期刊文献+
共找到85篇文章
< 1 2 5 >
每页显示 20 50 100
Cell metabolism pathways involved in the pathophysiological changes of diabetic peripheral neuropathy 被引量:5
1
作者 Yaowei Lv Xiangyun Yao +3 位作者 Xiao Li Yuanming Ouyang Cunyi Fan Yun Qian 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第3期598-605,共8页
Diabetic peripheral neuropathy is a common complication of diabetes mellitus.Elucidating the pathophysiological metabolic mechanism impels the generation of ideal therapies.However,existing limited treatments for diab... Diabetic peripheral neuropathy is a common complication of diabetes mellitus.Elucidating the pathophysiological metabolic mechanism impels the generation of ideal therapies.However,existing limited treatments for diabetic peripheral neuropathy expose the urgent need for cell metabolism research.Given the lack of comprehensive understanding of energy metabolism changes and related signaling pathways in diabetic peripheral neuropathy,it is essential to explore energy changes and metabolic changes in diabetic peripheral neuropathy to develop suitable treatment methods.This review summarizes the pathophysiological mechanism of diabetic peripheral neuropathy from the perspective of cellular metabolism and the specific interventions for different metabolic pathways to develop effective treatment methods.Various metabolic mechanisms(e.g.,polyol,hexosamine,protein kinase C pathway)are associated with diabetic peripheral neuropathy,and researchers are looking for more effective treatments through these pathways. 展开更多
关键词 cell metabolism diabetic peripheral neuropathy peripheral nerve injury protein kinase C pathway reactive oxygen species.
下载PDF
Rho/ROCK pathway and neural regeneration: a potential therapeutic target for central nervous system and optic nerve damage 被引量:31
2
作者 Hai-Bo Tan Yi-Sheng Zhong +1 位作者 Yu Cheng and Xi Shen 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2011年第6期652-657,共6页
Rho-associated kinase (ROCK) is a serine/threonine kinase and one of the major downstream effectors of the small GTPase RhoA. The Rho/ROCK pathway is closely related to the pathogenesis of several central nervous syst... Rho-associated kinase (ROCK) is a serine/threonine kinase and one of the major downstream effectors of the small GTPase RhoA. The Rho/ROCK pathway is closely related to the pathogenesis of several central nervous system (CNS) disorders, and involved in many aspects of neuronal functions including neurite outgrowth and retraction. In the adult CNS, the damaged neuron regeneration is very difficult due to the presence of myelin-associated axon growth inhibitors such as Nogo, myelin-associated glycoprotein (MAG) and oligodendrocyte-myelin glycoprotein (Omgp), etc. The effects of these axon growth inhibitors are reversed by blocking the Rho/ROCK pathway 47 vitro, and the inhibition of Rho/ROCK pathway can promote axon regeneration and functional recovery in the injured CNS in viva In addition, the therapeutic effects of the Rho/ROCK inhibitors have also been demonstrated in some animal models and the Rho/ROCK pathway becomes an attractive target for the development of drugs for treating CNS disorders. In this review, we summarized on the effect of the Rho and the downstream factor ROCK in neural regeneration, and the potential therapeutic effect of Rho/ROCK inhibitors in the survival and axonal regeneration of retinal ganglion cell was also discussed. 展开更多
关键词 Rho/ROCK pathway neural regeneration potential therapeutic effect optic nerve damage
下载PDF
Transcriptome analysis of adherens junction pathway-related genes after peripheral nerve injury 被引量:3
3
作者 Sheng Yi Xing-Hui Wang Ling-Yan Xing 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第10期1804-1810,共7页
The neural regeneration process is driven by a wide range of molecules and pathways. Adherens junctions are critical cellular junctions for the integrity of peripheral nerves. However, few studies have systematically ... The neural regeneration process is driven by a wide range of molecules and pathways. Adherens junctions are critical cellular junctions for the integrity of peripheral nerves. However, few studies have systematically characterized the transcript changes in the adherens junction pathway following injury. In this study, a rat model of sciatic nerve crush injury was established by forceps. Deep sequencing data were analyzed using comprehensive transcriptome analysis at 0, 1, 4, 7, and 14 days after injury. Results showed that most individual molecules in the adherens junctions were either upregulated or downregulated after nerve injury. The m RNA expression of ARPC1 B, ARPC3, TUBA8, TUBA1 C, CTNNA2, ACTN3, MET, HGF, NME1 and ARF6, which are involved in the adherens junction pathway and in remodeling of adherens junctions, was analyzed using quantitative real-time polymerase chain reaction. Most of these genes were upregulated in the sciatic nerve stump following peripheral nerve injury, except for CTNNA2, which was downregulated. Our findings reveal the dynamic changes of key molecules in adherens junctions and in remodeling of adherens junctions. These key genes provide a reference for the selection of clinical therapeutic targets for peripheral nerve injury. 展开更多
关键词 peripheral nerve regeneration crushed sciatic nerve RNA-SEQ adherens junctions remodeling of adherens junctions Venn diagram ingenuity pathway analysis differentially expressed genes comprehensive transcript analysis transcriptomics heatmap neural regeneration
