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Remnant neuromuscular junctions in denervated muscles contribute to functional recovery in delayed peripheral nerve repair 被引量:2
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作者 Leyang Li Hiroyuki Yokoyama +5 位作者 Hidetoshi Kaburagi Takashi Hirai Kunikazu Tsuji Mitsuhiro Enomoto Yoshiaki Wakabayashi Atsushi Okawa 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第4期731-738,共8页
Schwann cell proliferation in peripheral nerve injury(PNI)enhances axonal regeneration compared to central nerve injury.However,even in PNI,long-term nerve damage without repair induces degeneration of neuromuscular j... Schwann cell proliferation in peripheral nerve injury(PNI)enhances axonal regeneration compared to central nerve injury.However,even in PNI,long-term nerve damage without repair induces degeneration of neuromuscular junctions(NMJs),and muscle atrophy results in irreversible dysfunction.The peripheral regeneration of motor axons depends on the duration of skeletal muscle denervation.To overcome this difficulty in nerve regeneration,detailed mechanisms should be determined for not only Schwann cells but also NMJ degeneration after PNI and regeneration after nerve repair.Here,we examined motor axon denervation in the tibialis anterior muscle after peroneal nerve transection in thy1-YFP mice and regeneration with nerve reconstruction using allografts.The number of NMJs in the tibialis anterior muscle was maintained up to 4 weeks and then decreased at 6 weeks after injury.In contrast,the number of Schwann cells showed a stepwise decline and then reached a plateau at 6 weeks after injury.For regeneration,we reconstructed the degenerated nerve with an allograft at 4 and 6 weeks after injury,and evaluated functional and histological outcomes for 10 to 12 weeks after grafting.A higher number of pretzel-shaped NMJs in the tibialis anterior muscle and better functional recovery were observed in mice with a 4-week delay in surgery than in those with a 6-week delay.Nerve repair within 4 weeks after PNI is necessary for successful recovery in mice.Prevention of synaptic acetylcholine receptor degeneration may play a key role in peripheral nerve regeneration.All animal experiments were approved by the Institutional Animal Care and Use Committee of Tokyo Medical and Dental University on 5 July 2017,30 March 2018,and 15 May 2019(A2017-311C,A2018-297A,and A2019-248A),respectively. 展开更多
关键词 AXON NERVE ALLOGRAFT NERVE regeneration NEURODEGENERATION neuromuscular junction peripheral NERVE injury Schwann cell skeletal muscle
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“Warming yang and invigorating qi” acupuncture alters acetylcholine receptor expression in the neuromuscular junction of rats with experimental autoimmune myasthenia gravis 被引量:4
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作者 Hai-peng Huang Hong Pan Hong-feng Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第3期465-468,共4页
Myasthenia gravis is an autoimmune disorder in which antibodies have been shown to form against the nicotinic acetylcholine nicotinic postsynaptic receptors located at the neuromuscular junction."Warming yang and inv... Myasthenia gravis is an autoimmune disorder in which antibodies have been shown to form against the nicotinic acetylcholine nicotinic postsynaptic receptors located at the neuromuscular junction."Warming yang and invigorating qi" acupuncture treatment has been shown to reduce serum inflammatory cytokine expression and increase transforming growth factor beta expression in rats with experimental autoimmune myasthenia gravis.However,few studies have addressed the effects of this type of acupuncture on the acetylcholine receptors at the neuromuscular junction.Here,we used confocal laser scanning microscopy to examine the area and density of immunoreactivity for an antibody to the nicotinic acetylcholine receptor