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Deferoxamine promotes recovery of traumatic spinal cord injury by inhibiting ferroptosis 被引量:43
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作者 Xue Yao Yan Zhang +12 位作者 Jian Hao Hui-Quan Duan Chen-Xi Zhao Chao Sun Bo Li Bao-You Fan Xu Wang Wen-Xiang Li Xuan-Hao Fu Yong Hu Chang Liu Xiao-Hong Kong Shi-Qing Feng 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第3期532-541,共10页
Ferroptosis is an iron-dependent novel cell death pathway. Deferoxamine, a ferroptosis inhibitor, has been reported to promote spinal cord injury repair. It has yet to be clarified whether ferroptosis inhibition repre... Ferroptosis is an iron-dependent novel cell death pathway. Deferoxamine, a ferroptosis inhibitor, has been reported to promote spinal cord injury repair. It has yet to be clarified whether ferroptosis inhibition represents the mechanism of action of Deferoxamine on spinal cord injury recovery. A rat model of Deferoxamine at thoracic 10 segment was established using a modified Allen's method. Ninety 8-week-old female Wistar rats were used. Rats in the Deferoxamine group were intraperitoneally injected with 100 mg/kg Deferoxamine 30 minutes before injury. Simultaneously, the Sham and Deferoxamine groups served as controls. Drug administration was conducted for 7 consecutive days. The results were as follows:(1) Electron microscopy revealed shrunken mitochondria in the spinal cord injury group.(2) The Basso, Beattie and Bresnahan locomotor rating score showed that recovery of the hindlimb was remarkably better in the Deferoxamine group than in the spinal cord injury group.(3) The iron concentration was lower in the Deferoxamine group than in the spinal cord injury group after injury.(4) Western blot assay revealed that, compared with the spinal cord injury group, GPX4, xCT, and glutathione expression was markedly increased in the Deferoxamine group.(5) Real-time polymerase chain reaction revealed that, compared with the Deferoxamine group, mRNA levels of ferroptosis-related genes Acyl-CoA synthetase family member 2(ACSF2) and iron-responsive element-binding protein 2(IREB2) were up-regulated in the Deferoxamine group.(6) Deferoxamine increased survival of neurons and inhibited gliosis. These findings confirm that Deferoxamine can repair spinal cord injury by inhibiting ferroptosis. Targeting ferroptosis is therefore a promising therapeutic approach for spinal cord injury. 展开更多
关键词 nerve REGENERATION iron spinal CORD INJURY secondary INJURY ferroptosis DEFEROXAMINE GPX4 xCT treatment astrogliosis lipid PEROXIDATION neural REGENERATION
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The glial scar in spinal cord injury and repair 被引量:29
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作者 Yi-Min Yuan Cheng He 《Neuroscience Bulletin》 SCIE CAS CSCD 2013年第4期421-435,共15页
Glial scarring following severe tissue damage and inflammation after spinal cord injury (SCI) is due to an extreme, uncontrolled form of reactive astrogliosis that typically occurs around the injury site. The scarri... Glial scarring following severe tissue damage and inflammation after spinal cord injury (SCI) is due to an extreme, uncontrolled form of reactive astrogliosis that typically occurs around the injury site. The scarring process includes the misalignment of activated astrocytes and the deposition of inhibitory chondroitin sulfate proteoglycans. Here, we first discuss recent developments in the molecular and cellular features of glial scar formation, with special focus on the potential cellular origin of scar-forming cells and the molecular mechanisms underlying glial scar formation after SCI. Second, we discuss the role of glial scar formation in the regulation of axonal regeneration and the cascades of neuro-inflammation. Last, we summarize the physical and pharmacological approaches targeting the modulation of glial scarring to better understand the role of glial scar formation in the repair of SCI. 展开更多
关键词 glial scar spinal cord injury axonal regeneration astrocyte activation reactive astrogliosis neuro-inflammation