下载PDF
Effect of swimming training on the nerve injury, nerve cytokine expression and related signaling pathway in rats with cerebral infarction
4
作者 Jian-Bin Yuan 《Journal of Hainan Medical University》 2017年第8期9-13,共5页
Objective:To study the effect of swimming training on the nerve injury, nerve cytokine expression and related signaling pathway in rats with cerebral infarction.Methods: SD male rats were selected as the experimental ... Objective:To study the effect of swimming training on the nerve injury, nerve cytokine expression and related signaling pathway in rats with cerebral infarction.Methods: SD male rats were selected as the experimental animals and randomly divided into control group, cerebral infarction group and intervention group, control group received sham operation, cerebral infarction group were made into cerebral infarction models through suture method, and intervention group were made into cerebral infarction models through suture method and received swimming training. 21 d after intervention, serum was collected to determine the contents of nerve injury indexes and nerve cytokines, and brain tissue was collected to determine the expression levels of nerve apoptosis molecules, nerve cytokines and signaling pathway molecules.Results: Brain tissue CytC, Bax, Caspase-3, TLR4, NF-kB, MyD88, JAK2 and STAT3 contents as well as serum NSE and S100B contents of cerebral infarction group were significantly higher than those of control group while NGF, BDNF and NT-3 contents in the brain tissue and serum were significantly lower than those of control group;brain tissue CytC, Bax, Caspase-3, TLR4, NF-kB, MyD88, JAK2 and STAT3 contents as well as serum NSE and S100B contents of intervention group were significantly lower than those of cerebral infarction group while NGF, BDNF and NT-3 contents in the brain tissue and serum were significantly higher than those of cerebral infarction group.Conclusion:Swimming training can improve the neural function of rats with cerebral infarction, and inhibiting neuron apoptosis and improving neuron nutrition are the molecular mechanisms for swimming training to promote the neural functional recovery. 展开更多
关键词 Cerebral INFARCTION SWIMMING training Apoptosis nerve CYTOKINE Signaling pathway
下载PDF
The role of axon guidance molecules in the pathogenesis of epilepsy
5
作者 Zheng Liu Chunhua Pan Hao Huang 《Neural Regeneration Research》 SCIE CAS 2025年第5期1244-1257,共14页
Current treatments for epilepsy can only manage the symptoms of the condition but cannot alter the initial onset or halt the progression of the disease. Consequently, it is crucial to identify drugs that can target no... Current treatments for epilepsy can only manage the symptoms of the condition but cannot alter the initial onset or halt the progression of the disease. Consequently, it is crucial to identify drugs that can target novel cellular and molecular mechanisms and mechanisms of action. Increasing evidence suggests that axon guidance molecules play a role in the structural and functional modifications of neural networks and that the dysregulation of these molecules is associated with epilepsy susceptibility. In this review, we discuss the essential role of axon guidance molecules in neuronal activity in patients with epilepsy as well as the impact of these molecules on synaptic plasticity and brain tissue remodeling. Furthermore, we examine the relationship between axon guidance molecules and neuroinflammation, as well as the structural changes in specific brain regions that contribute to the development of epilepsy. Ample evidence indicates that axon guidance molecules, including semaphorins and ephrins, play a fundamental role in guiding axon growth and the establishment of synaptic connections. Deviations in their expression or function can disrupt neuronal connections, ultimately leading to epileptic seizures. The remodeling of neural networks is a significant characteristic of epilepsy, with axon guidance molecules playing a role in the dynamic reorganization of neural circuits. This, in turn, affects synapse formation and elimination. Dysregulation of these molecules can upset the delicate balance between excitation and inhibition within a neural network, thereby increasing the risk of overexcitation and the development of epilepsy. Inflammatory signals can regulate the expression and function of axon guidance molecules, thus influencing axonal growth, axon orientation, and synaptic plasticity. The dysregulation of neuroinflammation can intensify neuronal dysfunction and contribute to the occurrence of epilepsy. This review delves into the mechanisms associated with the pathogenicity of axon guidance molecules in epilepsy, offering a valuable reference for the exploration of therapeutic targets and presenting a fresh perspective on treatment strategies for this condition. 展开更多
关键词 axon guidance drug-resistant epilepsy EPILEPSY nerve regeneration nervous system diseases neural pathways neuroinflammatory diseases neuronal plasticity NEURONS synaptic remodeling
下载PDF
Epalrestat protects against diabetic peripheral neuropathy by alleviating oxidative stress and inhibiting polyol pathway 被引量:42
6
作者 Qing-rong Li Zhuo Wang +8 位作者 Wei Zhou Shou-rui Fan Run Ma Li Xue Lu Yang Ya-shan Li Hong-li Tan Qi, ng-hua Shao Hong-ying Yang 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第2期345-351,共7页
