonal regeneration following surgical nerve repair is slow and often incomplete,resulting in poor functional recovery which sometimes contributes to lifelong disability.Currently,there are no FDA-approved therapies available to promote nerve regeneration.Tacrolimus accelerates axonal regeneration,but systemic side effects presently outweigh its potential benefits for peripheral nerve surgery.The authors describe herein a biodegradable polyurethane-based drug delivery system for the sustained local release of tacrolimus at the nerve repair site,with suitable properties for scalable production and clinical application,aiming to promote nerve regeneration and functional recovery with minimal systemic drug exposure.Tacrolimus is encapsulated into co-axially electrospun polycarbonate-urethane nanofibers to generate an implantable nerve wrap that releases therapeutic doses of bioactive tacrolimus over 31 days.Size and drug loading are adjustable for applications in small and large caliber nerves,and the wrap degrades within 120 days into biocompatible byproducts.Tacrolimus released from the nerve wrap promotes axon elongation in vitro and accelerates nerve regeneration and functional recovery in preclinical nerve repair models while off-target systemic drug exposure is reduced by 80%compared with systemic delivery.Given its surgical suitability and preclinical efficacy and safety,this system may provide a readily translatable approach to support axonal regeneration and recovery in patients undergoing nerve surgery.
Simeon C.DaeschlerKatelyn J.W.SoKonstantin FeinbergMarina ManorajJenny CheungJennifer ZhangKaveh MirmoeiniJPaul SanterreTessa GordonGregory HBorschel
关键词:BIODEGRADABLETACROLIMUS
A novel flexible nerve guidance conduit promotes nerve regeneration while providing excellent mechanical properties
2025年
Autografting is the gold standard for surgical repair of nerve defects>5 mm in length;however,autografting is associated with potential complications at the nerve donor site.As an alternative,nerve guidance conduits may be used.The ideal conduit should be flexible,resistant to kinks and lumen collapse,and provide physical cues to guide nerve regeneration.We designed a novel flexible conduit using electrospinning technology to create fibers on the innermost surface of the nerve guidance conduit and employed melt spinning to align them.Subsequently,we prepared disordered electrospun fibers outside the aligned fibers and helical melt-spun fibers on the outer wall of the electrospun fiber lumen.The presence of aligned fibers on the inner surface can promote the extension of nerve cells along the fibers.The helical melt-spun fibers on the outer surface can enhance resistance to kinking and compression and provide stability.Our novel conduit promoted nerve regeneration and functional recovery in a rat sciatic nerve defect model,suggesting that it has potential for clinical use in human nerve injuries.
Tong LiQuhan ChengJingai ZhangBoxin LiuYu ShiHaoxue WangLijie HuangSu ZhangRuixin ZhangSong WangGuangxu LuPeifu TangZhongyang LiuKai Wang
Silk-based nerve guidance conduits with macroscopic holes modulate the vascularization of regenerating rat sciatic nerve
2025年
Peripheral nerve injuries induce a severe motor and sensory deficit. Since the availability of autologous nerve transplants for nerve repair is very limited, alternative treatment strategies are sought, including the use of tubular nerve guidance conduits(tNGCs). However, the use of tNGCs results in poor functional recovery and central necrosis of the regenerating tissue, which limits their application to short nerve lesion defects(typically shorter than 3 cm). Given the importance of vascularization in nerve regeneration, we hypothesized that enabling the growth of blood vessels from the surrounding tissue into the regenerating nerve within the tNGC would help eliminate necrotic processes and lead to improved regeneration. In this study, we reported the application of macroscopic holes into the tubular walls of silk-based tNGCs and compared the various features of these improved silk^(+) tNGCs with the tubes without holes(silk^(–) tNGCs) and autologous nerve transplants in an 8-mm sciatic nerve defect in rats. Using a combination of micro-computed tomography and histological analyses, we were able to prove that the use of silk^(+) tNGCs induced the growth of blood vessels from the adjacent tissue to the intraluminal neovascular formation. A significantly higher number of blood vessels in the silk^(+) group was found compared with autologous nerve transplants and silk^(–), accompanied by improved axon regeneration at the distal coaptation point compared with the silk^(–) tNGCs at 7 weeks postoperatively. In the 15-mm(critical size) sciatic nerve defect model, we again observed a distinct ingrowth of blood vessels through the tubular walls of silk^(+) tNGCs, but without improved functional recovery at 12 weeks postoperatively. Our data proves that macroporous tNGCs increase the vascular supply of regenerating nerves and facilitate improved axonal regeneration in a short-defect model but not in a critical-size defect model. This study suggests that further optimization of the macroscopic holes silk^(+) tNGC a