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缺血性脑卒中后星形胶质细胞信号通路变化及潜在治疗靶点研究 被引量:14
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作者 程笑 杨欢 +2 位作者 杨滢霖 王月华 杜冠华 《中国新药杂志》 CAS CSCD 北大核心 2017年第7期749-754,共6页
星形胶质细胞是中枢神经系统中含量最丰富的神经胶质细胞,对维持大脑正常生理功能起着重要作用。此外,星形胶质细胞还参与多种中枢神经系统疾病的发病过程,如局灶性脑缺血。局灶性脑缺血是导致患者脑损伤和死亡的主要原因,其主要病理特... 星形胶质细胞是中枢神经系统中含量最丰富的神经胶质细胞,对维持大脑正常生理功能起着重要作用。此外,星形胶质细胞还参与多种中枢神经系统疾病的发病过程,如局灶性脑缺血。局灶性脑缺血是导致患者脑损伤和死亡的主要原因,其主要病理特征之一是星形胶质细胞增生以及胶质疤痕的形成。本文针对缺血性脑卒中后星形胶质细胞中分子水平的动态变化以及信号通路进行综述,探讨基于星形胶质细胞的治疗局灶性脑缺血的潜在治疗靶点。 展开更多
关键词 星形胶质细胞 缺血性脑卒中 胶质化
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Environmental cues determine the fate of astrocytes after spinal cord injury 被引量:10
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作者 Fatima M.Nathan Shuxin Li 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第12期1964-1970,共7页
Reactive astrogliosis occurs after central nervous system(CNS) injuries whereby resident astrocytes form rapid responses along a graded continuum. Following CNS lesions, na?ve astrocytes are converted into reactive... Reactive astrogliosis occurs after central nervous system(CNS) injuries whereby resident astrocytes form rapid responses along a graded continuum. Following CNS lesions, na?ve astrocytes are converted into reactive astrocytes and eventually into scar-forming astrocytes that block axon regeneration and neural repair. It has been known for decades that scarring development and its related extracellular matrix molecules interfere with regeneration of injured axons after CNS injury, but the cellular and molecular mechanisms for controlling astrocytic scar formation and maintenance are not well known. Recent use of various genetic tools has made tremendous progress in better understanding genesis of reactive astrogliosis. Especially, the latest experiments demonstrate environment-dependent plasticity of reactive astrogliosis because reactive astrocytes isolated from injured spinal cord form scarring astrocytes when transplanted into injured spinal cord, but revert in retrograde to naive astrocytes when transplanted into naive spinal cord. The interactions between upregulated type I collagen and its receptor integrin β1 and the N-cadherin-mediated cell adhesion appear to play major roles for local astrogliosis around the lesion. This review centers on the environment-dependent plasticity of reactive astrogliosis after spinal cord injury and its potential as a therapeutic target. 展开更多
关键词 astrogliosis astrocyte fate scar formation spinal cord injury axon regeneration environmentcue collagen I integrin β1
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Neuroprotection by immunomodulatory agents in animal models of Parkinson's disease 被引量:7
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作者 Bridget Martinez Philip V.Peplow 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第9期1493-1506,共14页
Parkinson’s disease(PD) is an age-related neurodegenerative disease for which the characteristic motor symptoms emerge after an extensive loss of dopamine containing neurons.The cell bodies of these neurons are pre... Parkinson’s disease(PD) is an age-related neurodegenerative disease for which the characteristic motor symptoms emerge after an extensive loss of dopamine containing neurons.The cell bodies of these neurons are present in the substantia nigra,with the nerve terminals being in the striatum.Both innate and adaptive immune responses may contribute to dopaminergic neurodegeneration and disease progression is potentially linked to these.Studies in the last twenty years have indicated an important role for neuroinflammation in PD through degeneration of the nigrostriatal dopaminergic pathway.Characteristic of neuroinflammation is the activation of brain glial cells,principally microglia and astrocytes that release various soluble factors.Many of these factors are proinflammatory and neurotoxic and harmful to nigral dopaminergic neurons.Recent studies have identified several different agents with immunomodulatory properties that protected dopaminergic neurons from degeneration and death in