期刊文献+
共找到36篇文章
< 1 2 >
每页显示 20 50 100
Neuroplasticity, limbic neuroblastosis and neuro-regenerative disorders 被引量:2
1
作者 Mahesh Kandasamy Ludwig Aigner 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第8期1322-1326,共5页
The brain is a dynamic organ of the biological renaissance due to the existence of neuroplasticity. Adult neurogenesis abides by every aspect of neuroplasticity in the intact brain and contributes to neural regenerati... The brain is a dynamic organ of the biological renaissance due to the existence of neuroplasticity. Adult neurogenesis abides by every aspect of neuroplasticity in the intact brain and contributes to neural regeneration in response to brain diseases and injury. The occurrence of adult neurogenesis has unequivocally been witnessed in human subjects, experimental and wildlife research including rodents, bats and cetaceans. Adult neurogenesis is a complex cellular process, in which generation of neuroblasts namely, neuroblastosis appears to be an integral process that occur in the limbic system and basal ganglia in addition to the canonical neurogenic niches. Neuroblastosis can be regulated by various factors and contributes to different functions of the brain. The characteristics and fate of neuroblasts have been found to be different among mammals regardless of their cognitive functions. Recently, regulation of neuroblastosis has been proposed for the sensorimotor interface and regenerative neuroplasticity of the adult brain. Hence, the understanding of adult neurogenesis at the functional level of neuroblasts requires a great scientific attention. Therefore, this mini-review provides a glimpse into the conceptual development of neuroplasticity, discusses the possible role of different types of neuroblasts and signifies neuroregenerative failure as a potential cause of dementia. 展开更多
关键词 NEUROPLASTICITY adult neurogenesis neuroblastS reactive neuroblastosis hippocampus ultrasound neuroregenerative disorders neotrophy ECHOLOCATION
暂未订购
Drosophila homolog of the intellectual disability-related long-chain acyl-CoA synthetase 4 is required for neuroblast proliferation 被引量:2
2
作者 Mingyue Jia Danqing Meng +3 位作者 Mo Chen Tingting Li Yong Q.Zhang Aiyu Yao 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2019年第1期5-17,共13页
Mutations in long-chain acyl-CoA synthetase 4 (ACSL4) are associated with non-syndromic X-linked intellectual disability (ID). However, the neural functions of ACSL4 and how loss of ACSL4 leads to ID remain largely un... Mutations in long-chain acyl-CoA synthetase 4 (ACSL4) are associated with non-syndromic X-linked intellectual disability (ID). However, the neural functions of ACSL4 and how loss of ACSL4 leads to ID remain largely unexplored. We report here that mutations in Acsl, the Drosophila ortholog of human ACSL3 and ACSL4, result in developmental defects of the mushroom body (MB), the center of olfactory learning and memory. Specifically, Acsl mutants show fewer MB neuroblasts (Nbs) due to reduced proliferation activity and premature differentiation. Consistently, these surviving Nbs show reduced expression of cyclin E, a key regulator of the G1-to S-phase cell cycle transition, and nuclear mislocalization of the transcriptional factor Prospero, which is known to repress self-renewal genes and activate differentiating genes. Furthermore, RNA-seq analysis reveals downregulated Nb-and cell-cyclerelated genes and upregulated neuronal differentiation genes in Acsl mutant Nbs. As Drosophila Acsl and human ACSL4 are functionally conserved, our findings provide novel insights into a critical and previously unappreciated role of Acsl in neurogenesis and the pathogenesis of ACSL4-related ID. 展开更多
关键词 ACSL4 DROSOPHILA MUSHROOM body neuroblast Neural stem cell PREMATURE differentiation
原文传递
Ethanol extract of Oenanthe javanica increases cell proliferation and neuroblast differentiation in the adolescent rat dentate gyrus 被引量:1
3
作者 Bai Hui Chen Joon Ha Park +12 位作者 Jeong Hwi Cho In Hye Kim Bich Na Shin Ji Hyeon Ahn Seok Joon Hwang Bing Chun Yan Hyun Jin Tae Jae Chul Lee Eun Joo Bae Yun Lyul Lee Jong Dai Kim Moo-Ho Won Il Jun Kang 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第2期271-276,共6页
