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美丽绿绒蒿(根)可促进外周神经损伤模型的功能康复并减轻氧化应激。

Calotropis procera (root) escalates functions rehabilitation and attenuates oxidative stress in a mouse model of peripheral nerve injury.

机构信息

Neurochemicalbiology and Genetics Laboratory (NGL), Department of Physiology, Faculty of Life Sciences, Government College University, Faisalabad, Pakistan.

Department of Bioinformatics and Biotechnology, Government College University, Faisalabad, Pakistan.

出版信息

Pak J Pharm Sci. 2020 Nov;33(6(Supplementary)):2801-2807.

Abstract

Peripheral nerve injuries result in sensorimotor functional loss, leading to permanent disability and physical dependency with immense cost and reduced quality of life. These injuries are among those complicated medical situations which still are waiting for their first-line treatment. This study was designed to investigate the role of Calotropis procera (crude roots) in accelerating functional retrieval following mechanically induced sciatic nerve injury in healthy albino male mice. Following acclimatization, mice were grouped equally as "Control" fed on normal chow and "Root" fed on C. procera root (100mg/kg/day) mixed chow. A mechanical crush was induced in right sciatic nerve of animals. Behavioral analyses (grip strength, SFI, pinprick and hot plate tests) were conducted for assessing sensorimotor function reclamation and blood was collected for oxidative stress assessment. Significantly earlier retrieval of sensorimotor activities (p<0.05), reduced total oxidant status, increased total antioxidant capacity with prominently enhanced arylesterase and paraoxonase activities (p<0.001) in treatment group suggested positive impact of C. procera roots on quickening functional recovery and combating oxidative stress following nerve injury. Thus C. procera root can be considered as potential candidate drug for further investigation to seek bioactive compound/s that may actually responsible for ameliorative functional recovery following nerve injury.

摘要

周围神经损伤导致感觉运动功能丧失,导致永久性残疾和身体依赖,造成巨大的经济成本和生活质量下降。这些损伤属于那些复杂的医疗情况之一,仍然需要寻找一线治疗方法。本研究旨在探讨白花牛奶树(粗根)在机械诱导的健康雄性白化小鼠坐骨神经损伤后加速功能恢复中的作用。适应环境后,将小鼠等分为“对照”组,喂食普通饲料;“根”组喂食含有白花牛奶树根(100mg/kg/天)的混合饲料。在动物的右侧坐骨神经上诱导机械性挤压伤。进行行为分析(握力、SFI、刺痛和热板试验)以评估感觉运动功能的恢复情况,并采集血液进行氧化应激评估。治疗组的感觉运动活动明显更早恢复(p<0.05),总氧化剂状态降低,总抗氧化能力增加,芳基酯酶和对氧磷酶活性显著增强(p<0.001),表明白花牛奶树根对促进神经损伤后功能恢复和对抗氧化应激有积极影响。因此,白花牛奶树根可以被认为是一种有潜力的候选药物,进一步研究可能有助于寻找对神经损伤后功能恢复有改善作用的生物活性化合物。

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