animal models of PD.All of the agents were effective in reducing the motor deficit and alleviating dopaminergic neurotoxicity and,when measured,preventing the decrease of dopamine upon being administered therapeutically after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine,6-hydroxydopamine,rotenone-lesioning or delivery of adeno-associated virus-α-synuclein to the ventral midbrain of animals.Some of these agents were shown to exert an anti-inflammatory action,decrease oxidative stress,and reduce lipid peroxidation products.Activation of microglia and astrocytes was also decreased,as well as infiltration of T cells into the substantia nigra.Pretreatment with fingolimod,tanshinoine I,dimethyl fumarate,thalidomide,or cocaine-and amphetamine-regulated transcript peptide as a preventive strategy ameliorated motor deficits and nigral dopaminergic neurotoxicity in brain-lesioned animals.Immunomodulatory agents could be used to treat patients with early clinical signs of the disease or potentially even prior to disease onset in those ide 展开更多
关键词 Parkinson's disease immunomodulatory agents NEUROPROTECTION INFLAMMATION oxidative stress animal models MICROGLIOSIS astrogliosis
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FOXO3a Inhibits TNF-α-and IL-1β-Induced Astrocyte Proliferation:Implication for Reactive Astrogliosis 被引量:9
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作者 MIN CUI YUNLONG HUANG +2 位作者 CHANGHAI TIAN YONG ZHAO AND JIALIN ZHENG 《神经损伤与功能重建》 2011年第3期199-212,共14页
反应性星形胶质细胞增生是神经退行性疾病的特征性病理性改变之一。炎性细胞因子,如TNF-α和IL-1β,已被证实在神经退行性疾病中介导反应性星形胶质细胞增生,尽管其分子机制仍不清楚。本研究探讨严重反应性星形胶质细胞增生的一个主要... 反应性星形胶质细胞增生是神经退行性疾病的特征性病理性改变之一。炎性细胞因子,如TNF-α和IL-1β,已被证实在神经退行性疾病中介导反应性星形胶质细胞增生,尽管其分子机制仍不清楚。本研究探讨严重反应性星形胶质细胞增生的一个主要方面——转录因子FOXO3a在星形胶质细胞增生中的作用。本研究通过Ki67和BrdU免疫染色证实TNF-α和IL-1β促进星形胶质细胞增生。本研究进一步发现细胞因子介导的星形胶质细胞增生伴有FOXO3a磷酸化的增加和核表达的下降。颅内注射TNF-α和IL-1β导致星形胶质细胞增生和肥大,这与星形胶质细胞中的Foxo3a核表达下降有关。为了确定Foxo3a在星形胶质细胞增生中的作用,在腺病毒中过表达野生型Foxo3a,引起p27Kip1及Gadd45α上调,且显著抑制细胞因子介导的星形胶质细胞增生。与之相反,负显性型FOXO3a的过表达使p27Kip1降低,下调Cyclin D1,促进星形胶质细胞增生。同样,Foxo3a敲除小鼠中分离的星形胶质细胞表现出更高的增生趋势。颅内注射细胞因子后,Foxo3a敲除小鼠在体内表现出严重的星形胶质细胞增生。综上所述,FOXO3a在促炎因子刺激时对于遏制星形胶质细胞增生发挥重要作用,FOXO3a功能的缺失可能是严重反应性星形胶质细胞增生中星形胶质细胞增生的原因。了解FOXO3a在反应性星形胶质细胞增生中的关键调节作用可能为神经炎症提供一个新的治疗靶点。 展开更多
关键词 反应性星形胶质细胞增生 促炎因子 FOXO3A Akt-1 磷酸化 CYCLIN D1
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Astrocyte Function and Role in Motor Neuron Disease:A Future Therapeutic Target? 被引量:9
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作者 DANIEL BLACKBURN SIRANUSH SARGSYAN +1 位作者 PETER N.MONK PAMELA J.SHAW 《神经损伤与功能重建》 2009年第5期351-362,共12页
星形胶质细胞是中枢神经系统中数量最多的细胞,从引导轴突、突触支持到控制血-脑脊液屏障及脑血流,发挥多种作用。发挥这些作用需要通过大量不同类型的星形胶质细胞进行。本文对星形胶质细胞的功能,尤其是保持突触平衡、调节神经元信号... 星形胶质细胞是中枢神经系统中数量最多的细胞,从引导轴突、突触支持到控制血-脑脊液屏障及脑血流,发挥多种作用。发挥这些作用需要通过大量不同类型的星形胶质细胞进行。本文对星形胶质细胞的功能,尤其是保持突触平衡、调节神经元信号传导、保护氧化损伤下的神经元和决定内源性神经前体细胞分化方面的作用进行综述。本文还重点讨论近年星形胶质细胞在运动神经元病(MND)中的作用方面的研究,强调其在细胞替代治疗中作为治疗靶标和治疗剂的潜能。在20%家族性MND中涉及到的铜锌超氧化物歧化酶(SOD1)基因,其必须表达在胶质细胞和运动神经元中来诱导小鼠疾病模型的疾病状态。在星形胶质细胞中选择性减少突变SOD1(mSOD1)不会影响疾病发作,可延缓疾病进展;但减少运动神经元中的mSOD1可推迟疾病发作,延缓早期病程,对寿命无影响。这提示胶质细胞在MND中可作为潜在的治疗靶标。然而,对星形胶质细胞特异性标志物、前体细胞、亚型的认识缺乏意味着对其发育/分化、应对损伤的了解落后于对其功能的认识。只有深入理解这些问题才能有效运用星形胶质细胞靶向或替代治疗慢性中枢神经系统疾病,如MND。 展开更多
关键词 星形胶质细胞 星形胶质细胞增生 胶质纤维酸性蛋白 运动神经元病
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Star power: harnessing the reactive astrocyte response to promote remyelination in multiple sclerosis
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作者 Markley Silva Oliveira Junior Laura Reiche +3 位作者 Emerson Daniele Ines Kortebi Maryam Faiz Patrick Küry 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第3期578-582,共5页
Astrocytes are indispensable for central nervous system development and homeostasis.In response to injury and disease,astrocytes are integral to the immunological-and the,albeit limited,repair response.In this review,... Astrocytes are indispensable for central nervous system development and homeostasis.In response to injury and disease,astrocytes are integral to the immunological-and the,albeit limited,repair response.In this review,we will examine some of the functions reactive astrocytes play in the context of multiple sclerosis and related animal models.We will consider the heterogeneity or plasticity of astrocytes and the mechanisms by which they promote or mitigate demyelination.Finally,we will discuss a set of biomedical strategies that can stimulate astrocytes in their promyelinating response. 展开更多