at the neuromuscular junction in the phrenic nerve of rats with experimental autoimmune myasthenia gravis following "warming yang and invigorating qi" acupuncture therapy.Needles were inserted at acupressure points Shousanli(LI10),Zusanli(ST36),Pishu(BL20),and Shenshu(BL23) once daily for 7 consecutive days.The treatment was repeated after 1 day of rest.We found that area and the integrated optical density of the immunoreactivity for the acetylcholine receptor at the neuromuscular junction of the phrenic nerve was significantly increased following acupuncture treatment.This outcome of the acupuncture therapy was similar to that of the cholinesterase inhibitor pyridostigmine bromide.These findings suggest that "warming yang and invigorating qi" acupuncture treatment increases acetylcholine receptor expression at the neuromuscular junction in a rat model of autoimmune myasthenia gravis. 展开更多
关键词 nerve regeneration myasthenia gravis acupuncture "Warming yang and invigorating qi" experimental autoimmune myasthenia gravis neuromuscular junction acetylcholine receptor neural regeneration
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Active zone stability:insights from fly neuromuscular junction
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作者 Xiaolin Tian Chunlai Wu 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第5期677-678,共2页
The presynaptic active zone is a dynamic structure that orchestrates regulated release of neurotrans- mitters. Developmental and aging processes, and changes in neuronal network activity can all modulate the number, s... The presynaptic active zone is a dynamic structure that orchestrates regulated release of neurotrans- mitters. Developmental and aging processes, and changes in neuronal network activity can all modulate the number, size and composition of active zone and thereby synaptic efficacy. However, very little is known about the mechanism that controls the structural stability of active zone. By study- ing a model synapse, the Drosophila neuromuscular iunction, our recent work shed light on how two scaffolding proteins at the active zone regulate active zone stability by promoting a localized dephos- phorylation event at the nerve terminal. Here we discuss the major insights from our findings and their implications for future research. 展开更多
关键词 active zone stability DROSOPHILA neuromuscular junction DEPHOSPHORYLATION Liprin-α Syd-1 PP2A GSK-3β
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C9orf72 poly-GA proteins impair neuromuscular transmission 被引量:1
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作者 Wen-Yo Tu Wentao Xu +4 位作者 Jianmin Zhang Shuyuan Qi Lei Bai Chengyong Shen Kejing Zhang 《Zoological Research》 SCIE CAS CSCD 2023年第2期331-340,共10页
Amyotrophic lateral sclerosis(ALS) is a devastating motoneuron disease,in which lower motoneurons lose control of skeletal muscles.Degeneration of neuromuscular junctions(NMJs) occurs at the initial stage of ALS.Dipep... Amyotrophic lateral sclerosis(ALS) is a devastating motoneuron disease,in which lower motoneurons lose control of skeletal muscles.Degeneration of neuromuscular junctions(NMJs) occurs at the initial stage of ALS.Dipeptide repeat proteins(DPRs) from G4C2repeat-associated non-ATG(RAN) translation are known to cause C9orf72-associated ALS(C9-ALS).However,DPR inclusion burdens are weakly correlated with neurodegenerative areas in C9-ALS patients,indicating that DPRs may exert cell non-autonomous effects,in addition to the known intracellular pathological mechanisms.Here,we report that poly-GA,the most abundant form of DPR in C9-ALS,is released from cells.Local administration of poly-GA proteins in peripheral synaptic regions causes muscle weakness and impaired neuromuscular transmission in vivo.The NMJ structure cannot be maintained,as evidenced by the fragmentation of postsynaptic acetylcholine receptor(AChR) clusters and distortion of presynaptic nerve terminals.Mechanistic study demonstrated that extracellular poly-GA sequesters soluble Agrin ligands and inhibits Agrin-MuSK signaling.Our findings provide a novel cell non-autonomous mechanism by which poly-GA impairs NMJs in C9-ALS.Thus,targeting NMJs could be an early therapeutic intervention for C9-ALS. 展开更多
