Apelin–13 protects against memory impairment and neuronal loss, Induced by Scopolamine in male rats

被引:0
作者
Sara Gazmeh
Maryam Azhir
Leila Elyasi
Mehrdad Jahanshahi
Emsehgol Nikmahzar
Seyed Behnamedin Jameie
机构
[1] Golestan University of Medical Sciences,Neuroscience Research Center
[2] Golestan University of Medical Sciences,Neuroscience Research Center, Department of Anatomy, Faculty of Medicine
[3] Iran University of Medical Sciences,Neuroscience Research Center, Department of Anatomy, Faculty of Medicine
来源
Metabolic Brain Disease | 2022年 / 37卷
关键词
Alzheimer’s disease (AD); Scopolamine; hippocampus; Neuronal density; Avoidance reaction; Apelin–13; Synaptic plasticity;
D O I
暂无
中图分类号
学科分类号
摘要
The present study aimed to evaluate the effects of Apelin–13 on scopolamine–induced memory impairment in rats. Forty male rats were divided into five groups of eight. The control group received no intervention; the scopolamine group underwent stereotaxic surgery and received 3 mg/kg intraperitoneal scopolamine. The treatment groups additionally received 1.25, 2.5 and 5 µg apelin–13 in right lateral ventricles for 7 days. All rats (except the control group) were tested for the passive avoidance reaction, 24 h after the last drug injection. For histological analysis, hippocampal sections were stained with cresyl violet; synaptogenesis biochemical markers were determined by immunoblotting. Apelin–13 alleviated scopolamine–induced passive avoidance memory impairment and neuronal loss in the rats’ hippocampus (P<0.001). The reduction observed in mean concentrations of hippocampal synaptic proteins (including neurexin1, neuroligin, and postsynaptic density protein 95) in scopolamine–treated animals was attenuated by apelin–13 treatment. The results demonstrated that apelin–13 can protect against passive avoidance memory deficiency, and neuronal loss, induced by scopolamine in male rats. Further experimental and clinical studies are required to confirm its therapeutic potential in neurodegenerative diseases.
引用
收藏
页码:701 / 709
页数:8
相关论文
共 141 条
[1]  
Arlt S(2013)Non-Alzheimer’s disease—related memory impairment and dementia Dialog Clin Neurosci 15 465-452
[2]  
Azizi-Malekabadi H(2012)Different effects of scopolamine on learning, memory, and nitric oxide metabolite levels in hippocampal tissues of ovariectomized and Sham-operated rats Arq Neuropsiquiatr 70 447-299
[3]  
Hosseini M(2002)Brain plasticity and microglia: is transsynaptic glial activation in the thalamus after limb denervation linked to cortical plasticity and central sensitisation? J Physiol-Paris 96 289-1189
[4]  
Soukhtanloo M(2013)A matter of balance: role of neurexin and neuroligin at the synapse Neurochem Res 38 1174-423
[5]  
Sadeghian R(2017)Natural product for the treatment of Alzheimer’s disease J Basic Clin Physiol Pharmacol 28 413-237
[6]  
Fereidoni M(2010)Drugs for Alzheimer’s disease: are they effective? Pharm Ther 35 208-511
[7]  
Khodabandehloo F(2015)Intranasal delivery of apelin-13 is neuroprotective and promotes angiogenesis after ischemic stroke in mice ASN Neuro 7 1759091415605114-226
[8]  
Banati RB(2012)Alzheimer’s disease: early diagnosis and treatment Hong Kong Med J 18 228-16
[9]  
Bang ML(2014)Glutamatergic postsynaptic density protein dysfunctions in synaptic plasticity and dendritic spines morphology: relevance to schizophrenia and other behavioral disorders pathophysiology, and implications for novel therapeutic approaches Mol Neurobiol 49 484-138
[10]  
Owczarek S(2017)Date seed extract ameliorates β-amyloid-induced impairments in hippocampus of male rats Biomed Pharmacother 89 221-179