关键词 ASTROCYTES DEMYELINATION drug-based therapies myelin repair oligodendrocyte precursor cells reactive astrogliosis
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Argatroban promotes recovery of spinal cord injury by inhibiting the PAR1/JAK2/STAT3 signaling pathway
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作者 Chenxi Zhao Tiangang Zhou +9 位作者 Ming Li Jie Liu Xiaoqing Zhao Yilin Pang Xinjie Liu Jiawei Zhang Lei Ma Wenxiang Li Xue Yao Shiqing Feng 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第2期434-439,共6页
Argatroban is a synthetic thrombin inhibitor approved by U.S.Food and Drug Administration for the treatment of thrombosis.However,whether it plays a role in the repair of spinal cord injury is unknown.In this study,we... Argatroban is a synthetic thrombin inhibitor approved by U.S.Food and Drug Administration for the treatment of thrombosis.However,whether it plays a role in the repair of spinal cord injury is unknown.In this study,we established a rat model of T10 moderate spinal cord injury using an NYU Impactor ModerⅢand performed intraperitoneal injection of argatroban for 3 consecutive days.Our results showed that argatroban effectively promoted neurological function recovery after spinal cord injury and decreased thrombin expression and activity in the local injured spinal cord.RNA sequencing transcriptomic analysis revealed that the differentially expressed genes in the argatroban-treated group were enriched in the JAK2/STAT3 pathway,which is involved in astrogliosis and glial scar formation.Western blotting and immunofluorescence results showed that argatroban downregulated the expression of the thrombin receptor PAR1 in the injured spinal cord and the JAK2/STAT3 signal pathway.Argatroban also inhibited the activation and proliferation of astrocytes and reduced glial scar formation in the spinal cord.Taken together,these findings suggest that argatroban may inhibit astrogliosis by inhibiting the thrombin-mediated PAR1/JAK2/STAT3 signal pathway,thereby promoting the recovery of neurological function after spinal cord injury. 展开更多
关键词 ARGATROBAN astrogliosis JAK/STAT signaling pathway protease-activated receptor-1 spinal cord injury THROMBIN vimentin
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MicroRNAs as potential therapeutics for treating spinal cord injury 被引量:3
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作者 Hualin Yan Peiwei Hong +1 位作者 Mei Jiang Hedong Li 《Neural Regeneration Research》 SCIE CAS CSCD 2012年第17期1352-1359,共8页
MicroRNAs are a class of recently discovered, small non-coding RNAs that have been shown to play essential roles in a vast majority of biological processes. Very little is known about the role of microRNAs during spin... MicroRNAs are a class of recently discovered, small non-coding RNAs that have been shown to play essential roles in a vast majority of biological processes. Very little is known about the role of microRNAs during spinal cord injury. This review summarizes the changes in expression levels of microRNAs after spinal cord injury. These aberrant changes suggest that microRNAs play an important role in inflammation, oxidative stress, apoptosis, glial scar formation and axonal regeneration. Given their small size and specificity of action, microRNAs could be potential therapeutics for treating spinal cord injury in the future. There are rapidly developing techniques for manipulating microRNA levels in animals; we review different chemical modification and delivery strategies. These may provide platforms for designing efficient microRNA delivery protocols for use in the clinic. 展开更多
关键词 MICRORNAS spinal cord injury reactive astrogliosis axonal regeneration antagomir anti-miR neural regeneration REVIEWS