Oenanthe javanica is an aquatic perennial herb that belongs to theOenanthe genus in Apiaceae family, and it displays well-known medicinal properties such as protective effects against glu-tamate-induced neurotoxicity.... Oenanthe javanica is an aquatic perennial herb that belongs to theOenanthe genus in Apiaceae family, and it displays well-known medicinal properties such as protective effects against glu-tamate-induced neurotoxicity. However, few studies regarding effects ofOenanthe javanica on neurogenesis in the brain have been reported. In this study, we examined the effects of a normal diet and a diet containing ethanol extract ofOenanthe javanica on cell proliferation and neu-roblast differentiation in the subgranular zone of the hippocampal dentate gyrus of adolescent rats using Ki-67 (an endogenous marker for cell proliferation) and doublecortin (a marker for neuroblast). Our results showed thatOenanthe javanica extract signiifcantly increased the number of Ki-67-immunoreactive cells and doublecortin-immunoreactive neuroblasts in the subgranular zone of the dentate gyrus in the adolescent rats. In addition, the immunoreactivity of brain-derived neurotrophic factor was signiifcantly increased in the dentate gyrus of the Oenanthe javanica extract-treated group compared with the control group. However, we did not ifnd that vascular endothelial growth factor expression was increased in theOenanthe javanica extract-treated group compared with the control group. These results indicate thatOenanthe javanica extract improves cell proliferation and neuroblast differentiation by increasing brain-de-rived neurotrophic factor immunoreactivity in the rat dentate gyrus. 展开更多
关键词 nerve regeneration Oenanthe javanica extract cell proliferation neuroblast differentiation brain-derived neurotrophic factor vascular endothelial growth factor rat neural regeneration
暂未订购
Inscuteable maintains type I neuroblast lineage identity via Numb/Notch signaling in the Drosophila larval brain 被引量:1
4
作者 Huanping An Wanzhong Ge +1 位作者 Yongmei Xi Xiaohang Yang 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2017年第3期151-162,共12页
In the Drosophila larval brain, type I and type Ⅱ neuroblasts(NBs) undergo a series of asymmetric divisions which give rise to distinct progeny lineages. The intermediate neural progenitors(INPs) exist only in ty... In the Drosophila larval brain, type I and type Ⅱ neuroblasts(NBs) undergo a series of asymmetric divisions which give rise to distinct progeny lineages. The intermediate neural progenitors(INPs) exist only in type Ⅱ NB lineages. In this study, we reveal a novel function of Inscuteable(Insc) that acts to maintain type I NB lineage identity. In insc type I NB clones of mosaic analyses with a repressible cell marker(MARCM), the formation of extra Deadpan(Dpn)tNB-like and GMC-like cells is observed. The lack of Insc leads to the defective localization and segregation of Numb during asymmetric cell division. By the end of cytokinesis, this results in insufficient Numb in ganglion mother cells(GMCs). The formation of extra Deadpan(Dpn)tcells in insc clones is prevented by the attenuation of Notch activity. This suggests that Insc functions through the Numb/Notch signaling pathway. We also show that in the absence of Insc in type I NB lineages, the cellular identity of GMCs is altered where they adopt an INP-like cell fate as indicated by the initiation of Dpn expression accompanied by a transient presence of Earmuff(Erm).These INP-like cells have the capacity to divide multiple times. We conclude that Insc is necessary for the maintenance of type I NB lineage identity. Genetic manipulations to eliminate most type I NBs with overproliferating type Ⅱ NBs in the larval brain lead to altered circadian rhythms and defective phototaxis in adult flies. This indicates that the homeogenesis of NB lineages is important for the adult's brain function. 展开更多
关键词 Drosophila larval brain neuroblasts(NBs) Inscuteable(Insc) NB lineage maintenance Type I and type NBs Numb/Notch signaling
原文传递
Porcine placental peptides improve neuroblast proliferation and differentiation via enhancement of TrkB and BDNF levels in D-glatacose-induced mouse aging model 被引量:1