关键词 Amyotrophic lateral sclerosis neuromuscular junction Poly-Gly-Ala AGRIN
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The Drosophila adult neuromuscular junction as a model for unravelling amyloid peptide influence on synapse dynamics
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作者 Begona López-Arias Ignacio Monedero +1 位作者 Enrique Turiégano Laura Torroja 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第12期1987-1989,共3页
Amyloid peptide(Aβ)oligomers are considered one of the primary causal factors for the synaptic loss characteristic of Alzheimer’s disease(AD)(Karran and De Strooper,2016).However,Aβis generated in normal brai... Amyloid peptide(Aβ)oligomers are considered one of the primary causal factors for the synaptic loss characteristic of Alzheimer’s disease(AD)(Karran and De Strooper,2016).However,Aβis generated in normal brains and accumulates at synaptic sites,which raises the question whether Aβplays a physiological role in synapses. 展开更多
关键词 The Drosophila adult neuromuscular junction a model for unravelling amyloid peptide influence synapse dynamics
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EFFECTS OF MANGANESE ON NEUROMUSCULAR JUNCTION TRANSMISSION
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作者 曹永孝 车锡平 +1 位作者 王长江 李卫红 《Journal of Pharmaceutical Analysis》 CAS 1994年第1期1-4,10,共5页
The effects of manganese on neuromuscular junction transmission were studied in the isolated rat phrenic nerve diaphragm preparation, chick biventer cervicis nerve-muscle preparation and toad rectus abdominis muscle p... The effects of manganese on neuromuscular junction transmission were studied in the isolated rat phrenic nerve diaphragm preparation, chick biventer cervicis nerve-muscle preparation and toad rectus abdominis muscle preparation. It wa found that manganese could adversely andconcentration-dependently inhibit muscular contraction response developed by indirect stimulation or direct stimulation. The IC50 of indirect and direct stimulation were 0.28 mmol/L and 10 mmol/Lrespectively. The time required to inhibit 50% of the contraction by indirect stimulation was 4.3±1. 0 min. The inhibitory action could be antagonized partially by high Ca2+. Manganese could reduce the seusitivity of the chick biventer cervicis muscle to acetylcholine, and shift the dose-respond curves foracetylcholine to the right in a nonparallel manner with a pD2' value of 2. 62. The result suggested that manganese acted on pre- and post-synaptic sites. 展开更多
关键词 MANGANESE neuromuscular junction phrenic nerve diaphragm chick biventer Cervicis
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The postsynaptic effect of taxol on rat neuromuscular junction
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作者 高天明 陈肇熙 孙文颖 《Journal of Medical Colleges of PLA(China)》 CAS 1991年第4期348-352,共5页
Taxol was used as a tool reagent and the function of the microtubules (MTs) beneath thepostsynaptic membrane was studied in an isolated non-uniformly stretched muscle preparation of ratdiaphragm.After exposure to taxo... Taxol was used as a tool reagent and the function of the microtubules (MTs) beneath thepostsynaptic membrane was studied in an isolated non-uniformly stretched muscle preparation of ratdiaphragm.After exposure to taxol (20 μmol/L,10min),the amplitude of acetylcholine potential ofinnervated muscle endplate was decreased by 30%,but the lime course of AChP and membrane po-tential remained unchanged.The results indicate that taxol can inhibit the responsiveness ofpostsynapfic membrane.It is therefore suggested that the site of action of taxol indudng inhibitionof postsynapfic responsiveness in neuromuscular junction may be the microtubules beneath thepostsynapfic membrane. 展开更多
