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重复性振动对感觉神经功能的影响:代谢综合征动物模型中感觉神经损伤的生物标志物

The effects of repetitive vibration on sensorineural function: biomarkers of sensorineural injury in an animal model of metabolic syndrome.

作者信息

Kiedrowski Megan, Waugh Stacey, Miller Roger, Johnson Claud, Krajnak Kristine

机构信息

National Institute for Occupational Safety and Health, 1095 Willowdale Road, Morgantown, WV 26505, USA.

National Institute for Occupational Safety and Health, 1095 Willowdale Road, Morgantown, WV 26505, USA.

出版信息

Brain Res. 2015 Nov 19;1627:216-24. doi: 10.1016/j.brainres.2015.09.026. Epub 2015 Oct 1.

Abstract

Exposure to hand-transmitted vibration in the work-place can result in the loss of sensation and pain in workers. These effects may be exacerbated by pre-existing conditions such as diabetes or the presence of primary Raynaud's phenomena. The goal of these studies was to use an established model of vibration-induced injury in Zucker rats. Lean Zucker rats have a normal metabolic profile, while obese Zucker rats display symptoms of metabolic disorder or Type II diabetes. This study examined the effects of vibration in obese and lean rats. Zucker rats were exposed to 4h of vibration for 10 consecutive days at a frequency of 125 Hz and acceleration of 49 m/s(2) for 10 consecutive days. Sensory function was checked using transcutaneous electrical stimulation on days 1, 5 and 9 of the exposure. Once the study was complete the ventral tail nerves, dorsal root ganglia and spinal cord were dissected, and levels of various transcripts involved in sensorineural dysfunction were measured. Sensorineural dysfunction was assessed using transcutaneous electrical stimulation. Obese Zucker rats displayed very few changes in sensorineural function. However they did display significant changes in transcript levels for factors involved in synapse formation, peripheral nerve remodeling, and inflammation. The changes in transcript levels suggested that obese Zucker rats had some level of sensory nerve injury prior to exposure, and that exposure to vibration activated pathways involved in injury and re-innervation.

摘要

在工作场所接触手部传递的振动会导致工人出现感觉丧失和疼痛。糖尿病或原发性雷诺现象等先前存在的疾病可能会加剧这些影响。这些研究的目的是使用已建立的振动诱导损伤的 Zucker 大鼠模型。瘦 Zucker 大鼠具有正常的代谢特征,而肥胖 Zucker 大鼠则表现出代谢紊乱或 II 型糖尿病的症状。本研究考察了振动对肥胖和瘦大鼠的影响。Zucker 大鼠连续 10 天每天暴露于 125 Hz 频率、49 m/s² 加速度的振动 4 小时。在暴露的第 1、5 和 9 天,使用经皮电刺激检查感觉功能。研究完成后,解剖腹侧尾神经、背根神经节和脊髓,并测量参与感觉神经功能障碍的各种转录本水平。使用经皮电刺激评估感觉神经功能障碍。肥胖 Zucker 大鼠的感觉神经功能变化很少。然而,它们在参与突触形成、周围神经重塑和炎症的因子的转录本水平上确实表现出显著变化。转录本水平的变化表明,肥胖 Zucker 大鼠在暴露前就存在一定程度的感觉神经损伤,并且振动暴露激活了与损伤和重新支配有关的途径。

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