Epalrestat is a noncompetitive and reversible aldose reductase inhibitor used for the treatment of diabetic neuropathy. This study assumed that epalrestat had a protective effect on diabetic peripheral nerve injury by... Epalrestat is a noncompetitive and reversible aldose reductase inhibitor used for the treatment of diabetic neuropathy. This study assumed that epalrestat had a protective effect on diabetic peripheral nerve injury by suppressing the expression of aldose reductase in peripheral nerves of diabetes mellitus rats. The high-fat and high-carbohydrate model rats were established by intraperitoneal injection of streptozotocin. Peripheral neuropathy occurred in these rats after sustaining high blood glucose for 8 weeks. At 12 weeks after streptozotocin injection, rats were intragastrically administered epalrestat 100 mg/kg daily for 6 weeks. Transmission electron microscope revealed that the injuries to myelinated nerve fibers, non-myelinated nerve fibers and Schwann cells of rat sciatic nerves had reduced compared to rats without epalrestat administuation. Western blot assay and immunohistochemical results demonstrated that after intervention with epalrestat, the activities of antioxidant enzymes such as superoxide dismutase, catalase and glutathione peroxidase gradually increased, but aldose reductase protein expression gradually diminished. Results confirmed that epalrestat could protect against diabetic peripheral neuropathy by relieving oxidative stress and suppressing the polyol pathway. 展开更多
关键词 nerve regeneration peripheral nerve injury STREPTOZOTOCIN reactive oxygen species diabetic neuropathy oxidative stress aldosereductase antioxidant enzymes polyol pathway aldose reductase inhibitor superoxide dismutase CATALASE glutathione peroxidase rats NSFCgrant neural regeneration
下载PDF
miRNA targeted signaling pathway in the early stage of denervated fast and slow muscle atrophy 被引量:16
7
作者 Gang Li Qing-shan Li +7 位作者 Wen-bin Li Jian Wei Wen-kai Chang Zhi Chen Hu-yun Qiao Ying-wei Jia Jiang-hua Tian Bing-sheng Liang 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第8期1293-1303,共11页
Denervation often results in skeletal muscle atrophy.Different mechanisms seem to be involved in the determination between denervated slow and fast skeletal muscle atrophy.At the epigenetic level,mi RNAs are thought t... Denervation often results in skeletal muscle atrophy.Different mechanisms seem to be involved in the determination between denervated slow and fast skeletal muscle atrophy.At the epigenetic level,mi RNAs are thought to be highly involved in the pathophysiological progress of denervated muscles.We used mi RNA microarrays to determine mi RNA expression profiles from a typical slow muscle(soleus muscle) and a typical fast muscle(tibialis anterior muscle) at an early denervation stage in a rat model.Results showed that mi R-206,mi R-195,mi R-23 a,and mi R-30 e might be key factors in the transformation process from slow to fast muscle in denervated slow muscles.Additionally,certain mi RNA molecules(mi R-214,mi R-221,mi R-222,mi R-152,mi R-320,and Let-7e) could be key regulatory factors in the denervated atrophy process involved in fast muscle.Analysis of signaling pathway networks revealed the mi RNA molecules that were responsible for regulating certain signaling pathways,which were the final targets(e.g.,p38 MAPK pathway; Pax3/Pax7 regulates Utrophin and follistatin by HDAC4; IGF1/PI3K/Akt/m TOR pathway regulates atrogin-1 and Mu RF1 expression via Fox O phosphorylation).Our results provide a better understanding of the mechanisms of denervated skeletal muscle pathophysiology. 展开更多
关键词 nerve regeneration MICRORNA expression profile denervated skeletal muscle gene functions signaling pathways neural regeneration
下载PDF
Long non-coding RNA NONMMUG014387 promotes Schwann cell proliferation after peripheral nerve injury 被引量:10
8
作者 Bin Pan Zhong-ju Shi +2 位作者 Jia-yin Yan Jia-he Li Shi-qing Feng 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第12期2084-2091,共8页
Schwann cells play a critical role in peripheral nerve regeneration through dedifferentiation and proliferation. In a previous study, we performed microarray analysis of the sciatic nerve after injury. Accordingly, we... Schwann cells play a critical role in peripheral nerve regeneration through dedifferentiation and proliferation. In a previous study, we performed microarray analysis of the sciatic nerve after injury. Accordingly, we predicted that long non-coding RNA NONMMUG014387 may promote Schwann cell proliferation after peripheral nerve injury, as bioinformatic analysis revealed that the target gene of NONMMUG014387 was collagen triple helix repeat containing 1(Cthrc1). Cthrc1 may promote cell proliferation in a variety of cells by activating Wnt/PCP signaling. Nonetheless, bioinformatic analysis still needs to be verified by biological experiment. In this study, the candidate long non-coding RNA, NONMMUG014387, was overexpressed in mouse Schwann cells by recombinant adenovirus transfection. Plasmid p HBAd-MCMV-GFP-NONMMUG014387 and p HBAd-MCMV-GFP were transfected into Schwann cells. Schwann cells were divided into three groups: control(Schwann cells without intervention), Ad-GFP(Schwann cells with GFP overexpression), and Ad-NONMMUGO148387(Schwann cells with GFP and NONMMUGO148387 overexpression). Cell Counting Kit-8 assay was used to evaluate proliferative capability of mouse Schwann cells after NONMMUG014387 overexpression. Polymerase chain reaction and western blot assay were performed to investigate target genes and downstream pathways of NONMMUG014387. Cell proliferation was significantly increased in Schwann cells overexpressing lnc RNA NONMMUG014387 compared with the other two groups. Further, compared with the control group, m RNA and protein levels of Cthrc1, Wnt5 a, ROR2, Rho A, Rac1, JNK, and ROCK were visibly up-regulated in the Ad-NONMMUGO148387 group. Our findings confirm that long non-coding RNA NONMMUG014387 can promote proliferation of Schwann cells surrounding the injury site through targeting Cthrc1 and activating the Wnt/PCP pathway. 展开更多