关键词 TAXOL neuromuscular junction MICROTUBULES rats
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Lesson from the neuromuscular junction:role of pattern and timing of nerve activity in synaptic development
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作者 Morgana Favero Alberto Cangiano Giuseppe Busetto 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第5期686-688,共3页
The anatomical plan of adult muscle innervation is relatively simple: a given muscle comprises several motor units, each constituted by one motor neuron and the muscle fibers that it innervates; moreover, every muscl... The anatomical plan of adult muscle innervation is relatively simple: a given muscle comprises several motor units, each constituted by one motor neuron and the muscle fibers that it innervates; moreover, every muscle fiber is innervated by only one axonal terminal. In other words, motor units have separate, although intermingled, territories of inner- vation (Figure 1D). In striking contrast, the anatomical organization is different at birth, when every muscle fiber is innervated by several nerve terminals belonging to different motor neurons, a condition known as "polyneuronal inner- vation", with the consequence that motor units have larger and overlapped territories of innervation (Figure 1A) (Tapia and Lichtman, 2012). Soon after birth, redundant nerve ter- minals are progressively eliminated in a couple of weeks in rodents, and muscle fibers acquire their mature mononeu- ronal innervation. The same process occurs again in the adult muscle during reinnervation after nerve damage, when a transient period of polyneuronal innervation involves a good fraction of the fibers (Rich and Lichtman, 1989; 展开更多
关键词 Lesson from the neuromuscular junction
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Ethylene thiourea exposure induces neurobehavioral toxicity in zebrafish by disrupting axon growth and neuromuscular junctions
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作者 Jingming Wang Zhiquan Yu +7 位作者 Yongfeng Wang Yuanyao Chen Lin Xiao Yanjun Zong Qiyuan Feng Lianqi Peng Huiping Zhang Chunyan Liu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第3期108-119,共12页
Ethylene thiourea(ETU)converted from ethylene bisdithiocarbamate(EBDC)fungicides has aroused great concern because of its prevalence and harmful effects.Although ETU-induced neurotoxicity has been reported,the potenti... Ethylene thiourea(ETU)converted from ethylene bisdithiocarbamate(EBDC)fungicides has aroused great concern because of its prevalence and harmful effects.Although ETU-induced neurotoxicity has been reported,the potential mechanisms remain unclear.This study provided insights into its neurotoxic effects at environmentally relevant concentrations in zebrafish.Our findings showed that embryonic exposure to ETU decreased the hatch rate and delayed somite development.Furthermore,ETU treatment significantly reduced the dark velocity in the locomotion assay.The upregulated tendency of the mitogen-activated protein kinases(MAPK)pathway(mknk1,atf4,mapkapk3)screened by transcriptome analysis implied motor neuron degeneration,which was validated by subsequent morphological observation,as axon length and branches were truncated in the 62.5μg/L ETU group.However,although the rescue experiment with a p38 MAPK inhibitor(SB203580)successfully ameliorated axon degeneration,it failed to reverse the locomotion behaviors.Further exploration of transcriptome data revealed the varied expression of presynaptic scaffold protein-related genes(pcloa,pclob,bsna),whose downregulation might impair the neuromuscular junction(NMJ).Therefore,we reasonably suspected that ETU-induced neurobehavioral deficits might result from the combined effects of the MAPK pathway and presynaptic proteins.Considering this,we highlighted the necessity to take precautions and early interventions for susceptible ETU-exposed populations. 展开更多
