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大鼠喉肌中肌球蛋白重链的调节

Modulation of myosin heavy chains in rat laryngeal muscle.

作者信息

Shiotani A, Nakagawa H, Flint P W

机构信息

Department of Otolaryngology-Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, MD 21203-6402, USA.

出版信息

Laryngoscope. 2001 Mar;111(3):472-7. doi: 10.1097/00005537-200103000-00017.

Abstract

OBJECTIVES

To test the hypothesis that myosin heavy chain (MHC) composition is a biological marker indicative of appropriate and functional reinnervation.

STUDY DESIGN

Age-matched adult rats were randomized for prospective study under three experimental conditions.

METHODS

In adult rats, three experimental conditions were surgically created, including transient recurrent laryngeal nerve (RLN) crush injury, RLN transection and repair, and cricoarytenoid joint fixation with intact RLN. Animals were survived for 30, 90, and 180 days. At each interval, vocal fold mobility was assessed by rigid microlaryngoscopy. Laryngeal electromyography (EMG) was performed before euthanasia. The thyroarytenoid and posterior cricoarytenoid muscles were then excised, each muscle was processed for sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and MHC composition was determined.

RESULTS

Thirty days after nerve crush injury, three of six animals regained vocal fold mobility and normal MHC composition. Impaired vocal fold motion in three of six animals was associated with MHC composition characteristic of denervation. At 90 and 180 days, normal vocal fold motion and normal MHC composition were observed in all animals. Following nerve transection and repair, impaired vocal fold motion and MHC composition characteristic of denervation were observed in all animals, despite evidence of reinnervation on EMG. Following joint fixation, alteration in MHC composition consistent with denervation was observed only at 30 days, as was evident in the nerve crush model.

CONCLUSION

Temporary injury and vocal fold immobilization result in transient shifts in MHC composition. Nerve transection and repair result in persistent alteration of MHC composition and vocal fold dysfunction. The expression of normal MHC composition is dependent on the condition of appropriate neural contact and functional reinnervation.

摘要

目的

检验肌球蛋白重链(MHC)组成是适当且功能性再支配的生物学标志物这一假设。

研究设计

将年龄匹配的成年大鼠随机分为三组进行前瞻性研究。

方法

在成年大鼠中,通过手术创建三种实验条件,包括短暂性喉返神经(RLN)挤压伤、RLN横断并修复,以及在RLN完整的情况下进行环杓关节固定。动物存活30、90和180天。在每个时间间隔,通过硬质显微喉镜评估声带运动。在安乐死之前进行喉肌电图(EMG)检查。然后切除甲杓肌和环杓后肌,每块肌肉进行十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳处理,并确定MHC组成。

结果

神经挤压伤30天后,六只动物中有三只恢复了声带运动和正常的MHC组成。六只动物中有三只声带运动受损与去神经支配特征性的MHC组成相关。在90天和180天时,所有动物均观察到声带运动正常和MHC组成正常。在神经横断并修复后,尽管EMG显示有再支配的证据,但所有动物均观察到声带运动受损和去神经支配特征性的MHC组成。在关节固定后,仅在30天时观察到与去神经支配一致的MHC组成改变,这在神经挤压模型中也很明显。

结论

暂时性损伤和声带固定导致MHC组成的短暂变化。神经横断并修复导致MHC组成的持续改变和声带功能障碍。正常MHC组成的表达取决于适当的神经接触和功能性再支配的状况。

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