5
作者 Xu Quan Caihong Gu +5 位作者 Feng Yan Yaoyao Gao Lin Chen Rong Wei Bingchun Yan Rong Hul 《Journal of Chinese Pharmaceutical Sciences》 CAS CSCD 2019年第10期739-748,共10页
Aging affects the nervous system as well as other organs.In our study,we aimed to study the pharmacological effects and mechanism of porcine placental peptides(PPP)in aging process,and to observe the changes of neurob... Aging affects the nervous system as well as other organs.In our study,we aimed to study the pharmacological effects and mechanism of porcine placental peptides(PPP)in aging process,and to observe the changes of neuroblast proliferation and differentiation as well as partial gene expression in hippocampus of D-galactose-induced aged mouse.Based on the analysis of experimental results,it was confirmed that PPP significantly improved neurobalst proliferation and differentiation in the mouse hippocampal DG by ki-67 and DCX immunohistochemistry.This result showed that PPP had anti-aging effects on D-galactoseinduced aging mouse model.Moreover,we observed up-regulated expressions of BDNF and TrkB proteins and down-regulated expressions of Caspase 3,8,and 9 proteins in the PPP-treated mouse hippocampus.Therefore,our results showed that PPP obviously improved neuroblast proliferation and differentiation,and its anti-aging effect might berelated to down-regulation of apoptosis-related proteins,including Caspase 3,8,and 9,via BDNF/TrkB pathway.Our findings provided valuable evidence for its applications in the health and medicine sectors. 展开更多
关键词 Porcine placenta peptide ANTI-AGING neuroblast proliferation and differentiation Apoptosis-related proteins BDNF/TrkB pathway
原文传递
EndoN treatment allows neuroblasts to leave the rostral migratory stream and migrate towards a lesion within the prefrontal cortex of rats
6
作者 Jannis Gundelach Michael Koch 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第9期1740-1747,共8页
The binding properties of neural cell adhesion molecule are modulated by a polysialic acid moiety. This plays an important role in the migration of adult born neuroblasts from their area of origin, the subventricular ... The binding properties of neural cell adhesion molecule are modulated by a polysialic acid moiety. This plays an important role in the migration of adult born neuroblasts from their area of origin, the subventricular zone, towards the olfactory bulb. Polysialisation increases the migration speed of the cells and helps to prevent the neuroblasts from leaving their migration route, the rostral migratory stream. Here, we evaluated the potential of intraventricular application of endoneuraminidase-N, an enzyme that specifically cleaves polysialic acid from neural cell adhesion molecule, in a rat model for structural prefrontal cortex damage. As expected, endoneuraminidase-N caused the rostral migratory stream to become wider, with a less uniform cellular orientation. Furthermore, endoneuraminidase-N treatment caused the neuroblasts to leave the rostral migratory stream and migrate towards the lesioned tissue. Despite the neuroblasts not being differentiated into neurons after a survival time of three weeks, this technique provides a solid animal model for future work on the migration and differentiation of relocated neuroblasts and might provide a basis for a future endogenous stem cell-based therapy for structural brain damage. The experiments were approved by the local animal care committee(522-27-11/02-00, 115;Senatorin für Wissenschaft, Gesundheit und Verbraucherschutz, Bremen, Germany) on February 10, 2016. 展开更多
关键词 endogenous stem cells endoneuraminidase neural cell adhesion molecule neuroblast migration olfactory bulb polisialic acid structural brain damage subventricular zone
暂未订购
儿童纵隔神经母细胞性肿瘤CT特征对病理亚型及预后的预测价值
7
作者 耿纯逸雪 张笑春 +5 位作者 颜泽鑫 黄雯静 赵晓锐 郑曼娜 沈紫冰 吴慧莹 《临床放射学杂志》 北大核心 2026年第1期144-149,共6页