关键词 Ethylene thiourea(ETU) BEHAVIOR neuromuscular junction MAPK signaling pathway Piccolo and bassoon Danio rerio
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Treating amyotrophic lateral sclerosis with allogeneic Schwann cell-derived exosomal vesicles: a case report
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作者 Pascal J.Goldschmidt-Clermont Aisha Khan +8 位作者 George Jimsheleishvili Patricia Graham Adriana Brooks Risset Silvera Alexander J.P.Goldschmidt Damien D.Pearse W.Dalton Dietrich Allan D.Levi James D.Guest 《Neural Regeneration Research》 SCIE CAS 2025年第4期1207-1216,共10页
Schwann cells are essential for the maintenance and function of motor neurons,axonal networks,and the neuromuscular junction.In amyotrophic lateral sclerosis,where motor neuron function is progressively lost,Schwann c... Schwann cells are essential for the maintenance and function of motor neurons,axonal networks,and the neuromuscular junction.In amyotrophic lateral sclerosis,where motor neuron function is progressively lost,Schwann cell function may also be impaired.Recently,important signaling and potential trophic activities of Schwann cell-derived exosomal vesicles have been reported.This case report describes the treatment of a patient with advanced amyotrophic lateral sclerosis using serial intravenous infusions of allogeneic Schwann cell-derived exosomal vesicles,marking,to our knowledge,the first instance of such treatment.An 81-year-old male patient presented with a 1.5-year history of rapidly progressive amyotrophic lateral sclerosis.After initial diagnosis,the patient underwent a combination of generic riluzole,sodium phenylbutyrate for the treatment of amyotrophic lateral sclerosis,and taurursodiol.The patient volunteered to participate in an FDA-approved single-patient expanded access treatment and received weekly intravenous infusions of allogeneic Schwann cell-derived exosomal vesicles to potentially restore impaired Schwann cell and motor neuron function.We confirmed that cultured Schwann cells obtained from the amyotrophic lateral sclerosis patient via sural nerve biopsy appeared impaired(senescent)and that exposure of the patient’s Schwann cells to allogeneic Schwann cell-derived exosomal vesicles,cultured expanded from a cadaver donor improved their growth capacity in vitro.After a period of observation lasting 10 weeks,during which amyotrophic lateral sclerosis Functional Rating Scale-Revised and pulmonary function were regularly monitored,the patient received weekly consecutive infusions of 1.54×1012(×2),and then consecutive infusions of 7.5×1012(×6)allogeneic Schwann cell-derived exosomal vesicles diluted in 40 mL of Dulbecco’s phosphate-buffered saline.None of the infusions were associated with adverse events such as infusion reactions(allergic or otherwise)or changes in vital signs.Clinical lab serum neurofilament and cytokine levels measured prior to each infusion varied somewhat without a clear trend.A more sensitive in-house assay suggested possible inflammasome activation during the disease course.A trend for clinical stabilization was observed during the infusion period.Our study provides a novel approach to address impaired Schwann cells and possibly motor neuron function in patients with amyotrophic lateral sclerosis using allogeneic Schwann cell-derived exosomal vesicles.Initial findings suggest that this approach is safe. 展开更多
关键词 ALLOGENEIC amyotrophic lateral sclerosis EXOSOMES INFUSION neuromuscular junction Schwann cell
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Skeletal muscle as a molecular and cellular biomarker of disease progression in amyotrophic lateral sclerosis:a narrative review
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作者 Peter H.King 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第4期747-753,共7页