Carina HromadaPatrick HeimelMarkus KerblLászlóGálSylvia NürnbergerBarbara SchaedlJames FergusonNicole SwiadekXavier MonforteJohannes C.HeinzelAntal NógrádiAndreas H.Teuschl-WollerDavid Hercher
关键词:VASCULARIZATION
Resting-state brain network remodeling after different nerve reconstruction surgeries:a functional magnetic resonance imaging study in brachial plexus injury rats
2025年
Distinct brain remodeling has been found after different nerve reconstruction strategies,including motor representation of the affected limb.However,differences among reconstruction strategies at the brain network level have not been elucidated.This study aimed to explore intranetwork changes related to altered peripheral neural pathways after different nerve reconstruction surgeries,including nerve repair,endto-end nerve transfer,and end-to-side nerve transfer.Sprague–Dawley rats underwent complete left brachial plexus transection and were divided into four equal groups of eight:no nerve repair,grafted nerve repair,phrenic nerve end-to-end transfer,and end-to-side transfer with a graft sutured to the anterior upper trunk.Resting-state brain functional magnetic resonance imaging was obtained 7 months after surgery.The independent component analysis algorithm was utilized to identify group-level network components of interest and extract resting-state functional connectivity values of each voxel within the component.Alterations in intra-network resting-state functional connectivity were compared among the groups.Target muscle reinnervation was assessed by behavioral observation(elbow flexion)and electromyography.The results showed that alterations in the sensorimotor and interoception networks were mostly related to changes in the peripheral neural pathway.Nerve repair was related to enhanced connectivity within the sensorimotor network,while end-to-side nerve transfer might be more beneficial for restoring control over the affected limb by the original motor representation.The thalamic-cortical pathway was enhanced within the interoception network after nerve repair and end-to-end nerve transfer.Brain areas related to cognition and emotion were enhanced after end-to-side nerve transfer.Our study revealed important brain networks related to different nerve reconstructions.These networks may be potential targets for enhancing motor recovery.
Yunting XiangXiangxin XingXuyun HuaYuwen ZhangXin XueJiajia WuMouxiong ZhengHe WangJianguang Xu
Autophagy-targeting modulation to promote peripheral nerve regeneration
2025年
Nerve regeneration following traumatic peripheral nerve injuries and neuropathies is a complex process modulated by diverse factors and intricate molecular mechanisms.Past studies have focused on factors that stimulate axonal outgrowth and myelin regeneration.However,recent studies have highlighted the pivotal role of autophagy in peripheral nerve regeneration,particularly in the context of traumatic injuries.Consequently,autophagy-targeting modulation has emerged as a promising therapeutic approach to enhancing peripheral nerve regeneration.Our current understanding suggests that activating autophagy facilitates the rapid clearance of damaged axons and myelin sheaths,thereby enhancing neuronal survival and mitigating injury-induced oxidative stress and inflammation.These actions collectively contribute to creating a favorable microenvironment for structural and functional nerve regeneration.A range of autophagyinducing drugs and interventions have demonstrated beneficial effects in alleviating peripheral neuropathy and promoting nerve regeneration in preclinical models of traumatic peripheral nerve injuries.This review delves into the regulation of autophagy in cell types involved in peripheral nerve regeneration,summarizing the potential drugs and interventions that can be harnessed to promote this process.We hope that our review will offer novel insights and perspectives on the exploitation of autophagy pathways in the treatment of peripheral nerve injuries and neuropathies.
