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高压环境对诱导性肌肉挫伤后大鼠骨骼肌线粒体能量代谢的影响。

The influence of hyperbaric environment on the skeletal muscle mitochondrial energetic of rats after induced muscle contusion.

作者信息

Cervaens M, Lumini-Oliveira J, Ascensão A, Magalhães J, Camacho O, Barata P

机构信息

Faculty of Health Sciences, University Fernando Pessoa, Porto, Portugal.

Faculty of Sport, University of Porto, Portugal.

出版信息

Undersea Hyperb Med. 2018 Nov-Dec;45(6):653-662.

Abstract

OBJECTIVE

Analyze the influence of the hyperbaric environment on skeletal muscle mitochondrial bioenergetic end-points of rats submitted to muscle contusion.

METHODS

Twelve female Wistar rats were randomly assigned to three groups. All rats were submitted to muscle contusion in the right gastrocnemius through a standard protocol. The control group (C) remained under normobaric conditions without any treatment. The hyperbaric air (HB) and the hyperbaric oxygen (HBO2) groups had four sessions of HBO2 therapy 60 minutes, six, 12, 24 and 48 hours after the injury at 253.25 kPa (2.5 atmospheres absolute/ATA) with air or 100% oxygen, respectively. The animals were sacrificed 48 hours after muscle injury, and both muscles (injured and non-injured) were analyzed. Muscle mitochondrial bioenergetics and mitochondrial permeability transition pore (MPTP) susceptibility were evaluated.

RESULTS

Significant differences were found in all parameters between the injured and the non-injured gastrocnemius in the C group. In the HB group, significantly better results concerning bioenergetics-related end points with complex I and II substrates where found in the right gastrocnemius, whereas in the HBO2 group the time to Vmax (time that elapsed until the faster swelling kinetics starts) was significantly higher and the swelling amplitude was significantly smaller than in other groups, which suggest a lower susceptibility to MPTP opening.

CONCLUSION

The present data suggest that hyperbaric exposure, particularly with oxygen, positively modulates the efficiency of skeletal muscle mitochondria after muscle contusion.

摘要

目的

分析高压环境对遭受肌肉挫伤的大鼠骨骼肌线粒体生物能量学终点的影响。

方法

将12只雌性Wistar大鼠随机分为三组。所有大鼠均通过标准方案对右侧腓肠肌进行肌肉挫伤。对照组(C组)在常压条件下不进行任何处理。高压空气组(HB组)和高压氧组(HBO₂组)在受伤后6、12、24和48小时,分别在253.25 kPa(2.5绝对大气压/ATA)下用空气或100%氧气进行4次60分钟的HBO₂治疗。在肌肉损伤后48小时处死动物,并对双侧肌肉(受伤和未受伤)进行分析。评估肌肉线粒体生物能量学和线粒体通透性转换孔(MPTP)敏感性。

结果

C组中,受伤和未受伤的腓肠肌在所有参数上均存在显著差异。在HB组中,右侧腓肠肌在与复合体I和II底物相关的生物能量学终点方面取得了显著更好的结果,而在HBO₂组中,达到Vmax的时间(直到更快的肿胀动力学开始所经过的时间)显著更长,且肿胀幅度显著小于其他组,这表明对MPTP开放的敏感性较低。

结论

目前的数据表明,高压暴露,尤其是吸氧,对肌肉挫伤后骨骼肌线粒体的效率有积极的调节作用。

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