Amyotrophic lateral sclerosis is a fatal multisystemic neurodegenerative disease with motor neurons being a primary target.Although progressive weakness is a hallmark feature of amyotrophic lateral sclerosis,there is ... Amyotrophic lateral sclerosis is a fatal multisystemic neurodegenerative disease with motor neurons being a primary target.Although progressive weakness is a hallmark feature of amyotrophic lateral sclerosis,there is considerable heterogeneity,including clinical presentation,progression,and the underlying triggers for disease initiation.Based on longitudinal studies with families harboring amyotrophic lateral sclerosis-associated gene mutations,it has become apparent that overt disease is preceded by a prodromal phase,possibly in years,where compensatory mechanisms delay symptom onset.Since 85-90%of amyotrophic lateral sclerosis is sporadic,there is a strong need for identifying biomarkers that can detect this prodromal phase as motor neurons have limited capacity for regeneration.Current Food and Drug Administration-approved therapies work by slowing the degenerative process and are most effective early in the disease.Skeletal muscle,including the neuromuscular junction,manifests abnormalities at the earliest stages of the disease,before motor neuron loss,making it a promising source for identifying biomarkers of the prodromal phase.The accessibility of muscle through biopsy provides a lens into the distal motor system at earlier stages and in real time.The advent of“omics”technology has led to the identification of numerous dysregulated molecules in amyotrophic lateral sclerosis muscle,ranging from coding and non-coding RNAs to proteins and metabolites.This technology has opened the door for identifying biomarkers of disease activity and providing insight into disease mechanisms.A major challenge is correlating the myriad of dysregulated molecules with clinical or histological progression and understanding their relevance to presymptomatic phases of disease.There are two major goals of this review.The first is to summarize some of the biomarkers identified in human amyotrophic lateral sclerosis muscle that have a clinicopathological correlation with disease activity,evidence of a similar dysregulation in the SOD1G93A mouse during presymptomatic stages,and evidence of progressive change during disease progression.The second goal is to review the molecular pathways these biomarkers reflect and their potential role in mitigating or promoting disease progression,and as such,their potential as therapeutic targets in amyotrophic lateral sclerosis. 展开更多
关键词 amyotrophic lateral sclerosis biomarkers clinicopathological correlation disease progression muscle biomarkers neurogenic atrophy neuromuscular junction non-coding RNAs presymptomatic stages skeletal muscle SOD1G93A mouse model
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Three-dimensional in vitro models of neuromuscular tissue
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作者 Paolo Raffa Maria Easler Anna Urciuolo 《Neural Regeneration Research》 SCIE CAS CSCD 2022年第4期759-766,共8页
Skeletal muscle is a dynamic tissue in which homeostasis and function are guaranteed by a very defined three-dimensional organization of myofibers in respect to other nonmuscular components,including the extracellular... Skeletal muscle is a dynamic tissue in which homeostasis and function are guaranteed by a very defined three-dimensional organization of myofibers in respect to other nonmuscular components,including the extracellular matrix and the nervous network.In particular,communication between myofibers and the nervous system is essential for the overall correct development and function of the skeletal muscle.A wide range of chronic,acute and genetic-based human pathologies that lead to the alteration of muscle function are associated with modified preservation of the fine interaction between motor neurons and myofibers at the neuromuscular junction.Recent advancements in the development of in vitro models for human skeletal muscle have shown that three-dimensionality and integration of multiple cell types are both key parameters required to unveil pathophysiological relevant phenotypes.Here,we describe recent achievement reached in skeletal muscle modeling which used biomaterials for the generation of three-dimensional constructs of myotubes integrated with motor neurons. 展开更多
