Butanol Extract of Tinospora cordifolia Ameliorates Cognitive Deficits Associated with Glutamate-Induced Excitotoxicity: A Mechanistic Study Using Hippocampal Neurons

被引:0
作者
Anuradha Sharma
Shikha Kalotra
Payal Bajaj
Harpal Singh
Gurcharan Kaur
机构
[1] Guru Nanak Dev University,Medical Biotechnology Lab, Department of Biotechnology
来源
NeuroMolecular Medicine | 2020年 / 22卷
关键词
Hippocampus; Synaptic plasticity; Glutamate; Excitotoxicity; Tinosporicide;
D O I
暂无
中图分类号
学科分类号
摘要
Overstimulation of glutamate receptors leads to development of excitotoxicity, which is implicated as final destructive pathway in neurodegenerative diseases. Development of alternative therapeutic strategies effective against glutamate-induced excitotoxicity is much in demand. Herbal drug development is emerging as a major research area for the treatment of various debilitating diseases due to multimodal action and least side effects of herbal products. The current study was aimed to investigate neuroprotective potential of butanol extract of Tinospora cordifolia (B-TCE) against glutamate-induced excitotoxicity using primary hippocampal neurons as in vitro and Wistar strain albino rats as in vivo model systems. Molecular and behavioral parameters were studied to elucidate the underlying mechanism of beneficial effects of B-TCE. B-TCE treatment was also effective in prevention of anxiety, cognition, and motor-coordination deficits induced by glutamate. B-TCE pre-treatment protected the hippocampal neurons from glutamate-induced neurodegeneration and impaired plasticity. At molecular level, B-TCE was observed to attenuate overactivation of glutamate receptors. B-TCE promoted upregulation of ERK and AKT pathways of synaptic plasticity and cell survival in the hippocampus region of brain. This study provides first evidence of neuroprotective potential of B-TCE against glutamate-induced excitotoxicity in hippocampus region and suggests that B-TCE may act as a potential candidate for neuroprotective therapeutic approaches. A single compound ‘tinosporicide’ was further isolated from B-TCE, which was found to be effective at 800× lower concentration against glutamate-induced neurodegeneration under in vitro conditions.
引用
收藏
页码:81 / 99
页数:18
相关论文
共 363 条
[1]  
Almeida RD(2005)Neuroprotection by BDNF against glutamate-induced apoptotic cell death is mediated by ERK and PI3-kinase pathways Cell Death and Differentiation 12 1329-1343
[2]  
Manadas BJ(2014)A further update on the role of excitotoxicity in the pathogenesis of Parkinson’s disease Journal of Neural Transmission 121 849-859
[3]  
Melo CV(2016)Pharmacological approach for targeting dysfunctional brain plasticity: Focus on neural cell adhesion molecule (NCAM) Pharmacological Research 113 731-738
[4]  
Gomes JR(2017)Resistance exercise reduces memory impairment induced by monosodium glutamate in male and female rats Experimental Physiology 102 845-853
[5]  
Mendes CS(2013)Loss of calcium/calmodulin-dependent protein kinase II activity in cortical astrocytes decreases glutamate uptake and induces neurotoxic release of ATP Journal of Biological Chemistry 288 14599-14611
[6]  
Graos MM(2011)Excitotoxic neuroprotection and vulnerability with CaMKII inhibition Molecular and Cellular Neuroscience 46 720-730
[7]  
Carvalho RF(2012)Pin1 inhibition activates cyclin D and produces neurodegenerative pathology Journal of Neurochemistry 120 430-439
[8]  
Carvalho AP(2014)Ayurvedic medicine for rheumatoid arthritis Current Rheumatology Reports 16 435-1757
[9]  
Duarte CB(2011)NMDA receptors: Recent insights and clinical correlations Neurology 76 1750-1661
[10]  
Ambrosi G(2014)Donepezil-induced myoclonus in a patient with Alzheimer disease Annals of Pharmacotherapy 48 1659-1916