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Stem cell transplantation for treatment of cerebral ischemia in rats Effects of human umbilical cord blood stem cells and human neural stem cells 被引量:10
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作者 Fenghua Pan xinsheng ding +3 位作者 Haixia ding Weimin Zhang Xiaoxuan Deng Juan Yao 《Neural Regeneration Research》 SCIE CAS CSCD 2010年第7期485-490,共6页
BACKGROUND: Exogenous neural stem cell transplantation promotes neural regeneration. However, various types of stem cells transplantation outcomes remain controversial. OBJECTIVE: To explore distribution, proliferat... BACKGROUND: Exogenous neural stem cell transplantation promotes neural regeneration. However, various types of stem cells transplantation outcomes remain controversial. OBJECTIVE: To explore distribution, proliferation and differentiation of human neural stem cells (hNSCs) and human umbilical cord blood stem cells (hUCBSCs) following transplantation in ischemic brain tissue of rats, and to compare therapeutic outcomes between hNSCs and hUCBSCs. DESIGN, TIME AND SETTING: Randomized controlled animal studies were performed at the Experimental Animal Center of Nanjing Medical University and Central Laboratory of Second Affiliated Hospital of Nanjing Medical University of China from September 2008 to April 2009. MATERIALS: hNSCs were harvested from brain tissue of 10 13 week old fetuses following spontaneous abortion, and hUCBSCs were collected from umbilical cord blood of full-term newborns at the Second Affiliated Hospital of Nanjing Medical University of China. hNSCs and hUCBSCs were labeled by 5-bromodeoxyuridine (BrdU) prior to transplantation. METHODS: Rat models of cerebral ischemia were established by the suture method. A total of 60 healthy male Sprague Dawley rats aged 7-9 weeks were randomly assigned to hNSC transplantation, hUCBSC transplantation and control groups. The rat models in the hNSC transplantation, hUCBSC transplantation and control groups were infused with hNSC suspension, hUCBSC suspension and saline via the caudal vein, respectively. MAIN OUTCOME MEASURES: The distribution, proliferation and differentiation of hNSCs and hUCBSCs in ischemic brain tissue were observed using immunohistochemical methods. Neurological function in rats was assessed using the neurological severity score. RESULTS: The number of BrdU-positive cells was significantly greater in the hNSC transplantation group compared with hUCBSC transplantation group at 14 days following transplantation (P 〈 0.05) The number of BrdU-positive cells reached a peak at 28 days following transplantation. Nestin-positive, glial fibrillary acidic protein-positive, cyclic nucleotide 3' phosphohydrolase-positive and neuron specific enolase-positive cells were visible following transplantation. No significant difference was determined in the constituent ratio of various cells between hNSC and hUCBSC transplantation groups (P 〉 0.05). The neurological severity score was significantly decreased in rats at 21 days following transplantation (P 〈 0.05). No significant difference was detected in neurological severity score between hNSC and hUCBSC transplantation groups at various time points (P 〉 0.05). CONCLUSION: The transplanted hNSCs and hUCBSCs can migrate into ischemic brain tissue, proliferate and differentiate into neuron-like, astrocyte-like and oligodendrocyte-like cells, and improve neurological function in rats with cerebral ischemia. 展开更多
关键词 human neural stem cells human umbilical cord blood stem cells TRANSPLANTATION cerebral ischemia neural regeneration
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Association of ALOX5AP and PDE4D with the risk of lacunar infarct in people from Jiangsu Province,China 被引量:2
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作者 Hong Cheng Qingwen Jin +3 位作者 Lixin Li xinsheng ding Xinjian Song Yanying Zeng 《Neural Regeneration Research》 SCIE CAS CSCD 2011年第12期935-940,共6页
The genes for 5-1ipoxygenase activating protein (ALOX5AP) and phosphodiesterase 4D (PDE4D) have been demonstrated as susceptibility genes for lacunar in the Icelandic and Pakistani populations, but little is known... The genes for 5-1ipoxygenase activating protein (ALOX5AP) and phosphodiesterase 4D (PDE4D) have been demonstrated as susceptibility genes for lacunar in the Icelandic and Pakistani populations, but little is known about the role of these genes in Chinese populations. The present study utilized polymerase chain reaction and ligase detection reaction to detect single nucleotide polymorphisms (SNPs) in 280 consecutive stroke patients and 258 unrelated population-based controls from Nanjing, Jiangsu Province, China. The allele frequency, genotypes, and haplotypes of the two SNPs (rs456009 and rs966221) in PDE4D were similar between the two groups. However, A allele frequency of rs4073259 (A/G) and rs4769055 (A/C) in the ALOX5AP gene exhibited differences in two groups, and especially the haplotype of the SNP was significantly different between the two groups. Results suggested that the ALOX5AP gene might be involved in lacunar infarct, while PDE4D gene was not a risk factor for lacunar infarct in individuals from Jiangsu Province, China. 展开更多
关键词 lacunar infarct 5-1ipoxygenase activating protein phosphodiesterase 4D single nucleotide polymorphism polymerase chain reaction ligase detection reaction gene polymorphism
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Brain-derived neurotrophic factor and substantia nigra dopaminergic neurons in Parkinson’s disease
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作者 Haixia ding Meijiang Feng xinsheng ding 《Neural Regeneration Research》 SCIE CAS CSCD 2008年第9期1037-1040,共4页
Parkinson's disease (PD) is a chronic, progressive neurodegenerative central nervous system disease which occurs in the substantia nigra-corpus striatum system. The main pathological feature of PD is selective dopa... Parkinson's disease (PD) is a chronic, progressive neurodegenerative central nervous system disease which occurs in the substantia nigra-corpus striatum system. The main pathological feature of PD is selective dopaminergic neuronal loss with distinctive Lewy bodies in populations of surviving dopaminergic neurons. In the clinical and neuropathological diagnosis of PD, brain-derived neurotrophic factor mRNA expression in the substantia nigra pars compacta is reduced by 70%, and surviving dopaminergic neurons in the PD substantia nigra pars compacta express less brain-derived neurotrophic factor (BDNF) mRNA (20%) than their normal counterparts. In recent years, knowledge surrounding the relationship between neurotrophic factors and PD has increased, and detailed pathogenesis of the role of neurotrophic factors in PD becomes more important. 展开更多
关键词 brain-derived neurotrophic factor dopaminergic neuron Parkinson's disease
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