目的探讨儿童纵隔外周神经母细胞性肿瘤(pNT)的CT特征与病理亚型的相关性,评估其对无创分型及预后预测的临床价值。方法回顾性分析81例病理确诊的儿童纵隔pNT不同亚型临床及CT特征;采用KaplanMeier生存曲线及Log-rank检验比较不同亚型... 目的探讨儿童纵隔外周神经母细胞性肿瘤(pNT)的CT特征与病理亚型的相关性,评估其对无创分型及预后预测的临床价值。方法回顾性分析81例病理确诊的儿童纵隔pNT不同亚型临床及CT特征;采用KaplanMeier生存曲线及Log-rank检验比较不同亚型患者总生存率(OS)及无事件生存率(EFS);基于Logistic回归构建预测模型,并绘制受试者工作特征曲线评估模型效能。结果神经母细胞瘤(NB)组中位年龄(11.5个月)显著低于节细胞神经瘤(GN,105.0个月)及混合型节细胞神经母细胞瘤(GNBi,51.5个月)组;GN与GNBi神经元特异性烯醇化酶(NSE)及24 h尿香草扁桃酸(VMA)水平显著低于NB与结节型节细胞神经母细胞瘤(GNBn)组;NB组平扫(44.7HU)、动脉期(62.8 HU)、静脉期(91.3 HU)CT值及动脉期与静脉期强化程度均高于其他亚型(P<0.001)。全组3年OS及EFS分别为94.0%与85.0%,组间差异无统计学意义(P>0.05)。年龄及形态为NB独立预测因子,联合模型曲线下面积达0.919(95%CI 0.830~0.963),敏感度、特异度、准确度分别为90.5%、89.7%、90.1%。结论儿童纵隔pNT的临床及CT特征与病理分型显著相关,年龄及肿瘤形态可作为术前无创鉴别NB的独立预测指标,基于影像-临床特征的联合预测模型具有优异的诊断效能。 展开更多
关键词 儿童 外周神经母细胞性肿瘤 病理 预后 计算机断层扫描
原文传递
神经母细胞性肿瘤相关综合征的临床表现及发病机制
8
作者 李司琪 刘俊 +1 位作者 王观筠 杨吉刚 《临床小儿外科杂志》 北大核心 2025年第4期396-400,共5页
神经母细胞性肿瘤(neuroblastic tumors,NTs)作为儿童最常见的颅外实体肿瘤,可以引发某些综合征,或在某些综合征中罹患风险增加。系统了解NTs相关综合征,可以加深对NTs的认识和理解,进而有助于NTs及其相关综合征的早期发现、早期诊断,... 神经母细胞性肿瘤(neuroblastic tumors,NTs)作为儿童最常见的颅外实体肿瘤,可以引发某些综合征,或在某些综合征中罹患风险增加。系统了解NTs相关综合征,可以加深对NTs的认识和理解,进而有助于NTs及其相关综合征的早期发现、早期诊断,从而进行早期干预,一定程度上改善患者预后。本文就NTs相关综合征的临床表现及发病机制进行综述。 展开更多
关键词 神经母细胞性肿瘤 神经母细胞瘤 综合征 病理状态 体征和症状 病理过程
暂未订购
Long-term administration of scopolamine interferes with nerve cell proliferation, differentiation and migration in adult mouse hippocampal dentate gyrus, but it does not induce cell death
9
作者 Bing Chun Yan Joon Ha Park +9 位作者 Bai Hui Chen Jeong-Hwi Cho In Hye Kim Ji Hyeon Ahn Jae-Chul Lee In Koo Hwang Jun Hwi Cho Yun Lyul Lee Il-Jun Kang Moo-Ho Won 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第19期1731-1739,共9页
Long-term administration of scopolamine, a muscarinic receptor antagonist, can inhibit the survival of newly generated cells, but its effect on the proliferation, differentiation and migration of nerve cells in the ad... Long-term administration of scopolamine, a muscarinic receptor antagonist, can inhibit the survival of newly generated cells, but its effect on the proliferation, differentiation and migration of nerve cells in the adult mouse hippocampal dentate gyrus remain poorly understood. In this study, we used immunohistochemistry and western blot methods to weekly detect the biological behaviors of nerve cells in the hippocampal dentate gyrus of adult mice that received intraperito- neal administration of scopolamine for 4 weeks. Expression of neuronal nuclear antigen (NeuN; a neuronal marker) and Fluoro-]ade B (a marker for the localization of neuronal degeneration) was also detected. After scopolamine treatment, mouse hippocampal neurons did not die, and Ki-67 (a marker for proliferating cells)-immunoreactive cells were reduced in number and reac hed the lowest level at 4 weeks. Doublecortin (DCX; a marker for newly generated neurons)-im- munoreactive cells were gradually shortened in length and reduced in number with time. After scopolamine treatment for 4 weeks, nearly all of the 5-bromo-2'-deoxyuridine (BrdU)-labeled newly generated cells were located in the subgranular zone of the dentate gyrus, but they did not migrate into the granule cell layer. Few mature BrdU/NeuN double-labeled cells were seen in the subgranular zone of the dentate gyrus. These findings suggest that long-term administration of scopolamine interferes with the proliferation, differentiation and migration of nerve cells in the adult mouse hippocampal dentate gyrus, but it does not induce cell death. 展开更多
关键词 nerve regeneration NEUROGENESIS SCOPOLAMINE dentate gyrus cell proliferation neuroblastdifferentiation neuroblast migration granule cell layer neural regeneration
暂未订购
补阳还五汤诱导脑缺血后血管生成促进侧脑室下区神经母细胞迁移 被引量:26
10
作者 李琳 刘志婷 +4 位作者 储利胜 俞天虹 曲铁兵 王俊 任翠翠 《中国中药杂志》 CAS CSCD 北大核心 2015年第2期298-302,共5页
目的:研究补阳还五汤诱导脑缺血后血管生成对侧脑室下区神经母细胞迁移的影响及机制。方法:采用线栓法诱导小鼠大脑中动脉阻塞模型,缺血30 min,分假手术组、模型组、补阳还五汤组和内皮抑素组。补阳还五汤组缺血后24 h开始灌胃补阳还五... 目的:研究补阳还五汤诱导脑缺血后血管生成对侧脑室下区神经母细胞迁移的影响及机制。方法:采用线栓法诱导小鼠大脑中动脉阻塞模型,缺血30 min,分假手术组、模型组、补阳还五汤组和内皮抑素组。补阳还五汤组缺血后24 h开始灌胃补阳还五汤(20 g·kg-1),内皮抑素组在灌胃补阳还五汤同时皮下注射内皮抑素(10μg/只),每天1次,连续14 d。缺血后第14天,采用免疫荧光法检测缺血周边区微血管密度和神经母细胞数量,采用实时荧光定量PCR和Western blot检测基质细胞衍生因子1(stromal cell-derived factor-1,SDF-1)、脑源性神经营养因子(brain-derived neurotrophic factor,BDNF)mRNA和蛋白表达。结果:与模型组比较,补阳还五汤组缺血周边区微血管密度和神经母细胞数量显著增多(P<0.01),SDF-1和BDNF mRNA和蛋白表达增加(P<0.01);与补阳还五汤组比较,内皮抑素组小鼠缺血周边区微血管密度和神经母细胞数量显著减少(P<0.01),SDF-1和BDNF mRNA和蛋白表达显著下降(P<0.01)。结论:补阳还五汤促进脑缺血后血管生成有助于侧脑室下区神经母细胞向缺血周边区迁移,机制可能与上调SDF-1和BDNF表达有关。 展开更多
关键词 补阳还五汤 局灶性脑缺血 血管生成 神经母细胞 迁移
原文传递
超声及超声引导下粗针穿刺活检诊断小儿腹部神经母细胞性肿瘤的价值 被引量:4
11