Yan ChenHongxia DengNannan Zhang
关键词:AUTOPHAGYMETFORMINMYELINATION
神经生长因子对骨骼形成及骨疾病的影响
2025年
背景:神经生长因子在骨骼的生理和病理进程中发挥了重要作用,系统性分析神经生长因子对骨组织的影响在组织工程及临床治疗两方面都具有重要意义。目的:探究神经生长因子通过骨组织细胞和骨神经-血管耦合等途径调控骨形成的过程,同时研究神经生长因子在骨相关疾病病理进程中的作用。方法:在中国知网、万方、PubMed数据库以“神经生长因子,TrkA,骨,软骨”为中文检索词,以“Nerve growth factor,TrkA,NGF,bone,cartilage”为英文检索词进行文献检索,共检索到2 925篇文献。经过筛选后纳入116篇文献进行归纳总结,撰写综述。结果与结论:神经生长因子既可在骨、软骨、神经、血管等组织细胞中表达,又可作用于这些细胞发挥调控作用。通过多种分泌调控方式,神经生长因子在骨组织内部和骨、神经、血管组织间发挥信号传导作用。通过促进骨髓间充质干细胞的增殖、分化,神经生长因子可促进骨形成及骨修复。神经生长因子介导的破骨细胞生成说明其对骨组织具有多向调控作用。同时,神经生长因子与多种骨科疾病的发生发展高度相关,可能提供新的临床治疗思路。对神经生长因子的研究是了解骨骼生理及病理变化的重要方向之一。
魏鹤翔孙彬刘昊刘含强夏鹏
关键词:神经生长因子骨形成骨修复骨组织工程
人工智能在脊髓神经损伤与修复领域研究热点的可视化分析被引量:1
2025年
背景:近年来人工智能逐渐兴起,在多方面应用于脊髓神经损伤与修复领域,对临床治疗也有诸多积极影响。目的:研究人工智能在脊髓神经损伤与修复领域的诊断、治疗和康复中的应用进展,明确该领域的研究热点和不足,为今后研究工作提供建议。方法:在Web of Science核心集数据库检索建库至2023年收录的人工智能在脊髓神经损伤与修复领域相关文献,使用CiteSpace 6.1.R6和VOSviewer 1.6.19软件对文献数据进行一般文献学分析、文献共被引、期刊共被引、期刊双图叠加及关键词聚类等可视化分析。结果与结论:①共筛选出1713篇文章,此领域年发文量呈波动上升趋势,其中美国占据主导地位,Kadone Hideki是发文量最多的作者,《ARCH PHYS MED REHAB》是被引用次数最多的期刊。②关键词共现和聚类分析显示,去除与检索词相近的关键词后,主要关键词被分为3个主要集群:外骨骼与运动康复(为最大核心热点)、机器学习和神经可塑性、机器人和康复训练。③关键词爆发分析显示,深度学习和人工智能在过去5年中已成为突发术语。④文献共被引和高被引文献分析结果显示,人工智能在脊髓神经损伤与修复领域热点集中于动力外骨骼(powered exoskeleton)、步态(gait)、神经电刺激(electrical nerve stimulation)、皮质内脑机接口(intracortical brain-computer interface,IBCI)、机器人(robot)、高分子生物材料(polymer biomaterials)及神经干细胞(neural stem cell)等内容。⑤人工智能在脊髓神经损伤与修复领域的研究近年来呈现上升趋势,该领域的关注点从外骨骼、电刺激等单一的治疗手段,逐渐向智能化、精准化和个性化等方向转变。⑥该领域存在一些局限性,例如数据缺失或不平衡的后果、数据准确性和可重复性低以及伦理问题(如隐私、研究透明度和临床可靠性等),未来的研究应该解决数据收集的问题,需要大样�
杨彬陶广义杨顺许俊杰黄俊卿
关键词:人工智能神经再生脑机接口神经电刺激

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