关键词 nerve regeneration peripheral nerve injury Schwann cells long non-coding RNAs PROLIFERATION Wnt/PCP pathway Cell CountingKit-8 assay adenovirus overexpression sciatic nerve Cthrcl neural regeneration
下载PDF
Acacetin protects against cerebral ischemia-reperfusion injury via the NLRP3 signaling pathway 被引量:26
9
作者 Juan Bu Shen Shi +8 位作者 Hui-Qin Wang Xiao-Shan Niu Zong-Feng Zhao Wei-Dong Wu Xiao-Ling Zhang Zhi Ma Yan-Jun Zhang Hui Zhang Yi Zhu 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第4期605-612,共8页
Acacetin(5,7-dihydroxy-4′-methoxyflavone), a potential neuroprotective agent, has an inhibitory effect on lipopolysaccharide-induced neuroinflammatory reactions. However, whether acacetin has an effect on inflammator... Acacetin(5,7-dihydroxy-4′-methoxyflavone), a potential neuroprotective agent, has an inhibitory effect on lipopolysaccharide-induced neuroinflammatory reactions. However, whether acacetin has an effect on inflammatory corpuscle 3(NLRP3) after cerebral ischemia-reperfusion injury has not been fully determined. This study used an improved suture method to establish a cerebral ischemia-reperfusion injury model in C57BL/6 mice. After ischemia with middle cerebral artery occlusion for 1 hour, reperfusion with intraperitoneal injection of 25 mg/kg of acacetin(acacetin group) or an equal volume of saline(0.1 mL/10 g, middle cerebral artery occlusion group) was used to investigate the effect of acacetin on cerebral ischemia-reperfusion injury. Infarct volume and neurological function scores were determined by 2,3,5-triphenyltetrazolium chloride staining and the Zea-Longa scoring method. Compared with the middle cerebral artery occlusion group, neurological function scores and cerebral infarction volumes were significantly reduced in the acacetin group. To understand the effect of acacetin on microglia-mediated inflammatory response after cerebral ischemia-reperfusion injury, immunohistochemistry for the microglia marker calcium adapter protein ionized calcium-binding adaptor molecule 1(Iba1) was examined in the hippocampus of ischemic brain tissue. In addition, tumor necrosis factor-α, interleukin-1β, and interleukin-6 expression in ischemic brain tissue of mice was quantified by enzyme-linked immunosorbent assay. Expression of Iba1, tumor necrosis factor-α, interleukin-1β and interleukin-6 was significantly lower in the acacetin group compared with the middle cerebral artery occlusion group. Western blot assay results showed that expression of Toll-like receptor 4, nuclear factor kappa B, NLRP3, procaspase-1, caspase-1, pro-interleukin-1β, and interleukin-1β were significantly lower in the acacetin group compared with the middle cerebral artery occlusion group. Our findings indicate that acacetin has a protective effect on cerebral ischemia-reperfusion injury, and its mechanism of action is associated with inhibition of microglia-mediated inflammation and the NLRP3 signaling pathway. 展开更多
关键词 nerve REGENERATION ACACETIN cerebral ISCHEMIA-REPERFUSION injury microglia NLRP3 inflammasome inflammatory FACTOR INFARCT volume signaling pathway nuclear factor-κB neuroprotection neural REGENERATION
下载PDF
Transcriptomic analysis reveals essential microRNAs after peripheral nerve injury 被引量:6
10
作者 Yu Wang Shu Wang Jiang-Hong He 《Neural Regeneration Research》 SCIE CAS CSCD 2021年第9期1865-1870,共6页
Studies have shown that microRNAs(miRNAs) mediate posttranscriptional regulation of target genes and participate in various physiological and pathological processes, including peripheral nerve injury. However, it is h... Studies have shown that microRNAs(miRNAs) mediate posttranscriptional regulation of target genes and participate in various physiological and pathological processes, including peripheral nerve injury. However, it is hard to select key miRNAs with essential biological functions among a large number of differentially expressed miRNAs. Previously, we collected injured sciatic nerve stumps at multiple time points after nerve crush injury, examined gene changes at different stages(acute, sub-acute, and post-acute), and obtained mRNA expression profiles. Here, we jointly analyzed mRNAs and miRNAs, and investigated upstream miRNAs of differentially expressed mRNAs using Ingenuity Pathway Analysis bioinformatic software. A total of 31, 42, 30, and 23 upstream miRNAs were identified at 1, 4, 7, and 14 days after rat sciatic nerve injury, respectively. Temporal expression patterns and biological involvement of commonly involved upstream miRNAs(miR-21, let-7, miR-223, miR-10 b, miR-132, miR-15 b, miR-127, miR-29 a, miR-29 b, and miR-9) were then determined at multiple time points. Expression levels of miR-21, miR-132, miR-29 a, and miR-29 b were robustly increased after sciatic nerve injury. Biological processes involving these miRNAs include multicellular organismal response to stress, positive regulation of the epidermal growth factor receptor signaling pathway, negative regulation of epithelial cell differentiation, and regulation of myocardial tissue growth. Moreover, we constructed mechanistic networks of let-7, miR-21, and miR-223, the most significantly involved upstream miRNAs. Our findings reveal that multiple upstream miRNAs(i.e., let-7, miR-21, and miR-223) were associated with gene expression changes in rat sciatic nerve stumps after nerve injury, and these miRNAs play an important role in peripheral nerve regeneration. This study was approved by the Experimental Animal Ethics Committee of Jiangsu Province of China(approval No. 20190303-18) on March 3, 2019. 展开更多
