在 Aβ 诱导的阿尔茨海默病大鼠模型中,神经激肽 3 受体的促进作用是由海马神经发生介导的吗?

IF 1.7 4区 医学 Q3 DEVELOPMENTAL BIOLOGY
Raviye Ozen Koca, Z. Isık Solak Gormus, Hatice Solak, Fatma Secer Celik, Ercan Kurar, Selim Kutlu
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引用次数: 0

摘要

阿尔茨海默病(AD)是一种与年龄有关的神经退行性疾病,其特征是认知功能障碍、记忆丧失和情绪变化。海马神经发生被认为在学习和记忆中发挥作用。神经激肽 3 受体(NK3R)已被证明普遍存在于海马区。本项目旨在研究在淀粉样β诱导的AD大鼠模型中,海马神经发生在NK3R激动剂作用中的作用。Wistar albino大鼠被分为对照组、阿尔茨海默组、NK3R激动剂组和阿尔茨海默+NK3R激动剂组。进行开阔地(OF)测试和莫里斯水迷宫(MWM)测试,以分析大鼠的运动活性和记忆力。多肽基因表达水平(Nestin、DCX、Neuritin、MASH1、Neun、BDNF)通过定量反转录聚合酶链反应(RT-PCR)进行分析。在 OF 测试中,发现组与组之间的关系在运动距离和运动百分比参数上存在统计学差异(p
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Are the promnestic effects of neurokinin 3 receptor mediated by hippocampal neurogenesis in a Aβ-induced rat model of Alzheimer's disease?

Are the promnestic effects of neurokinin 3 receptor mediated by hippocampal neurogenesis in a Aβ-induced rat model of Alzheimer's disease?

Alzheimer's disease (AD) is an age-related neurodegenerative disorder characterised by cognitive dysfunction, memory loss and mood changes. Hippocampal neurogenesis has been suggested to play a role in learning and memory. Neurokinin 3 receptor (NK3R) has been shown to be prevalent in the hippocampus region. The aim of the project was to investigate the role of hippocampal neurogenesis in the promnestic effects of NK3R agonist administration in an amyloid beta-induced AD rat model. Wistar albino rats were divided into control, Alzheimer, NK3R agonist and Alzheimer + NK3R agonist groups. The open field (OF) test and Morris water maze (MWM) test were performed for locomotor activity and memory analysis. Peptide gene expression levels (Nestin, DCX, Neuritin, MASH1, Neun, BDNF) were analysed by quantitative reverse transcription polymerase chain reaction (RT-PCR). In the OF test, the group–time relationship was found to be statistically different in the parameters of distance travelled and percentage of movement (p < 0.05). In MWM, the time to reach the platform and the time spent in the target quadrant were statistically significant between the groups (p < 0.05). Statistically significant differences were observed in gene expression levels (Nestin, DCX, Neuritin, MASH1) in the hippocampal tissue of rats between the groups (p < 0.05). NK3 receptor agonism favourably affected hippocampal neurogenesis in AD model rats. It was concluded that NK3 receptor agonism in the hippocampus, which is the first affected region in the physiopathology of AD, may be effective in both the formation of neural precursor cells and the reduction of neuronal degeneration. The positive effect of NK3R on cognitive functions may be mediated by hippocampal neurogenesis.

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来源期刊
CiteScore
3.30
自引率
5.60%
发文量
78
审稿时长
6-12 weeks
期刊介绍: International Journal of Developmental Neuroscience publishes original research articles and critical review papers on all fundamental and clinical aspects of nervous system development, renewal and regeneration, as well as on the effects of genetic and environmental perturbations of brain development and homeostasis leading to neurodevelopmental disorders and neurological conditions. Studies describing the involvement of stem cells in nervous system maintenance and disease (including brain tumours), stem cell-based approaches for the investigation of neurodegenerative diseases, roles of neuroinflammation in development and disease, and neuroevolution are also encouraged. Investigations using molecular, cellular, physiological, genetic and epigenetic approaches in model systems ranging from simple invertebrates to human iPSC-based 2D and 3D models are encouraged, as are studies using experimental models that provide behavioural or evolutionary insights. The journal also publishes Special Issues dealing with topics at the cutting edge of research edited by Guest Editors appointed by the Editor in Chief. A major aim of the journal is to facilitate the transfer of fundamental studies of nervous system development, maintenance, and disease to clinical applications. The journal thus intends to disseminate valuable information for both biologists and physicians. International Journal of Developmental Neuroscience is owned and supported by The International Society for Developmental Neuroscience (ISDN), an organization of scientists interested in advancing developmental neuroscience research in the broadest sense.
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