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大鼠轻型颅脑损伤后星形胶质细胞与神经元的病理改变 被引量:4
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作者 林靖 张炜 +3 位作者 郑小强 程宏伟 高瑞庭 宋朝理 《中国临床神经外科杂志》 2018年第4期246-249,共4页
目的探讨轻型颅脑损伤(TBI)后神经元及星形胶质细胞改变的病理生理过程。方法将24只成年SD大鼠随机分为轻型TBI组(n=18)和假手术组(n=6),轻型TBI组又分为伤后3 h(n=6)、伤后24 h(n=6)、伤后72 h(n=6)三亚组。采用液压冲击法制作轻型TBI... 目的探讨轻型颅脑损伤(TBI)后神经元及星形胶质细胞改变的病理生理过程。方法将24只成年SD大鼠随机分为轻型TBI组(n=18)和假手术组(n=6),轻型TBI组又分为伤后3 h(n=6)、伤后24 h(n=6)、伤后72 h(n=6)三亚组。采用液压冲击法制作轻型TBI模型。采用胶质纤维酸性蛋白(GFAP)染色检测星形胶质细胞,采用Fluoro-Jade B(FJ-B)荧光染色检测变性神经元。结果与假手术组相比,轻型TBI后3 h、24 h、72 h邻近顶叶皮质、海马CA2/3区GFAP阳性细胞数量均明显减少(P<0.05);缺失区周围星形胶质细胞肿胀增生明显。FJ-B阳性神经元在损伤后3 h无明显增加(P>0.05),伤后24 h皮层区FJ-B阳性神经元显著增加(P<0.05),伤后72 h海马区FJ-B阳性神经元显著增加(P<0.05)。伤后72 h伤侧皮层区与海马区GFAP阳性细胞数和FJ-B阳性细胞数呈显著负相关(r=-0.8285,P<0.05)。结论轻型TBI后星形胶质细胞超急性期(3 h)即出现损害和胶质反应,神经元则在急性期(24 h)至亚急性期(72 h)出现明显损害,星形胶质细胞缺失程度可以反应神经元损伤程度。 展开更多
关键词 轻型颅脑损伤 胶质反应 神经元变性 大鼠
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Fibroadhesive scarring of grafted collagen scaffolds interferes with implant–host neural tissue integration and bridging in experimental spinal cord injury 被引量:4
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作者 Haktan Altinova Sebastian Hammes +10 位作者 Moniek Palm Jose Gerardo-Nava Pascal Achenbach Ronald Deumens Emmanuel Hermans Tobias Fuhrmann Arne Boecker Sabien Geraldine Antonia van Neerven Ahmet Bozkurt Joachim Weis Gary Anthony Brook 《Regenerative Biomaterials》 SCIE 2019年第2期75-87,共13页
Severe traumatic spinal cord injury(SCI)results in a devastating and permanent loss of function,and is currently an incurable condition.It is generally accepted that future intervention strategies will require combina... Severe traumatic spinal cord injury(SCI)results in a devastating and permanent loss of function,and is currently an incurable condition.It is generally accepted that future intervention strategies will require combinational approaches,including bioengineered scaffolds,to support axon growth across tissue scarring and cystic cavitation.Previously,we demonstrated that implantation of a microporous type-I collagen scaffold into an experimental model of SCI was capable of supporting functional recovery in the absence of extensive implant–host neural tissue integration.Here,we demonstrate the reactive host cellular responses that may be detrimental to neural tissue integration after implantation of collagen scaffolds into unilateral resection injuries of the adult rat spinal cord.Immunohistochemistry demonstrated scattered fibroblast-like cell infiltration throughout the scaffolds as well as the presence of variable layers of densely packed cells,the fine processes of which extended along the graft–host interface.Few reactive astroglial or regenerating axonal profiles could be seen traversing this layer.Such encapsulation-type behaviour around bioengineered scaffolds impedes the integration of host neural tissues and reduces the intended bridging role of the implant.Characterization of the cellular and molecular mechanisms underpinning this behaviour will be pivotal in the future design of collagen-based bridging scaffolds intended for regenerative medicine. 展开更多
关键词 spinal cord injury CNS-scarring type-I collagen SCAFFOLD astrogliosis FIBROSIS encapsulation
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Targeting ERK1/2-calpain 1-NF-κB signal transduction in secondary tissue damage and astrogliosis after spinal cord injury 被引量:1
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作者 Xin Xin Yu Vimala Bondada Colin Rogers Carolyn A. Meyer Chen Guang Yu 《Frontiers in Biology》 CAS CSCD 2015年第5期427-438,共12页