关键词 3D organization BIOENGINEERING BIOMATERIALS motor neurons neuromuscular junction skeletal muscle models
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果蝇Neuroligin 4以非依赖于Neurexin方式调控突触的发育
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作者 张新旺 耿俊华 +2 位作者 李莉 张娟 彭泽旭 《中国实验动物学报》 CAS CSCD 北大核心 2023年第7期864-870,共7页
目的探究果蝇突触黏附分子神经连接蛋白-4(Drosophila neuroligin 4,DNlg4)对幼虫神经肌肉突触发育的调控是否依赖于经典的neuroligin(Nlg)突触前配体分子轴突蛋白(Drosophila neurexin,DNrx)。方法主要利用免疫荧光染色和激光共聚焦显... 目的探究果蝇突触黏附分子神经连接蛋白-4(Drosophila neuroligin 4,DNlg4)对幼虫神经肌肉突触发育的调控是否依赖于经典的neuroligin(Nlg)突触前配体分子轴突蛋白(Drosophila neurexin,DNrx)。方法主要利用免疫荧光染色和激光共聚焦显微观测技术,对包括野生型、dnlg4突变体、dnrx突变体和dnlg4,dnrx双突变体等不同基因型果蝇三龄幼虫的神经肌肉接头(neuromuscular junction,NMJ)的形态进行观察,测量其突触分枝总长度并计数突触终扣(bouton)数目。以此作为NMJ发育状态参数,通过比较不同基因型果蝇的NMJ发育缺陷程度,确定DNlg4和DNrx在调控神经肌肉突触发育中的关系。结果DNrx缺失会导致较DNlg4缺失更严重的NMJ发育缺陷;缺失DNlg4会进一步加重因DNrx缺失而导致的NMJ发育缺陷;运动神经元表达外源的DNlg4可部分挽救DNrx缺失造成的NMJ发育缺陷;未检测到两类分子存在在体的相互结合。结论DNlg4与DNrx对果蝇幼虫神经肌肉突触发育的正向调控具有协同效应,DNlg4以非依赖于DNrx的方式调控神经肌肉突触的发育。 展开更多
关键词 神经连接蛋白 轴突蛋白 神经肌肉接头 突触发育 果蝇
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Tissue optical clearing imaging for structural changes of neuromuscular junctions after mice ischemic stroke[Invited] 被引量:1
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作者 徐健壹 戴奕 +4 位作者 宣昂 姚应涛 刘少军 俞婷婷 朱䒟 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第12期54-60,共7页
Ischemic stroke causes long-term disability and results in motor impairments.Such impairments are associated with structural changes in the neuromuscular junction(NMJ),including detailed morphology and three-dimension... Ischemic stroke causes long-term disability and results in motor impairments.Such impairments are associated with structural changes in the neuromuscular junction(NMJ),including detailed morphology and three-dimensional(3D)distribution.However,previous studies only explored morphological changes of individual NMJs after stroke,which limits the understanding of their role in post-stroke motor impairment.Here,we examine 3D distributions and detailed morphology of NMJs in entire mouse muscles after unilateral and bilateral strokes induced by photothrombosis.The results show that 3D distributions and numbers of NMJs do not change after stroke,and severe unilateral stroke causes similar levels of NMJ fragmentation and area enlargement to bilateral stroke.This research provides structural data,deepening the understanding of neuromuscular pathophysiology after stroke. 展开更多
关键词 tissue optical clearing optical imaging STROKE neuromuscular junction
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七氟烷或丙泊酚复合瑞芬太尼麻醉在重症肌无力患者胸腺切除术中的应用 被引量:24
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作者 吕宝胜 王卓强 +3 位作者 王卫 解恩宇 房芳 张晨 《解放军医学杂志》 CAS CSCD 北大核心 2013年第7期586-590,共5页
目的探讨七氟烷或丙泊酚复合瑞芬太尼麻醉在重症肌无力患者经胸骨正中切口胸腺扩大切除术中的应用,并比较其效果。方法搜集2008年7月-2011年6月于解放军309医院麻醉科行胸骨正中切口胸腺扩大切除术的重症肌无力患者156例,分为2组,其中... 目的探讨七氟烷或丙泊酚复合瑞芬太尼麻醉在重症肌无力患者经胸骨正中切口胸腺扩大切除术中的应用,并比较其效果。方法搜集2008年7月-2011年6月于解放军309医院麻醉科行胸骨正中切口胸腺扩大切除术的重症肌无力患者156例,分为2组,其中应用靶控静脉输注丙泊酚和瑞芬太尼麻醉(P组)80例,应用吸入七氟烷复合静脉输注瑞芬太尼麻醉患者(S组)76例,均不加用肌松药。采用4个成串刺激(TOF)检测神经肌肉传递功能。以手术开始(切皮)前作为0时点,每30min记录1次各规定时间点的血流动力学变化,以及基础状态下与拔管后的血气分析及呼吸频率等指标,直至麻醉结束,同时记录麻醉时间、手术时间、清醒时间、麻醉恢复室(PACU)停留时间、拔管时间、输入液体及瑞芬太尼总量。结果两组患者在不使用肌松药的情况下均顺利完成手术,S组手术开始后各时间点TOF值均明显低于P组(P<0.05)。手术后,P组pH值和PaCO2较S组显著升高(P<0.05),PaO2则显著降低(P<0.05)。在患者清醒时间、拔管时间、PACU停留时间及瑞芬太尼用量的比较上,S组明显低于P组(P<0.05)。两组患者在血流动力学及脑电双频指数(BIS)、手术时间、麻醉时间、输入液体总量上差异无统计学意义(P>0.05)。结论重症肌无力患者接受胸骨正中切口胸腺扩大切除术时,在不使用肌松药的情况下,应用七氟烷或丙泊酚复合瑞芬太尼麻醉安全有效。七氟烷复合瑞芬太尼对神经肌肉传递功能的抑制更具有优势,对术后呼吸功能的影响更小。 展开更多
