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Abstract:
:Astrocytes and astrocyte-related proteins play important roles in maintaining normal brain function, and also regulate pathological processes in brain diseases and injury. However, the role of astrocytes in the dopamine-depleted striatum remains unclear. A rat model of Parkinson's disease was therefore established by injecting 10 μL 6-hydroxydopamine (2.5 μg/μL) into the right medial forebrain bundle. Immunohistochemical staining was used to detect the immunoreactivity of glial fibrillary acidic protein (GFAP), calcium-binding protein B (S100B), and signal transducer and activator of transcription 3 (STAT3) in the striatum, and to investigate the co-expression of GFAP with S100B and STAT3. Western blot assay was used to measure the protein expression of GFAP, S100B, and STAT3 in the striatum. Results demonstrated that striatal GFAP-immunoreactive cells had an astrocytic appearance under normal conditions, but that dopamine depletion induced a reactive phenotype with obvious morphological changes. The normal striatum also contained S100B and STAT3 expression. S100B-immunoreactive cells were uniform in the striatum, with round bodies and sparse, thin processes. STAT3-immunoreactive cells presented round cell bodies with sparse processes, or were darkly stained with a large cell body. Dopamine deprivation induced by 6-hydroxydopamine significantly enhanced the immunohistochemical positive reaction of S100B and STAT3. Normal striatal astrocytes expressed both S100B and STAT3. Striatal dopamine deprivation increased the number of GFAP/S100B and GFAP/STAT3 double-labeled cells, and increased the protein levels of GFAP, S100B, and STAT3. The present results suggest that morphological changes in astrocytes and changes in expression levels of astrocyte-related proteins are involved in the pathological process of striatal dopamine depletion. The study was approved by Animal Care and Use Committee of Sun Yat-sen University, China (Zhongshan Medical Ethics 2014 No. 23) on September 22, 2014.
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最新影响因子:6.058 | 期刊ISSN:1673-5374 | CiteScore:1.54 |
出版周期:Monthly | 是否OA:YES | 出版年份:2006 |
期刊官方网址:http://www.nrronline.org/
自引率:14.50% | 研究方向:CELL BIOLOGY-NEUROSCIENCES |
出版地区:PEOPLES R CHINA |
SCI期刊coverage:Science Citation Index Expanded(科学引文索引扩展)
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Neural Regeneration Research (NRR) is a peer-reviewed open-accessed journal published with monthly. NRR aims to duly report the prospective, creative, and popular basic and clinical research in the international field of neuroregeneration. NRR focuses on rapidly publishing the articles pertaining to brain injury, spinal cord injury, peripheral nerve injury, neurodegenerative diseases, and neuroimaging, which reflect the latest progress in neuroregeneration research, and aims to highlight the unique scientific characteristics of each article. The journal publishes report or interim summary supported by NIH and other National Funds, standards and survey on neuroscience industry, meta-analysis and academic discussion on innovative technologies, methods and development ; outstanding article will be granted for rapid publication. Scope of the journal The journal will cover technical and clinical studies related to health, ethical and social issues in field of Nerve Regeneration Nervous System Physiological Phenomena. Articles with clinical interest and implications will be given preference. Neural Regeneration Research (NRR) aims to duly report the prospective, creative, and popular basic and clinical research in the international field of neuroregeneration. NRR focuses on rapidly publishing the articles pertaining to neural stem cells, nerve tissue engineering, gene therapy, neurodegenerative diseases, and neuroimaging, which reflect the latest progress in neuroregeneration research, and aims to highlight the unique scientific characteristics of each article. NRR pays great attention to the timeliness of publishing. All manuscripts accepted will be published 90–180 days from the date of submission. Areas of Interest –Brain Injuries; Spinal Cord Injuries; Peripheral Nerve Injuries; Neural Degeneration; Neuroimaging. –Treatment of CNS/PNS disorders including Stem Cells and Cell-Based therapy; Gene Therapy; Neuromodulation; Tissue Engineering; Biomaterials; Pharmacological treatment; Neural prostheses and other exciting topics in the field. –Neuronal injury and regeneration from a cellular to molecular perspective, including Axonal regeneration, neuroplasticity, neural repair and replacement, neural circuit or network construction, neuromodulation or signaling repair, nerve transplantation, and neurosynaptogenesis.
神经再生研究(NRR)是一个同行评审开放访问的期刊,每月出版。NRR旨在适时报道国际神经再生领域的前瞻性、创造性和流行的基础和临床研究。NRR关注于快速发表有关脑损伤、脊髓损伤、周围神经损伤、神经退行性疾病和神经成像的文章,反映了神经再生研究的最新进展,旨在突出每一篇文章的独特科学特征。 由NIH和其他国家基金支持的期刊发表报告或中期摘要,关于神经科学行业的标准和调查,关于创新技术、方法和发展的元分析和学术讨论;尚未发表的文章将被迅速出版。 期刊的范围 该期刊将涵盖有关神经再生神经系统生理现象领域的健康、伦理和社会问题的技术和临床研究。有临床兴趣和意义的文章将优先考虑。 神经再生研究(NRR)旨在适时报道国际神经再生领域的前瞻性、创造性和流行性的基础和临床研究。NRR关注于快速发表有关神经干细胞、神经组织工程、基因治疗、神经退行性疾病和神经成像的文章,这些文章反映了神经再生研究的最新进展,旨在突出每一篇文章的独特科学特征。NRR非常重视出版的及时性。接受的所有手稿将在提交之日起90-180天内出版。 感兴趣的领域 脑损伤;脊髓损伤;周围神经损伤;神经退化;神经成像。 --包括干细胞和细胞治疗在内的CNS/PNS疾病治疗;基因治疗;神经调节;组织工程;生物材料;药理治疗;神经假体和该领域的其他令人兴奋的课题。 神经损伤和从细胞到分子的再生,包括轴突再生、神经可塑性、神经修复和置换、神经回路或网络构建、神经调节或信号修复、神经移植和神经突触发生。
大类(学科) | 小类(学科) | 学科排名 |
医学 |
CELL BIOLOGY (细胞生物学) 4区 NEUROSCIENCES (神经科学) 4区 |
142/190 183/261 |
年度总发文量 | 年度论文发表量 | 年度综述发表量 |
269 | 173 | 96 |
引文计数(2018)
文献(2015-2017)
1956次引用
1268篇文献
序号 | 类别 | 排名 | 百分位 |
1 |
大类(学科):Neuroscience
小类(学科):Developmental Neuroscience
|
#26/33
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研究方向:神经再生 神经退行性病变 帕金森
审稿时间: 3个月内 接受率: 一般容易(75%命中)
影响因子:6.497
ISSN:1172-7047
研究方向:医学-精神病学
影响因子:1.297
ISSN:0028-2804
研究方向:医学-精神病学
影响因子:4.604
ISSN:1092-8529
研究方向:医学-精神病学
影响因子:5.345
ISSN:1398-5647
研究方向:医学-精神病学
影响因子:3.492
ISSN:1540-2002
研究方向:CLINICAL NEUROLOGY-PSYCHIATRY
影响因子:4.562
ISSN:0269-8811
研究方向:医学-精神病学
影响因子:6.533
ISSN:0165-0327
研究方向:医学-精神病学
影响因子:5.415
ISSN:0924-977X
研究方向:医学-精神病学
影响因子:2.493
ISSN:0925-4927
研究方向:医学-精神病学
发表一篇学和医学成像类SCI论文
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