Neuronal damage, glial inflammation, and astrogliosis/astroglial scar formation are major secondary injury mechanisms that are significant contributors to functional deficits after spinal cord injury (SCI). The obje... Neuronal damage, glial inflammation, and astrogliosis/astroglial scar formation are major secondary injury mechanisms that are significant contributors to functional deficits after spinal cord injury (SCI). The objectives of the study were to evaluate the distinct roles of ERK2 vs. ERK1/2 and ERK1/2-calpain 1 -NF-r,B signal transduction in the tissue damage and astrogliosis/astroglial scar formation following SCI in rats. RNAi approaches, pharmacological intervention (U0126), Western blot analysis, immunofluorescence analysis, and histological assessment were used to target ERK1/2-calpain 1-NF-KB signal transduction pathway for neuroprotection. Histological staining analysis demonstrated that selectively reducing pERK2 using ERK2 siRNA, but not inhibition of pERK1/2 with U0126, significantly reduced lesion volume and improved total tissue sparing, white matter sparing, and gray matter sparing in spinal cord two weeks after contusive SCI. An ERK1/2-calpain 1-NF-KB signal transduction pathway was involved in the astroglial scar formation after SCI. Blockade of ERK1/2 by U0126 decreased calpain 1 expression 4 h following SCI. Selective calpain 1 reduction by lentiviral shRNA attenuated astroglial NF-κB activity and astroglial scar formation after SCI in rats. Taken together, these results demonstrate the involvement of individual ERK2 and caipain 1 signaling pathways in tissue damage and astrogliosis/astroglial scar formation in animal models of SCI. Therefore, targeting individual ERK and its downstream signal transduction of calpain 1-NF-κB may provide greater potential as novel therapeutics for minimizing tissue damage and astroglial scar formation following SCI. 展开更多
关键词 calpain 1 ERK1/2 RNAi NEURODEGENERATION astrogliosis spinal cord injury
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Increased expression of Notch1 in temporal lobe epilepsy: animal models and clinical evidence 被引量:1
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作者 Xijin Liu Zhiyong Yang +1 位作者 Yaping Yin Xuejun Deng 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第5期526-533,共8页
Temporal lobe epilepsy is associated with astrogliosis. Notchl signaling can induce astrogliosis in glioma. However, it remains unknown whether Notchl signaling is involved in the pathogenesis of epilepsy. This study ... Temporal lobe epilepsy is associated with astrogliosis. Notchl signaling can induce astrogliosis in glioma. However, it remains unknown whether Notchl signaling is involved in the pathogenesis of epilepsy. This study investigated the presence of Notchl, hairy and enhancer of split-l, and glial fibrillary acidic protein in the temporal neocortex and hippocampus of lithium-pilocar- pine-treated rats. The presence of Notchl and hairy and enhancer of split-1 was also explored in brain tissues of patients with intractable temporal lobe epilepsy. Quantitative electroencephalo- gram analysis and behavioral observations were used as auxiliary measures. Results revealed that the presence of Notchl, hairy and enhancer of split-l, and glial fibriUary acidic protein were en- hanced in status epilepticus and vehicle-treated spontaneous recurrent seizures rats, but remain unchanged in the following groups: control, absence of either status epilepticus or spontaneous recurrent seizures, and zileuton-treated spontaneous recurrent seizures. Compared with patient control cases, the presences of Notch1 and hairy and enhancer of split- 1 were upregulated in the temporal neocortex of patients with intractable temporal lobe epilepsy. Therefore, these results suggest that Notchl signaling may play an important role in the onset of temporal lobe epilepsy via astrogliosis. Furthermore, zileuton may be a potential therapeutic strategy for temporal lobe epilepsy by blocking Notchl signaling. 展开更多
关键词 nerve regeneration brain injury epilepsy temporal lobe epilepsy astrogliosis Notch 1 hairy and enhancer of split-1 glial fibrillary acidic protein LiCl-pilocarpine ZILEUTON the Natural Science Foundation of Hubei Province neural regeneration
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脊髓损伤后星形胶质细胞增生动态变化分析 被引量:3
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作者 李在望 张剑平 +3 位作者 王兰 石国锋 毛旭强 程卫国 《神经损伤与功能重建》 2013年第3期165-170,共6页