关键词 丙泊酚 七氟烷 神经肌肉传导 重症肌无力 靶控输注 麻醉 吸入
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神经—骨骼肌的继发性兴奋——“循经感传”机制研究(Ⅰ) 被引量:15
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作者 朱兵 贲卉 +2 位作者 徐卫东 荣培晶 李宇清 《中国针灸》 CAS CSCD 北大核心 2001年第4期217-220,共4页
方法 :用离体的坐骨神经—腓肠肌组织和后肢的坐骨神经及其分支、腓肠肌、趾长伸肌—胫前肌。结果 :刺激坐骨神经引起的腓肠肌纤维兴奋过程中的去极化电位形成的综合电流能刺激穿越该肌的神经 ,引起该神经支配的肌肉继发性兴奋反应。结... 方法 :用离体的坐骨神经—腓肠肌组织和后肢的坐骨神经及其分支、腓肠肌、趾长伸肌—胫前肌。结果 :刺激坐骨神经引起的腓肠肌纤维兴奋过程中的去极化电位形成的综合电流能刺激穿越该肌的神经 ,引起该神经支配的肌肉继发性兴奋反应。结论 :由于外周神经中还包含有传入的感觉神经 ,即可能引起该神经感受野出现继发性的感觉 。 展开更多
关键词 神经肌肉接头 生理学 循经感传 电生理学 继发性兴奋
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运动终板在骨骼肌缺血再灌注损伤中的病理变化 被引量:13
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作者 王晓刚 阚世廉 +5 位作者 张宝贵 王学谦 于顺禄 田亚力 王世忠 孙锐 《中国修复重建外科杂志》 CAS CSCD 北大核心 2006年第11期1103-1108,共6页
目的探讨骨骼肌缺血再灌注(ischemia-reperfusion,IR)过程中运动终板(neuromuscularjunction,NMJ)损伤的病理改变进程。方法将Wistar大鼠48只制备仅神经血管蒂及两端腱性相连的腓肠肌内侧头肌瓣模型。分为6组(n=8),A组:正常对照组,不经... 目的探讨骨骼肌缺血再灌注(ischemia-reperfusion,IR)过程中运动终板(neuromuscularjunction,NMJ)损伤的病理改变进程。方法将Wistar大鼠48只制备仅神经血管蒂及两端腱性相连的腓肠肌内侧头肌瓣模型。分为6组(n=8),A组:正常对照组,不经缺血处理取材;B组:肌肉缺血3h取材;C组:缺血4.5h取材;D组:缺血4.5h,通血1.5h取材;E组:缺血4.5h,通血24h取材;F组:缺血4.5h,通血2周取材。观察肌肉大体变化及肌肉标本行氯化金压染后NMJ的形态学变化,标本经乙酰胆碱酯酶(acetylcholinesterase,AChE)及结合琥珀酸脱氢酶(succinatedehydrogenase,SDH)染色后行半定量分析。另取5只大鼠分别制成如A、C、E组模型,取材后标本分别行HE染色、氯化金(AuCl3)染色连续切片等辅助实验。结果肌肉大体观察:B组肌肉呈紫色、肿胀;C组呈紫黑色、肿胀加重、无弹性和收缩反应并有较多暗红色血性渗出;D组较C组颜色浅,肿胀减轻,弹性差,无收缩,质脆硬,渗出少且清亮;E组与D组相似、渗出更少;F组呈红灰相间,并有黄色坏死组织外露,肌肉挛缩、无收缩及弹性,与周围广泛粘连。氯化金染色:缺血和再灌注期肌纤维坏死发生最早,随后是坏死肌纤维上NMJ的溃变,最后神经纤维也发生崩解,如同树叶凋落。AChE结合SDH染色:B、C组的AChE含量与A组比较差异无统计学意义(P>0.05);D、E、F各组AChE及SDH的含量均急剧下降,各组AChE含量与A、C组比较差异有统计学意义(P<0.01)。结论肌肉内神经纤维至NMJ的分布极象树状结构。缺血期NMJ比肌纤维更能耐受缺血损伤,NMJ的存在依赖于肌纤维的存活。应对坏死肌肉实施进一步清创,IR损伤才可得到有效控制。 展开更多
关键词 运动终板 缺血再灌注 骨骼肌 病理变化
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七氟醚和安氟醚对维库溴铵增效作用的时间依赖性 被引量:7
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作者 丁学琴 聂广萍 +2 位作者 刘贵明 王俊科 盛卓人 《中国医科大学学报》 CAS CSCD 北大核心 2002年第5期376-378,共3页
目的 :观察最低肺泡有效浓度 (1MAC)七氟醚和安氟醚对维库溴铵增效作用的时间依赖性。方法 :4 0例择期手术病人在异丙酚 芬太尼 N2 O麻醉期间持续输注维库溴铵 ,维持 90 %的肌松 ,达到稳态后 ,病人随机吸入1MAC呼气末浓度的七氟醚或... 目的 :观察最低肺泡有效浓度 (1MAC)七氟醚和安氟醚对维库溴铵增效作用的时间依赖性。方法 :4 0例择期手术病人在异丙酚 芬太尼 N2 O麻醉期间持续输注维库溴铵 ,维持 90 %的肌松 ,达到稳态后 ,病人随机吸入1MAC呼气末浓度的七氟醚或安氟醚 ,调整维库溴铵的注入速率 ,维持 90 %的肌松 ,观察吸入七氟醚或安氟醚后维库溴铵的注入速率随时间变化的趋势。结果 :七氟醚、安氟醚都显著降低了维库溴铵的注入速率。并且这个效应随着吸入七氟醚或安氟醚时间的延长逐渐增加 ,吸入七氟醚或安氟醚 90min后达到最大效应即维库溴铵的注入速率下降到最大值。最大下降率 :七氟醚组为 6 8% ,安氟醚组为 6 7%。结论 :七氟醚、安氟醚都明显增强维库溴铵的肌松作用 ,但这种增效作用有显著的时间依赖性。两者之间无显著性差异 (P >0 0 5 )。 展开更多
关键词 维库溴铵 七氟醚 安氟醚 神经肌肉接头
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电针阳陵泉、脾俞穴对重症肌无力模型大鼠神经肌肉接头传递的影响 被引量:11
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作者 张立德 冯起国 +3 位作者 王德山 吴成举 曹凤艳 张颜 《中国针灸》 CAS CSCD 北大核心 1998年第4期245-248,共4页
以乙酰胆碱电位 (Ach P)、小终板电位 (MEPP)及血清抗乙酰胆碱受体抗体 (Ach RAb)滴度为观察指标 ,探讨了电针“阳陵泉”、“脾俞”穴对重症肌无力模型大鼠神经肌肉接头传递过程的影响及其作用机制。结果表明 ,电针“阳陵泉”穴或“脾... 以乙酰胆碱电位 (Ach P)、小终板电位 (MEPP)及血清抗乙酰胆碱受体抗体 (Ach RAb)滴度为观察指标 ,探讨了电针“阳陵泉”、“脾俞”穴对重症肌无力模型大鼠神经肌肉接头传递过程的影响及其作用机制。结果表明 ,电针“阳陵泉”穴或“脾俞”穴均能使重症肌无力 (MG)大鼠的 Ach P与MEPP振幅升高 ,但对 Ach P时程、MEPP的频率及血清 Ach RAb滴度却没有明显影响 ;同时电针“阳陵泉”、“脾俞”二穴 ,则使 MG大鼠的 Ach P、MEPP振幅升高更加显著 ;电针穴位临近肌肉则没有如此效应。提示 ,电针“阳陵泉”、“脾俞”穴有提高 MG大鼠神经肌肉接头传递的作用。 展开更多
关键词 重症肌无力 针灸疗法 神经肌肉接头 电针
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神经—肌肉继发性兴奋的时间总和——“循经感传”机制研究(Ⅱ) 被引量:6
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作者 朱兵 贲卉 +2 位作者 徐卫东 荣培晶 李宇清 《中国针灸》 CAS CSCD 北大核心 2001年第5期291-293,共3页
实验用离体的坐骨神经—腓肠肌组织和后肢的坐骨神经及其分支、腓肠肌、趾长伸肌—胫前肌。结果证明 ,刺激坐骨神经引起的腓肠肌纤维兴奋过程中的去极化电位形成的综合电流能刺激穿越该肌的神经 ,引起该神经支配的肌肉继发性兴奋反应。... 实验用离体的坐骨神经—腓肠肌组织和后肢的坐骨神经及其分支、腓肠肌、趾长伸肌—胫前肌。结果证明 ,刺激坐骨神经引起的腓肠肌纤维兴奋过程中的去极化电位形成的综合电流能刺激穿越该肌的神经 ,引起该神经支配的肌肉继发性兴奋反应。将引起继发性神经—肌肉反应的刺激电流降至阈值强度 ,连续 2个或更多的脉冲刺激 (间隔在 10~ 10 0 0ms之间 )可发生时间总和的激活反应。这种时间总和效应有助于解释沿经脉感觉慢速迁移现象。 展开更多
关键词 神经-肌肉接头 针灸效应 电生理学 循经感传 肌收缩 生理学
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