关键词 bioinformatic analysis Ingenuity pathway Analysis mechanistic network MICRORNA peripheral nerve injury peripheral nerve regeneration RNA sequencing sciatic nerve crush
下载PDF
The effects of claudin 14 during early Wallerian degeneration after sciatic nerve injury 被引量:7
11
作者 Leilei Gong Yun Zhu +4 位作者 Xi Xu Huaiqin Li Weimin Guo Qin Zhao Dengbing Yao 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第24期2151-2158,共8页
Claudin 14 has been shown to promote nerve repair and regeneration in the early stages of Wallerian degeneration (0-4 days) in rats with sciatic nerve injury, but the mechanism underlying this process remains poorly... Claudin 14 has been shown to promote nerve repair and regeneration in the early stages of Wallerian degeneration (0-4 days) in rats with sciatic nerve injury, but the mechanism underlying this process remains poorly understood. This study reported the effects of claudin 14 on nerve degeneration and regeneration during early Wallerian degeneration. Claudin 14 expression was up-regulated in sciatic nerve 4 days after Wallerian degeneration. The altered expression of claudin 14 in Schwann cells resulted in expression changes of cytokines in vitro. Expression of claudin 14 affected c-Jun, but not Akt anal ERK1/2 patl^ways, l^urther studies reve^ed that enhanced expression of claudin 14 could promote Schwann cell proliferation and migration. Silencing of claudin 14 expression resulted in Schwann cell apoptosis and reduction in Schwann cell proliferation. Our data revealed the role of claudin 14 in early Wallerian degeneration, which may provide new insights into the molecular mechanisms of Wallerian degeneration. 展开更多
关键词 nerve regeneration peripheral nerve injury Wallerian degeneration sciatic nerve injury Claudin 14 rat Schwann cell Signal pathways C-JUN Akt ERK1/2 NSFC grant neural regeneration
下载PDF
Electroacupuncture in the repair of spinal cord injury:inhibiting the Notch signaling pathway and promoting neural stem cell proliferation 被引量:33
12
作者 Xin Geng Tao Sun +3 位作者 Jing-hui Li Ning Zhao Yong Wang Hua-lin Yu 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第3期394-403,共10页
Electroacupuncture for the treatment of spinal cord iniury has a good dinical curative effect, but the underlying mechanism is unclear. In our experiments, the spinal cord of adult Sprague-Daw- ley rats was clamped fo... Electroacupuncture for the treatment of spinal cord iniury has a good dinical curative effect, but the underlying mechanism is unclear. In our experiments, the spinal cord of adult Sprague-Daw- ley rats was clamped for 60 seconds. Dazhui (GV14) and Mingmen (GV4) acupoints of rats were subjected to electroacupuncture. Enzyme-linked immunosorbent assay revealed that the expres- sion of serum inflammatory factors was apparently downregulated in rat models of spinal cord injury after electroacupuncture. Hematoxylin-eosin staining and immunohistochemistry results demonstrated that electroacupuncture contributed to the proliferation of neural stem cells in rat injured spinal cord, and suppressed their differentiation into astrocytes. Real-time quantitative PCR and western blot assays showed that electroacupuncture inhibited activation of the Notch signaling pathway induced by spinal cord injury. These findings indicate that electroacupuncture repaired the injured spinal cord by suppressing the Notch signaling pathway and promoting the proliferation of endogenous neural stem ceils. 展开更多
关键词 nerve regeneration spinal cord electroacupuncture therapy neural stem cells notchsignaling pathway ASTROCYTES inflammation survival curve PROLIFERATION differentiation real-timequantitative PCR western blot assay neural regeneration
下载PDF
Brain-derived neurotrophic factor protects against acrylamide-induced neuronal and synaptic injury via the TrkB-MAPK-Erk1/2 pathway 被引量:5
13
作者 Xiao Chen Jing-Wei Xiao +5 位作者 Peng Cao Yi Zhang Wen-Jian Cai Jia-Yang Song Wei-Min Gao Bin Li 《Neural Regeneration Research》 SCIE CAS CSCD 2021年第1期150-157,共8页