目的:分析脊髓损伤(SCI)后星形胶质细胞(Ast)增生动态变化。方法:建立Ast划痕损伤模型及大鼠SCI模型,在多个时间点(0、6、12、24、48、72h)观察Ast划痕损伤后细胞形态、增殖及迁徙的变化,并设立对照组应用ELISA法检测划痕损... 目的:分析脊髓损伤(SCI)后星形胶质细胞(Ast)增生动态变化。方法:建立Ast划痕损伤模型及大鼠SCI模型,在多个时间点(0、6、12、24、48、72h)观察Ast划痕损伤后细胞形态、增殖及迁徙的变化,并设立对照组应用ELISA法检测划痕损伤后各个时间点Ast分泌致炎因子TNF-a、IL-1β、IL-6表达量;应用免疫荧光染色及Western blot分析不同时间点(0、1、3、7、14、28d)大鼠SCI后GFAP的表达量变化。结果:划痕损伤后12h划痕边缘已出现部分细胞增生及增殖细胞(Brdu染色阳性细胞),损伤后24h细胞已明显增生并大量增殖,损伤后48h细胞体普遍增大,突起明显增多,同时有大量细胞已迁徙至划痕中央处,损伤后72h增生的细胞及迁徙至划痕的细胞几乎已覆盖划痕,部分形成瘢痕;与对照组比较,损伤后12hTNF-a、IL-1β、IL-6均明显增加(P〈0.05),24、48及72hTNF-a、IL-1β、IL-6表达量增加更加明显(P〈0.01)。大鼠SCI模型显示SCI后1dGFAP表达量增加不明显,3d后明显增加,而且一直呈增加趋势,14-28d后形成表达高峰。结论:Ast活化增生是SCI后一个持续且普遍的标志性病理生理过程。 展开更多
关键词 脊髓损伤 星型胶质细胞增生 动态变化
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FGF-2 is required to prevent astrogliosis in the facial nucleus after facial nerve injury and mechanical stimulation of denervated vibrissal muscles
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作者 Arzu Hizay Mark Seitz +6 位作者 Maria Grosheva Nektarios Sinis Yasemin Kaya Habib Bendella Levent Sarikcioglu Sarah A.Dunlop Doychin N.Angelov 《The Journal of Biomedical Research》 CAS CSCD 2016年第2期142-148,共7页
Recently,we have shown that manual stimulation of paralyzed vibrissal muscles after facial-facial anastomosis reduced the poly-innervation of neuromuscular junctions and restored vibrissal whisking.Using gene knock ou... Recently,we have shown that manual stimulation of paralyzed vibrissal muscles after facial-facial anastomosis reduced the poly-innervation of neuromuscular junctions and restored vibrissal whisking.Using gene knock outs,we found a differential dependence of manual stimulation effects on growth factors.Thus,insulin-like growth factor-1 and brain-derived neurotrophic factor are required to underpin manual stimulation-mediated improvements,whereas FGF-2 is not.The lack of dependence on FGF-2 in mediating these peripheral effects prompted us to look centrally,i.e.within the facial nucleus where increased astrogliosis after facial-facial anastomosis follows "synaptic stripping".We measured the intensity of Cy3-fluorescence after immunostaining for glial fibrillary acidic protein(GFAP) as an indirect indicator of synaptic coverage of axotomized neurons in the facial nucleus of mice lacking FGF-2(FGF-2^(-/-) mice).There was no difference in GFAP-Cy3-fluorescence(pixel number,gray value range17-103) between intact wildtype mice(2.12± 0.37×10~7) and their intact FGF-2^(-/-) counterparts(2.12±0.27×10~7) nor after facial-facial anastomosis +handling(wildtype:4.06±0.32×10~7;FGF-2^(-/-):4.39±0.17×10~7).However,after facial-facial anastomosis,GFAP-Cy3-fluorescence remained elevated in FGF-2^(-/-)-animals(4.54±0.12×10~7),whereas manual otimulation reduced the intensity of GFAP-immunofluorescence in wild type mice to values that were not significantly different from intact mice(2.63±0.39×10).We conclude that FGF-2 is not required to underpin the beneficial effects of manual stimulation at the neuro-muscular junction,but it is required to minimize astrogliosis in the brainstem and,by implication,restore synaptic coverage of recovering facial motoneurons. 展开更多
关键词 FGF-2 facial nerve axotomy astrogliosis whisking function polyinnervation
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Effect of ciliary neurotrophic factor on the reactive astro-gliosis of cultured astrocytes from newborn rat brain
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作者 XIAN Haiqing FAN Ming +4 位作者 YU Shun LIU Shuhong DING Aishi Ml Ruifa QIU Zongyin 《Chinese Science Bulletin》 SCIE EI CAS 2001年第2期129-133,共5页
The effect of ciliary neurotrophic factor (CNTF) on reactive astrogliosis was studied on a mechanical scratch model of the confluent astrocytic cultures from newborn rat brain. Following injury, the astrocytes at the ... The effect of ciliary neurotrophic factor (CNTF) on reactive astrogliosis was studied on a mechanical scratch model of the confluent astrocytic cultures from newborn rat brain. Following injury, the astrocytes at the edge of the injured area displayed a typical process of the reactive astrogliosis. This process included apparently hyperplastic change and significantly increased GFAP expression of the flat astrocytes, and migration to the injured area of the O-2A progenitor cells and their differentiation into process-bearing astrocytes. Exogenous CNTF applied to the cell cultures significantly promoted the hyperplasia and GFAP expression of the flat astrocytes. The results suggest that CNTF can enhance the reactive astrogliosis in the injured area. 展开更多