作者 高永艳 梁萍 +3 位作者 王旸 李春伶 于晓玲 夏未 《中国医学影像学杂志》 CSCD 2007年第5期331-333,共3页
目的:探讨常规超声及超声引导下穿刺活检对小儿腹部神经母细胞性肿瘤的诊断价值。材料和方法:回顾性分析2000-01—2005-01的27例,小腹部神经母细胞性肿瘤(节细胞瘤5例,节细胞神经母细胞瘤7例,神经母细胞瘤15例)的常规超声表现及1... 目的:探讨常规超声及超声引导下穿刺活检对小儿腹部神经母细胞性肿瘤的诊断价值。材料和方法:回顾性分析2000-01—2005-01的27例,小腹部神经母细胞性肿瘤(节细胞瘤5例,节细胞神经母细胞瘤7例,神经母细胞瘤15例)的常规超声表现及14例超声引导下粗针穿刺活检的病理组织学结果。结果:18例超声准确判断肿瘤神经母细胞性来源(66.7%),9例分别误诊为肾母细胞瘤(3例)、其他神经来源的肿瘤(2例)、淋巴瘤(1例)和未能提出肿瘤可疑来源的3例。本组神经母细胞性肿瘤的超声表现为较大的低回声或混合回声包块(9.25±2.96cm),形态不规则,23例可见散在的细小钙化灶,17例肿块包绕腹部大血管,节细胞瘤-节细胞神经母细胞瘤-神经母细胞瘤声像图有从均匀一致到弥漫不均的趋势;14例活检病例中,13例具体分型与术后病理相符,1例节细胞神经母细胞误诊为节细胞瘤。结论:常规超声对小腹部神经母细胞性肿瘤的诊断具有一定的帮助,而超声引导下多点的粗针穿刺活检能够明确肿瘤的分类和性质。 展开更多
关键词 超声 小儿 神经母细胞性肿瘤 活检
暂未订购
CT在儿童纵隔神经母细胞源性肿瘤诊断、分期及治疗方案选择中的应用 被引量:5
12
作者 刘玉奇 高云剑 +2 位作者 吴继志 高敏 盛茂 《国际医学放射学杂志》 北大核心 2019年第4期395-399,共5页
目的探讨CT在儿童纵隔神经母细胞源性肿瘤诊断、分期及治疗方案选择中的应用价值。方法回顾性分析经病理证实的29例儿童纵隔神经母细胞源性肿瘤的临床资料、CT表现及分期,并与病理结果进行对照分析。其中神经母细胞瘤(NB)20例,节细胞神... 目的探讨CT在儿童纵隔神经母细胞源性肿瘤诊断、分期及治疗方案选择中的应用价值。方法回顾性分析经病理证实的29例儿童纵隔神经母细胞源性肿瘤的临床资料、CT表现及分期,并与病理结果进行对照分析。其中神经母细胞瘤(NB)20例,节细胞神经母细胞瘤(GNB)4例,节细胞神经瘤(GN)5例。平均发病年龄NB为(34.35±24.12)个月,GNB为(91.75±53.65)个月,GN为(67.40±68.00)个月。所有病例均行CT平扫及增强扫描。结果 CT平扫上,80.0%(16/20)NB、25.0%(1/4)GNB表现为密度不均匀,100.0%(5/5)GN密度均匀;80.0%(16/20)NB有不规则斑片状、点条状钙化,75.0%(3/4)GNB和80.0%(4/5)GN呈点状钙化。增强后75.0%(15/20)NB、50.0%(2/4)GNB呈不均匀强化,85.0%(17/20)NB和75.0%(3/4)GNB呈中度及明显强化,而100%(5/5)GN为均匀轻度强化。70.0%(14/20)NB、50.0%(2/4)GNB和40%(2/5)GN可见局部侵犯或远处转移。肿瘤分期中L1期3例,L2期15例,M期11例。随访中3例M期NB发生复发转移。肿瘤生物因子检测显示7例NB香草扁桃酸(VMA)升高,8例NB、1例GNB及1例GN的神经元特异性烯醇化酶(NSE)升高,6例NB的N-myc基因阳性。结论 CT在纵隔神经母细胞源性肿瘤的诊断、分期及治疗方案的选择中具有重要价值。 展开更多
关键词 儿童 纵隔神经母细胞源性肿瘤 体层摄影术 X 线计算机
暂未订购
Gualou Guizhi decoction promotes neurological functional recovery and neurogenesis following focal cerebral ischemia/reperfusion 被引量:17
13
作者 Jing Han Ji-Zhou Zhang +4 位作者 Zhi-Feng Zhong Zuan-Fang Li Wen-Sheng Pang Juan Hu Li-Dian Chen 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第8期1408-1416,共9页
Recovery following stroke involves neurogenesis and axonal remodeling within the ischemic brain. Gualou Guizhi decoction (GLGZD) is a Chinese traditional medicine used for the treatment of post-stroke limb spasm. GL... Recovery following stroke involves neurogenesis and axonal remodeling within the ischemic brain. Gualou Guizhi decoction (GLGZD) is a Chinese traditional medicine used for the treatment of post-stroke limb spasm. GLGZD has been reported to have neuroprotective effects in cerebral ischemic injury. However, the effects of GLGZD on neurogenesis and axonal remodeling following cerebral ischemia remain unknown. In this study, a rat model of focal cerebral ischemia/reperfusion was established by middle cerebral artery occlusion. Neurologi- cal function was assessed immediately after reperfusion using Longa's 5-point scoring system. The rats were randomly divided into vehicle and GLGZD groups. Rats in the sham group were given sham operation. The rats in the GLGZD group were intragastrically administered GLGZD, once daily, for 14 consecutive days. The rats in the vehicle and sham groups were intragastrically administered distilled water. Modified neurological severity score test, balance beam test and foot fault test were used to assess motor functional changes. Nissl staining was performed to evaluate histopathological changes in the brain. Immunofluorescence staining was used to examine cell proliferation using the marker 5-bromo-2'-deoxyuridine (BrdU) as well as expression of the neural precursor marker doublecortin (DCX), the astrocyte marker glial fibrillary acidic protein (GFAP) and the axon regeneration marker growth associated protein-43 (GAP-43). GLGZD substan- tially mitigated pathological injury, increased the number of BrdU, DCX and GFAP-immunoreactive cells in the subventricular zone of the ischemic hemisphere, increased GAP-43 expression in the cortical peri-infarct region, and improved motor function. These findings suggest that GLGZD promotes neurological functional recovery by increasing cell proliferation, enhancing axonal regeneration, and in- creasing the numbers of neuronal precursors and astrocytes in the peri-infarct area. 展开更多
关键词 nerve regeneration Gualou Guizhi decoction cell proliferation NEUROGENESIS neuroblast ASTROCYTE axon remodeling ischemic stroke Chinese medicine compound neural regeneration