Acrylamide has been shown to be neurotoxic.Brain-derived neurotrophic factor(BDNF)can alleviate acrylamide-induced synaptic injury;however,the underlying mechanism remains unclear.In this study,dibutyryl-cyclic adenos... Acrylamide has been shown to be neurotoxic.Brain-derived neurotrophic factor(BDNF)can alleviate acrylamide-induced synaptic injury;however,the underlying mechanism remains unclear.In this study,dibutyryl-cyclic adenosine monophosphate-induced mature human neuroblastoma(NB-1)cells were exposed with 0–100μg/mL acrylamide for 24–72 hours.Acrylamide decreased cell viability and destroyed synapses.Exposure of co-cultured NB-1 cells and Schwann cells to 0–100μg/mL acrylamide for 48 hours resulted in upregulated expression of synapsin I and BDNF,suggesting that Schwann cells can activate self-protection of neurons.Under co-culture conditions,activation of the downstream TrkB-MAPK-Erk1/2 pathway strengthened the protective effect.Exogenous BDNF can increase expression of TrkB,Erk1/2,and synapsin I,while exogenous BDNF or the TrkB inhibitor K252a could inhibit these changes.Taken together,Schwann cells may act through the BDNF-TrkB-MAPK-Erk1/2 signaling pathway,indicating that BDNF plays an important role in this process.Therefore,exogenous BDNF may be an effective treatment strategy for acrylamide-induced nerve injury.This study was approved by the Laboratory Animal Welfare and Ethics Committee of the National Institute of Occupational Health and Poison Control,a division of the Chinese Center for Disease Control and Prevention(approval No.EAWE-2017-008)on May 29,2017. 展开更多
关键词 factor INJURY pathway peripheral nerve protection protein regeneration repair
下载PDF
Heat shock protein 72 confers protection in retinal ganglion cells and lateral geniculate nucleus neurons via blockade of the SAPK/JNK pathway in a chronic ocular-hypertensive rat model 被引量:10
14
作者 Ning Li Yuehua Li Xuanchu Duan 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第14期1395-1401,共7页
Optic nerve transection increased the expression of heat shock protein 72 (HSP72) in the lateral geniculate body, indicating that this protein is involved in the prevention of neuronal injury. Zinc sulfate and querc... Optic nerve transection increased the expression of heat shock protein 72 (HSP72) in the lateral geniculate body, indicating that this protein is involved in the prevention of neuronal injury. Zinc sulfate and quercetin induced and inhibited the expression of HSP72, respectively. Intraperitoneal injections of zinc sulfate, SP600125 (c-Jun N-terminal kinase inhibitor), or quercetin were performed on retinal ganglion cells in a Wistar rat model of chronic ocular hypertension. Our results showed that compared with the control group, the expression of HSP72 in retinal ganglion cells and the lateral geniculate body was increased after the injection of zinc sulfate, but was decreased after the injection of quercetin. The expression of phosphorylated c-Jun N-terminal kinases and phosphorylated c-Jun were visible 3 days after injection in the control group, and reached apeak at 7 days. Zinc sulfate and SP600125 significantly decreased the expression of p-c-Jun, whereas quercetin significantly enhanced the expression of this protein. These results suggest that HSP72 protects retinal ganglion cells and lateral geniculate body in a rat model of chronic ocular hypertension from injury by blocking the activation of the stress-activated kinase/c-Jun N-terminal kinase apoptotic pathway. 展开更多
关键词 nerve regeneration peripheral nerve injury glaucoma heat shock protein 72 retinalganglion cells lateral geniculate body zinc sulfate QUERCETIN SAPK/JNK pathway neuroprotection p-INK p-c-Jun NSFC grant neural regeneration
下载PDF
Activation of the Notch signaling pathway promotes neurovascular repair after traumatic brain injury 被引量:13
15
作者 Qi-shan Ran Yun-hu Yu +1 位作者 Xiao-hong Fu Yuan-chao Wen 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第8期1258-1264,共7页
The Notch signaling pathway plays a key role in angiogenesis and endothelial cell formation, but it remains unclear whether it is involved in vascular repair by endothelial progenitor cells after traumatic brain injur... The Notch signaling pathway plays a key role in angiogenesis and endothelial cell formation, but it remains unclear whether it is involved in vascular repair by endothelial progenitor cells after traumatic brain injury. Therefore, in the present study, we controlled the Notch signaling pathway using overexpression and knockdown constructs. Activation of the Notch signaling pathway by Notch1 or Jagged1 overexpression enhanced the migration, invasiveness and angiogenic ability of endothelial progenitor cells. Suppression of the Notch signaling pathway with Notch1 or Jagged1 si RNAs reduced the migratory capacity, invasiveness and angiogenic ability of endothelial progenitor cells. Activation of the Notch signaling pathway in vivo in a rat model of mild traumatic brain injury promoted neurovascular repair. These findings suggest that the activation of the Notch signaling pathway promotes blood vessel formation and tissue repair after brain trauma. 展开更多
关键词 nerve regeneration endothelial progenitor cells traumatic brain injury Notch signaling pathway cell migration INVASION ANGIOGENESIS jet PEI? system neural regeneration
下载PDF
Acupuncture activates signal transduction pathways related to brain-tissue restoration after ischemic injury 被引量:9
16
作者 Haomei Tian Hong Zhang +4 位作者 Junbao Zhu Juan Zhang Hening Cai Yuchen Zhang Chutao Chen 《Neural Regeneration Research》 SCIE CAS CSCD 2012年第24期1866-1872,共7页
