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首页> 外文期刊>Journal of stroke and cerebrovascular diseases: The official journal of National Stroke Association >Cumulative Brain Injury from Motor Vehicle-Induced Whole-Body Vibration and Prevention by Human Apolipoprotein A-I Molecule Mimetic (4F) Peptide (an Apo A-I Mimetic)
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Cumulative Brain Injury from Motor Vehicle-Induced Whole-Body Vibration and Prevention by Human Apolipoprotein A-I Molecule Mimetic (4F) Peptide (an Apo A-I Mimetic)

机译:从机动车诱导的全身振动和预防人类载脂蛋白A-I分子模拟(4F)肽(APO A-1模拟物)的累积脑损伤

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Background: Insidious cumulative brain injury from motor vehicle-induced whole-body vibration (MV-WBV) has not yet been studied. The objective of the present study is to validate whether whole-body vibration for long periods causes cumulative brain injury and impairment of the cerebral function. We also explored a preventive method for MV-WBV injury. Methods: A study simulating whole-body vibration was conducted in 72 male Sprague-Dawley rats divided into 9 groups (N = 8): (1) 2-week normal control; (2) 2-week sham control (in the tube without vibration); (3) 2-week vibration (exposed to whole-body vibration at 30 Hz and .5 G acceleration for 4 hours/day, 5 days/week for 2 weeks; vibration parameters in the present study are similar to the most common driving conditions); (4) 4-week sham control; (5) 4-week vibration; (6) 4-week vibration with human apolipoprotein A-I molecule mimetic (4F)-preconditioning; (7) 8-week sham control; (8) 8-week vibration; and (9) 8-week 4F-preconditioning group. All the rats were evaluated by behavioral, physiological, and histological studies of the brain. Results: Brain injury from vibration is a cumulative process starting with cerebral vasoconstriction, squeezing of the endothelial cells, increased free radicals, decreased nitric oxide, insufficient blood supply to the brain, and repeated reperfusion injury to brain neurons. In the 8-week vibration group, which indicated chronic brain edema, shrunken neuron numbers increased and whole neurons atrophied, which strongly correlated with neural functional impairment. There was no prominent brain neuronal injury in the 4F groups. Conclusions: The present study demonstrated cumulative brain injury from MV-WBV and validated the preventive effects of 4F preconditioning.
机译:背景:尚未研究机动车诱导的全身振动(MV-WBV)的阴险累积脑损伤。本研究的目的是验证长期全身振动是否会导致累积脑损伤和脑功能的损害。我们还探索了用于MV-WBV损伤的预防方法。方法:在分为9组的72只雄性Sprague-Dawley大鼠中进行全身振动的研究(n = 8):(1)2周正常控制; (2)2周的假控制(在没有振动的管中); (3)2周振动(暴露于30 Hz的全身振动,0.5g加速4小时/天,5天/周为2周;本研究中的振动参数类似于最常见的驾驶条件); (4)4周假手术; (5)4周振动; (6)与人载脂蛋白A-I分子模拟物(4F)的4周振动; (7)8周假手术; (8)8周的振动; (9)8周的4F-预处理组。通过对大脑的行为,生理学和组织学研究评估所有大鼠。结果:振动的脑损伤是一种累积过程,从脑血管收缩,挤压内皮细胞,增加自由基,减少一氧化氮,脑内不足,对脑神经元重复再灌注损伤。在8周的振动群中,表明慢性脑水肿,萎缩神经元数增加和整个神经元萎缩,与神经功能损伤强烈相关。 4F组中没有突出的脑神经元损伤。结论:本研究表明了MV-WBV的累积脑损伤,并验证了4F预处理的预防效果。

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