暂未订购
Effect of sevoflurane preconditioning on astrocytic dynamics and neural network formation after cerebral ischemia and reperfusion in rats 被引量:10
14
作者 Qiong Yu Li Li Wei-Min Liang 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第2期265-271,共7页
Astrocytes, the major component of blood-brain barriers, have presented paradoxical profiles after cerebral ischemia and reperfusion in vivo and in vitro. Our previous study showed that sevoflurane preconditioning imp... Astrocytes, the major component of blood-brain barriers, have presented paradoxical profiles after cerebral ischemia and reperfusion in vivo and in vitro. Our previous study showed that sevoflurane preconditioning improved the integrity of blood-brain barriers after ischemia and reperfusion injury in rats. This led us to investigate the effects of sevoflurane preconditioning on the astrocytic dynamics in ischemia and reperfusion rats, in order to explore astrocytic cell-based mechanisms of sevoflurane preconditioning. In the present study, 2,3,5-triphenyltetrazolium chloride staining and Garcia behavioral scores were utilized to evaluate cerebral infarction and neurological outcome from day 1 to day 3 after transient middle cerebral artery occlusion surgery. Using immunofluorescent staining, we found that sevoflurane preconditioning substantially promoted the astrocytic activation and migration from the penumbra to the infarct with microglial activation from day 3 after middle cerebral artery occlusion. The formation of astrocytic scaffolds facilitated neuroblasts migrating from the subventricular zone to the lesion sites on day 14 after injury. Neural networks increased in the infarct of sevoflurane preconditioned rats, consistent with decreased infarct volume and improved neurological scores after ischemia and reperfusion injury. These findings demonstrate that sevoflurane preconditioning confers neuroprotection, not only by accelerating astrocytic spatial and temporal dynamics, but also providing astrocytic scaffolds for neuroblasts migration to ischemic regions, which facilitates neural reconstruction after brain ischemia. 展开更多
关键词 nerve REGENERATION sevoflurane ischemia and reperfusion neuroprotection astrocytes DYNAMICS neuroblast glial scar NEURAL network stroke INHALATIONAL ANESTHETICS NEURAL REGENERATION
暂未订购
小儿腹部神经母细胞性肿瘤超声图像特征及病理对照研究 被引量:2
15
作者 高永艳 李春伶 +4 位作者 刘卫星 夏未 王宜志 马秀珠 董继红 《武警医学》 CAS 2007年第8期594-596,共3页
目的探讨超声对各类小儿腹部神经母细胞性肿瘤的诊断价值。方法总结15例小儿腹部神经母细胞性肿瘤(节细胞瘤2例,节细胞神经母细胞瘤2例,神经母细胞瘤11例)的彩色多普勒超声图像特点并与病理结果对照分析。结果15例中超声诊断的准确率为6... 目的探讨超声对各类小儿腹部神经母细胞性肿瘤的诊断价值。方法总结15例小儿腹部神经母细胞性肿瘤(节细胞瘤2例,节细胞神经母细胞瘤2例,神经母细胞瘤11例)的彩色多普勒超声图像特点并与病理结果对照分析。结果15例中超声诊断的准确率为66.7%。声像图表现与病理特点是密切相关的,节细胞瘤、节细胞神经母细胞瘤及神经母细胞瘤超声表现的共同特点为腹膜后巨大包块,73.3%包绕和挤压腹部大血管(11/15),86.7%含散在的细小钙化灶(13/15)。节细胞瘤、节细胞神经母细胞瘤和神经母细胞瘤的差别在于肿瘤的边界、内部回声的均匀性和血流信号的丰富程度。结论超声对判断肿瘤的神经母细胞来源、良恶性的可能性、与周围脏器关系、有无继发性出血坏死具有较大的帮助。 展开更多
关键词 超声 小儿 神经母细胞性肿瘤
暂未订购
Glucose metabolism and neurogenesis in the gerbil hippocampus after transient forebrain ischemia 被引量:4
16
作者 Dae Young Yoo Kwon Young Lee +6 位作者 Joon Ha Park Hyo Young Jung Jong Whi Kim Yeo Sung Yoon Moo-Ho Won Jung Hoon Choi In Koo Hwang 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第8期1254-1259,共6页
Recent evidence exists that glucose transporter 3(GLUT3) plays an important role in the energy metabolism in the brain.Most previous studies have been conducted using focal or hypoxic ischemia models and have focuse... Recent evidence exists that glucose transporter 3(GLUT3) plays an important role in the energy metabolism in the brain.Most previous studies have been conducted using focal or hypoxic ischemia models and have focused on changes in GLUT3 expression based on protein and m RNA levels rather than tissue levels.In the present study,we observed change in GLUT3 immunoreactivity in the adult gerbil hippocampus at various time points after 5 minutes of transient forebrain ischemia.In the sham-operated group,GLUT3 immunoreactivity in the hippocampal CA1 region was weak,in the pyramidal cells of the CA1 region increased in a time-dependent fashion 24 hours after ischemia,and in the hippocampal CA1 region decreased significantly between 2 and 5 days after ischemia,with