Butanol Extract of Tinospora cordifolia Alleviates Acute Sleep Deprivation-Induced Impairments in Cognitive Functions and Neuromuscular Coordination in Middle-Aged Female Rats.

IF 3.9 4区 医学 Q2 NEUROSCIENCES NeuroMolecular Medicine Pub Date : 2022-06-01 Epub Date: 2021-08-19 DOI:10.1007/s12017-021-08683-x
Payal Bajaj, Harpal Singh, Shikha Kalotra, Gurcharan Kaur
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引用次数: 5

Abstract

Sleep deprivation due to present-day lifestyle and late-hours work commitments are associated with a broad spectrum of neurobehavioral complications. Moreover, women, as they age, become prone to the cumulative effects of menopause such as sleep disturbances, adiposity, and inflammation which are attributed to a compromised immuno-neuro-endocrine axis. So far, no effective therapeutic remedy is available to mitigate the adverse effects of SD. The current study was aimed to elucidate the neuroprotective potential of n-Butanol fraction obtained from hydroalcoholic extract of Tinospora cordifolia stem (B-TCE). Four groups of female rats are (1) Vehicle-undisturbed sleep, (2) Vehicle-sleep deprived (between 6 a.m. and 6 p.m.), (3) B-TCE oral feeding for 2 weeks and sleep deprivation, and (4) B-TCE alone undisturbed sleep group. Novel Object Recognition test was used to study cognitive impairments and Rotarod for motor coordination. Rats were then sacrificed to study the expression of various marker proteins in the hippocampus and piriform cortex regions of the brain by western blotting. SD was observed to impair the exploratory behavior and neuromuscular coordination, whereas, B-TCE pre-treatment was observed to ameliorate these behavioral functions'- impairments and further suppressed the changes in the expression of markers for synaptic plasticity, inflammation, cell survival, and apoptosis pathways. The current data suggest that B-TCE may be effective in the management of acute SD-associated impairments in learning and memory functions and neuromuscular coordination.

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丁醇提取物缓解急性睡眠剥夺引起的中年雌性大鼠认知功能和神经肌肉协调障碍。
由于现在的生活方式和加班导致的睡眠不足与广泛的神经行为并发症有关。此外,随着年龄的增长,女性更容易受到更年期的累积影响,如睡眠障碍、肥胖和炎症,这些都是由免疫-神经-内分泌轴受损引起的。到目前为止,还没有有效的治疗方法来减轻SD的不良影响。本研究旨在阐明Tinospora cordifolia茎(B-TCE)水酒精提取物正丁醇部分的神经保护作用。雌性大鼠分为(1)车辆不受干扰睡眠组,(2)车辆不受干扰睡眠组(上午6点至下午6点),(3)B-TCE口服2周并剥夺睡眠组,(4)B-TCE单独不受干扰睡眠组。新目标识别测试用于研究认知障碍和运动协调的Rotarod。然后处死大鼠,采用western blotting方法研究海马和大脑梨状皮质区各种标记蛋白的表达。SD会损害小鼠的探索行为和神经肌肉协调能力,而B-TCE预处理可以改善这些行为功能的损害,并进一步抑制突触可塑性、炎症、细胞存活和凋亡通路标志物的表达变化。目前的数据表明,B-TCE可能有效管理急性sd相关的学习记忆功能和神经肌肉协调障碍。
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来源期刊
NeuroMolecular Medicine
NeuroMolecular Medicine 医学-神经科学
CiteScore
7.10
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: NeuroMolecular Medicine publishes cutting-edge original research articles and critical reviews on the molecular and biochemical basis of neurological disorders. Studies range from genetic analyses of human populations to animal and cell culture models of neurological disorders. Emerging findings concerning the identification of genetic aberrancies and their pathogenic mechanisms at the molecular and cellular levels will be included. Also covered are experimental analyses of molecular cascades involved in the development and adult plasticity of the nervous system, in neurological dysfunction, and in neuronal degeneration and repair. NeuroMolecular Medicine encompasses basic research in the fields of molecular genetics, signal transduction, plasticity, and cell death. The information published in NEMM will provide a window into the future of molecular medicine for the nervous system.
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