A middle cerebral artery occlusion-model was established in rats using the improved thread embolism method.Rats were treated with acupuncture at either Dazhui(DU14),Renzhong(DU26), Baihui(DU20),or a non-meridian... A middle cerebral artery occlusion-model was established in rats using the improved thread embolism method.Rats were treated with acupuncture at either Dazhui(DU14),Renzhong(DU26), Baihui(DU20),or a non-meridian point.Detection with protein-chip technology showed that the level of protein phosphorylation in both groups was upregulated or downregulated depending on the signaling pathway compared with the model group that did not receive acupuncture.Analysis of proteins showing downregulated phosphorylation revealed that five signaling pathways were activated in the acupuncture-treatment group,while only two were activated in the acupuncture-control group.In contrast,analysis of proteins showing upregulated phosphorylation revealed only one pathway was activated in the acupuncture-treatment group,whereas four pathways were activated in the acupuncture-control group.Furthermore,the number of activated proteins in the acupuncture-treatment group was not only higher than the acupuncture-control group,but unlike the acupuncture-control group,the majority of activated proteins were key proteins in the signaling pathways.Our findings indicate that acupuncture at specific points can activate multiple signaling pathways to promote the restoration of brain tissue following ischemic injury,and that this is based on a combination of effects resulting from multiple pathways,targets,and means. 展开更多
关键词 ACUPUNCTURE cerebral ischemia DAZHUI Baihui RENZHONG protein-chip technology signal-transduction pathways nerve injury brain injury ischemic injury neural regeneration
下载PDF
Biological characteristics of dynamic expression of nerve regeneration related growth factors in dorsal root ganglia after peripheral nerve injury 被引量:5
17
作者 Yin-Ying Shen Xiao-Kun Gu +3 位作者 Rui-Rui Zhang Tian-Mei Qian Shi-Ying Li Sheng Yi 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第8期1502-1509,共8页
The regenerative capacity of peripheral nerves is limited after nerve injury.A number of growth factors modulate many cellular behaviors,such as proliferation and migration,and may contribute to nerve repair and regen... The regenerative capacity of peripheral nerves is limited after nerve injury.A number of growth factors modulate many cellular behaviors,such as proliferation and migration,and may contribute to nerve repair and regeneration.Our previous study observed the dynamic changes of genes in L4–6 dorsal root ganglion after rat sciatic nerve crush using transcriptome sequencing.Our current study focused on upstream growth factors and found that a total of 19 upstream growth factors were dysregulated in dorsal root ganglions at 3,9 hours,1,4,or 7 days after nerve crush,compared with the 0 hour control.Thirty-six rat models of sciatic nerve crush injury were prepared as described previously.Then,they were divided into six groups to measure the expression changes of representative genes at 0,3,9 hours,1,4 or 7 days post crush.Our current study measured the expression levels of representative upstream growth factors,including nerve growth factor,brain-derived neurotrophic factor,fibroblast growth factor 2 and amphiregulin genes,and explored critical signaling pathways and biological process through bioinformatic analysis.Our data revealed that many of these dysregulated upstream growth factors,including nerve growth factor,brain-derived neurotrophic factor,fibroblast growth factor 2 and amphiregulin,participated in tissue remodeling and axon growth-related biological processes Therefore,the experiment described the expression pattern of upstream growth factors in the dorsal root ganglia after peripheral nerve injury.Bioinformatic analysis revealed growth factors that may promote repair and regeneration of damaged peripheral nerves.All animal surgery procedures were performed in accordance with Institutional Animal Care Guidelines of Nantong University and ethically approved by the Administration Committee of Experimental Animals,China(approval No.20170302-017)on March 2,2017. 展开更多
关键词 axon growth bioinformatic analysis dorsal root ganglia growth factors Ingenuity pathway Analysis nerve regeneration peripheral nerve injury rat sciatic nerve crush injury transcriptome sequencing upstream regulators
下载PDF
Acetyl-11-keto-β-boswellic acid extracted from Boswellia serrata promotes Schwann cell proliferation and sciatic nerve function recovery 被引量:5
18
作者 xiao-wen jiang bin-qing zhang +3 位作者 lu qiao lin liu xue-wei wang wen-hui yu 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第3期484-491,共8页
Frankincense can promote blood circulation. Acetyl-11-keto-β-boswellic acid (AKBA) is a small molecule with anti-inflammatory properties that is derived from Boswellia serrata. Here, we hypothesized that it may pro... Frankincense can promote blood circulation. Acetyl-11-keto-β-boswellic acid (AKBA) is a small molecule with anti-inflammatory properties that is derived from Boswellia serrata. Here, we hypothesized that it may promote regeneration of injured sciatic nerve. To address this hypothesis, we established a rat model of sciatic nerve injury using a nerve clamping method. Rats were administered AKBA once every 2 days at doses of 1.5, 3, and 6 mg/kg by intraperitoneal injection for 30 days from the 1st day after injury. Sciatic nerve function was evaluated using the sciatic functional index. Degree of muscle atrophy was measured using the triceps surae muscle Cuadros index.Neuropathological changes were observed by hematoxylin-eosin staining. Western blot analysis was used to detect expression of phospho-extracellular signal-regulated kinase 1 and 2 (p-ERK1/2) in injured nerve. S100 immunoreactivity in injured nerve was detected by immunohistochemistry. In vivo experiments showed that 3 and 6 mg/kg AKBA significantly increased sciatic nerve index, Cuadros index of triceps muscle, p-ERK1/2 expression, and S100 immunoreactivity in injured sciatic nerve of sciatic nerve injury model rats. Furthermore,for in vitro experiments, Schwann cells were treated with AKBA at 0–20 μg/mL. Proliferation of Schwann cells was detected by Cell Counting Kit-8 colorimetry assay. The results showed that 2 μg/mL AKBA is the optimal therapeutic concentration. In addition, ERK phosphorylation levels increased following 2 μg/mL AKBA treatment. In the presence of the ERK1/2 inhibitor, PD98059 (2.5 μL/mL), the AKBA-induced increase in p-ERK1/2 protein expression was partially abrogated. In conclusion, our study shows that AKBA promotes peripheral nerve regeneration with ERK protein phosphorylation playing a key role in this process. 展开更多