high level of GLUT3 immunoreactivity observed in the CA1 region 10 days after ischemia.In a double immunofluorescence study using GLUT3 and glial-fibrillary acidic protein(GFAP),we observed strong GLUT3 immunoreactivity in the astrocytes.GLUT3 immunoreactivity increased after ischemia and peaked 7 days in the dentate gyrus after ischemia/reperfusion.In a double immunofluorescence study using GLUT3 and doublecortin(DCX),we observed low level of GLUT3 immunoreactivity in the differentiated neuroblasts of the subgranular zone of the dentate gyrus after ischemia.GLUT3 immunoreactivity in the sham-operated group was mainly detected in the subgranular zone of the dentate gyrus.These results suggest that the increase in GLUT3 immunoreactivity may be a compensatory mechanism to modulate glucose level in the hippocampal CA1 region and to promote adult neurogenesis in the dentate gyrus. 展开更多
关键词 nerve regeneration transient forebrain ischemia glucose transporter 3 pyramidal cells ASTROCYTES neuroblastS neural regeneration
暂未订购
DNA damage-induced cell death: lessons from the central nervous system 被引量:4
17
作者 Helena Lobo Borges Rafael Linden Jean YJ Wang 《Cell Research》 SCIE CAS CSCD 2008年第1期17-26,共10页
DNA damage can, but does not always, induce cell death. While several pathways linking DNA damage signals to mitochondria-dependent and -independent death machineries have been elucidated, the connectivity of these pa... DNA damage can, but does not always, induce cell death. While several pathways linking DNA damage signals to mitochondria-dependent and -independent death machineries have been elucidated, the connectivity of these pathways is subject to regulation by multiple other factors that are not well understood. We have proposed two conceptual models to explain the delayed and variable cell death response to DNA damage: integrative surveillance versus autonomous pathways. In this review, we discuss how these two models may explain the in vivo regulation of cell death induced by ionizing radiation (IR) in the developing central nervous system, where the death response is regulated by radiation dose, cell cycle status and neuronal development. 展开更多
关键词 apoptosis ATM ionizing radiation neonatal retina neuroblastS p53 phosphorylation
在线阅读 下载PDF
Combined cell-based therapy strategies for the treatment of Parkinson's disease:focus on mesenchymal stromal cells 被引量:5
18
作者 Jannette Rodríguez-Pallares María García-Garrote +1 位作者 Juan A.Parga JoséLuis Labandeira-García 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第3期478-484,共7页
Parkinson’s disease is a neurodegenerative condition characterized by motor impairments caused by the selective loss of dopaminergic neurons in the substantia nigra.Levodopa is an effective and well-tolerated dopamin... Parkinson’s disease is a neurodegenerative condition characterized by motor impairments caused by the selective loss of dopaminergic neurons in the substantia nigra.Levodopa is an effective and well-tolerated dopamine replacement agent.However,levodopa provides only symptomatic improvements,without affecting the underlying pathology,and is associated with side effects after long-term use.Cell-based replacement is a promising strategy that offers the possibility to replace lost neurons in Parkinson’s disease treatment.Clinical studies of transplantation of human fetal ventral mesencephalic tissue have provided evidence that the grafted dopaminergic neurons can reinnervate the striatum,release dopamine,integrate into the host neural circuits,and improve motor functions.One of the limiting factors for cell therapy in Parkinson’s disease is the low survival rate of grafted dopaminergic cells.Different factors could cause cell death of dopaminergic neurons after grafting such as mechanical trauma,growth factor deprivation,hypoxia,and neuroinflammation.Neurotrophic factors play an essential role in the survival of grafted cells.However,direct,timely,and controllable delivery of neurotrophic factors into the brain faces important limitations.Different types of cells secrete neurotrophic factors constitutively and co-transplantation of these cells with dopaminergic neurons represents a feasible strategy to increase neuronal survival.In this review,we provide a general overview of the pioneering studies on cell transplantation developed in patients and animal models of Parkinson’s disease,with a focus on neurotrophic factor-secreting cells,with a particular interest in mesenchymal stromal cells;that co-implanted with dopaminergic neurons would serve as a strategy to increase cell survival and improve graft outcomes. 展开更多