关键词 CILIARY NEUROTROPHIC factor astrogliosis mechanical scratch model.
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大鼠脑针刺损伤引起的碱性成纤维细胞生长因子变化与5′-甲基硫代腺苷对反应性星形胶质化的影响 被引量:1
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作者 康越 庄丽 +2 位作者 朱建辉 赵仲华 叶诸榕 《中国神经科学杂志》 CSCD 1999年第4期289-296,共8页
系统观察大鼠CNS针刺损伤后表达bFGF、FGF受体(FGFR)和GFAP的细胞种类、时相以及相互影响,探讨FGFR抑制剂——5′-MTA对体内反应性星形胶质化的影响。将75 只SD雄性大鼠均分15 组:伤后0.5 h... 系统观察大鼠CNS针刺损伤后表达bFGF、FGF受体(FGFR)和GFAP的细胞种类、时相以及相互影响,探讨FGFR抑制剂——5′-MTA对体内反应性星形胶质化的影响。将75 只SD雄性大鼠均分15 组:伤后0.5 h~30 d 处死的实验组与对照组。将20 只雄性Wistar大鼠均分2 大组。甲组伤后4 d 处死(5 只加药鼠),乙组伤后8 d 处死(5 只加药鼠);其中非加药鼠作相应单纯损伤对照组。HE染色和免疫组化染色观测bFGF、FGFR和GFAP表达并作形态定量分析。伤后0.5 h,星形胶质细胞(As)胞核肿胀;尔后伤道周围神经元脱失;4 d 起受损组织渐为反应性As填补;GFAP反应于4~7 d 达顶峰。4~6 h,As 和神经元表达bFGF先后增强;2~4 d,脑内bFGF水平最高,以As为主;核仁bFGF亦为阳性。12 h,FGFR表达轻度增强,1 d 时达高峰,随即回落。5′-MTA加药组,4 d 时伤区细胞数量及bFGF和GFAP表达强度均低于对照组;加药组伤道(8 d)明显宽于对照组。提示:脑损伤后As首先反应性表达bFGF,As 自分泌bFGF是反应性星形胶质化的主要始动机制。bFGF可能内化入核仁发挥效应。伤? 展开更多
关键词 颅脑损伤 BFGF FGFR 5'-MTA 大鼠
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Role of Elevated Thrombospondin-1 in Kainic Acid-Induced Status Epilepticus 被引量:2
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作者 Yurong Zhang Mengdi Zhang +8 位作者 Wei Zhu Xiaohong Pan Qiaoyun Wang Xue Gao Chaoyun Wang Xiuli Zhang Yuxia Liu Shucui Li Hongliu Sun 《Neuroscience Bulletin》 SCIE CAS CSCD 2020年第3期263-276,共14页
Previous studies have suggested that thrombospondin-1(TSP-1) regulates the transforming growth factor beta 1(TGF-b1)/phosphorylated Smad2/3(p Smad2/3) pathway. Moreover, TSP-1 is closely associated with epilepsy. Howe... Previous studies have suggested that thrombospondin-1(TSP-1) regulates the transforming growth factor beta 1(TGF-b1)/phosphorylated Smad2/3(p Smad2/3) pathway. Moreover, TSP-1 is closely associated with epilepsy. However, the role of the TSP-1-regulated TGFb1/p Smad2/3 pathway in seizures remains unclear. In this study, changes in this pathway were assessed following kainic acid(KA)-induced status epilepticus(SE) in rats.The results showed that increases in the TSP-1/TGF-b1/p Smad2/3 levels spatially and temporally matched the increases in glial fibrillary acidic protein(GFAP)/chondroitin sulfate(CS56) levels following KA administration.Inhibition of TSP-1 expression by small interfering RNA or inhibition of TGF-b1 activation with a Leu-Ser-Lys-Leu peptide significantly reduced the severity of KA-induced acute seizures. These anti-seizure effects were accompanied by decreased GFAP/CS56 expression and Smad2/3 phosphorylation. Moreover, inhibiting Smad2/3 phosphorylation with ponatinib or SIS3 also significantly reduced seizure severity, alongside reducing GFAP/CS56 immunoreactivity. These results suggest that the TSP-1-regulated TGF-b1/p Smad2/3 pathway plays a key role in KA-induced SE and astrogliosis, and that inhibiting this pathway may be a potential anti-seizure strategy. 展开更多
关键词 astrogliosis STATUS epilepticus PONATINIB Thrombospondin-1
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壳聚糖作载体的NSCs移植对大鼠脑损伤区胶质增生的抑制作用 被引量:2
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作者 衣昕 金国华 +2 位作者 田美玲 秦建兵 毛伟峰 《解剖与临床》 2008年第3期172-175,共4页
目的:探讨壳聚糖作载体的神经干细胞(NSCs)移植对大鼠创伤性脑损伤(TBI)区胶质增生的抑制作用。方法:用低温冷冻干燥法制备壳聚糖多孔支架。将从鼠胚前脑中分离的NSCs进行扩增传代。Feeney法制备SD大鼠TBI模型12只,随机均分为2组:损伤... 目的:探讨壳聚糖作载体的神经干细胞(NSCs)移植对大鼠创伤性脑损伤(TBI)区胶质增生的抑制作用。方法:用低温冷冻干燥法制备壳聚糖多孔支架。将从鼠胚前脑中分离的NSCs进行扩增传代。Feeney法制备SD大鼠TBI模型12只,随机均分为2组:损伤对照组和NSCs+支架移植组2组。术后3个月取脑切片行Nissl染色、GFAP免疫荧光染色,观察两组损伤区和海马变化以及损伤区周边星形胶质细胞增生情况。结果:Nissl染色见损伤对照组创伤区形成烧杯状空洞,损伤侧海马萎缩变形,而NSCs+支架移植组创伤区有移植物填充且已与宿主整合,损伤侧海马萎缩不明显。GFAP免疫荧光染色,损伤对照组创伤区周边可见到大量GFAP阳性细胞,荧光强度较强,疤痕较宽,而NSCs+支架移植组创伤区周边仅见到少量的GFAP阳性细胞,荧光强度弱,疤痕较窄。t检验结果显示两组损伤区周围GFAP免疫荧光的灰度值、胶质疤痕宽度有显著性差异(P<0.01)。结论:大鼠TBI后行壳聚糖作载体的NSCs移植治疗可以抑制脑损伤区胶质增生,从而促进脑损伤的修复。 展开更多
关键词 创伤性脑损伤 壳聚糖 神经干细胞 胶质增生 胶质纤维酸性蛋白
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