关键词 nerve regeneration acetyl-11-keto-β-boswellic acid peripheral nerve injury repair sciatic nerve crush injury Schwann cells cell proliferation ERK signaling pathway PD98059 neural regeneration
下载PDF
Spatiotemporal microRNA profile in peripheral nerve regeneration:miR-138 targets vimentin and inhibits Schwann cell migration and proliferation 被引量:6
19
作者 Travis B.Sullivan Litchfield C.Robert +6 位作者 Patrick A.Teebagy Shannon E.Morgan Evan W.Beatty Bryan J.Cicuto Peter K.Nowd Kimberly M.Rieger-Christ David J.Bryan 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第7期1253-1262,共10页
While the peripheral nervous system has regenerative ability,restoration of sufficient function remains a challenge.Vimentin has been shown to be localized in axonal growth fronts and associated with nerve regeneratio... While the peripheral nervous system has regenerative ability,restoration of sufficient function remains a challenge.Vimentin has been shown to be localized in axonal growth fronts and associated with nerve regeneration,including myelination,neuroplasticity,kinase signaling in nerve axoplasm,and cell migration;however,the mechanisms regulating its expression within Schwann cell(SC) remain unexplored.The aim of this study was to profile the spatial and temporal expression profile of micro RNA(mi RNA) in a regenerating rat sciatic nerve after transection,and explore the potential role of mi R-138-5 p targeting vimentin in SC proliferation and migration.A rat sciatic nerve transection model,utilizing a polyethylene nerve guide,was used to investigate mi RNA expression at 7,14,30,60,and 90 days during nerve regeneration.Relative levels of mi RNA expression were determined using microarray analysis and subsequently validated with quantitative real-time polymerase chain reaction.In vitro assays were conducted with cultured Schwann cells transfected with mi RNA mimics and assessed for migratory and proliferative potential.The top seven dysregulated mi RNAs reported in this study have been implicated in cell migration elsewhere,and GO and KEGG analyses predicted activities essential to wound healing.Transfection of one of these,mi RNA-138-5 p,into SCs reduced cell migration and proliferation.mi R-138-5 p has been shown to directly target vimentin in cancer cells,and the luciferase assay performed here in rat Schwann cells confirmed it.These results detail a role of mi R-138-5 p in rat peripheral nerve regeneration and expand on reports of it as an important regulator in the peripheral nervous system. 展开更多
关键词 non-coding RNA neural regeneration nerve guide sciatic nerve transection peripheral nerve injury wound healing Gene Ontology processes Kyoto Encyclopedia of Genes and Genomes pathways microarray luciferase assay
下载PDF
Neuroprotective mechanisms of rutin for spinal cord injury through anti-oxidation and anti-inflammation and inhibition of p38 mitogen activated protein kinase pathway 被引量:10
20
作者 Hong-liang Song Xiang Zhang +5 位作者 Wen-zhao Wang Rong-han Liu Kai Zhao Ming-yuan Liu Wei-ming Gong Bin Ning 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第1期128-134,共7页
Rutin has anti-inflammatory, antioxidant, anti-viral, anti-tumor and immune regulatory effects. However, the neuroprotective effects of rutin in spinal cord injury are unknown. The p38 mitogen activated protein kinase... Rutin has anti-inflammatory, antioxidant, anti-viral, anti-tumor and immune regulatory effects. However, the neuroprotective effects of rutin in spinal cord injury are unknown. The p38 mitogen activated protein kinase (p38 MAPK) pathway is the most important member of the MAPK family that controls inflammation. We assumed that the mechanism of rutin in the repair of spinal cord injury is associated with the inhibition of p38 MAPK pathway. Allen’s method was used to establish a rat model of spinal cord injury. The rat model was intraperitoneally injected with rutin (30 mg/kg) for 3 days. After treatment with rutin, Basso, Beattie and Bresnahan locomotor function scores increased. Water content, tumor necrosis factor alpha, interleukin 1 beta, and interleukin 6 levels, p38 MAPK protein expression and caspase-3 and -9 activities in T8–9 spinal cord decreased. Oxidative stress related markers superoxide dismutase and glutathione peroxidase levels increased in peripheral blood. Rutin exerts neuroprotective effect through anti-oxidation, anti-inflammation, anti-apoptosis and inhibition of p38 MAPK pathway. 展开更多
关键词 nerve regeneration spinal cord injury RUTIN oxidative stress antioxidant ANTI-INFLAMMATION p38 mitogen activated protein kinase pathway ANTI-APOPTOSIS caspase-3 caspase-9 neural regeneration
下载PDF
上一页 1 2 5 下一页 到第
使用帮助 返回顶部