关键词 brain repair cell replacement co-grafts dopaminergic neurons fetal ventral mesencephalic tissue mesenchymal stem cells neural grafting neural transplantation neuroblastS neurotrophic factors
暂未订购
A tissue-engineered rostral migratory stream for directed neuronal replacement 被引量:2
19
作者 John C.O'Donnell Kritika S.Katiyar +1 位作者 Kate V.Panzer D.Kacy Cullen 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第8期1327-1331,共5页
New neurons are integrated into the circuitry of the olfactory bulb throughout the lifespan in the mamma- lian brain--including in humans. These new neurons are born in the subventricular zone and subsequently mature ... New neurons are integrated into the circuitry of the olfactory bulb throughout the lifespan in the mamma- lian brain--including in humans. These new neurons are born in the subventricular zone and subsequently mature as they are guided over long distances via the rostral migratory stream through mechanisms we are only just beginning to understand. Regeneration after brain injury is very limited, and although some neuroblasts from the rostral migratory stream will leave the path and migrate toward cortical lesion sites, this neuronal replacement is generally not sustained and therefore does not provide enough new neurons to alleviate functional deficits. Using newly discovered microtissue engineering techniques, we have built the first self-contained, implantable constructs that mimic the architecture and function of the rostral migratory stream. This engineered microtissue emulates the dense cord-like bundles of astrocytic somata and processes that are the hallmark anatomical feature of the glial tube. As such, our living microtissue-en- gineered rostral migratory stream can serve as an in vitro test bed for unlocking the secrets of neuroblast migration and maturation, and may potentially serve as a living transplantable construct derived from a patient's own cells that can redirect their own neuroblasts into lesion sites for sustained neuronal replace- ment following brain injury or neurodegenerative disease. In this paper, we summarize the development of fabrication methods for this microtissue-engineered rostral migratory stream and provide proof-of-princi- ple evidence that it promotes and directs migration of immature neurons. 展开更多
关键词 rostral migratory stream glial tube ASTROCYTE neuroblast brain injury neural repair neural regeneration tissue engineering
暂未订购
Chromophore-assisted laser inactivation in neural development 被引量:2
20
作者 Wei Li Nico Stuurman Guangshuo Ou 《Neuroscience Bulletin》 SCIE CAS CSCD 2012年第4期333-341,共9页
Chromophore-assisted laser inactivation(CALI) is a technique that uses photochemically-generated reactive oxygen species to acutely inactivate target proteins in living cells.Neural development includes highly dynam... Chromophore-assisted laser inactivation(CALI) is a technique that uses photochemically-generated reactive oxygen species to acutely inactivate target proteins in living cells.Neural development includes highly dynamic cellular processes such as asymmetric cell division,migration,axon and dendrite outgrowth and synaptogenesis.Although many key molecules of neural development have been identified since the past decades,their spatiotemporal contributions to these cellular events are not well understood.CALI provides an appealing tool for elucidating the precise functions of these molecules during neural development.In this review,we summarize the principles of CALI,a recent microscopic setup to perform CALI experiments,and the application of CALI to the study of growth-cone motility and neuroblast asymmetric division. 展开更多
关键词 chromophore-assisted laser inactivation growth cone neuroblast asymmetric cell division
原文传递
上一页 1 2 下一页 到第
使用帮助 返回顶部