Ahmed Mona El-Rabie, Bando Hideki, Hirota Ryuichi, Sakaguchi Hirofumi, Koike Shinobu, El-Adawy Ahlam Abdel-Salam Nabieh, Kotby Mohamed Nasser, Hisa Yasuo
Department of Otolaryngology-Head and Neck Surgery, Kyoto Prefectural University of Medicine, Japan.
Acta Otolaryngol. 2012 Apr;132(4):439-46. doi: 10.3109/00016489.2011.644253. Epub 2012 Jan 11.
Expression of aquaporins (AQPs) in the vocal folds and the parasympathetic regulation of AQPs in the laryngeal glands may be important for controlling laryngeal secretion and vocal fold hydration. These findings are thought to be an initial step towards understanding potential mechanisms of water flow through the vocal fold surface.
Lubrication of the vocal folds is important for phonation and laryngeal defense. However, the system of water transport in the laryngeal epithelium has not yet been clarified. We investigated the expression of AQP water channnels (AQP1-9) in the murine larynx and examined the neural regulating mechanisms of these subtypes.
The distribution of AQPs (AQP1-9) in the murine larynx was examined by immunohistochemistry. Next, the neural mechanism regulating AQPs in the larynx was investigated using unilaterally vagotomized mice.
AQP1, 4, and 5 were expressed in the laryngeal epithelium including the vocal folds. Vocal fold AQP expression was minimal at the vocal process. AQP2, 3, 5, 6, 7, and 8 were localized to the submucosal glands. Expression of AQPs in the vagotomized region was significantly decreased compared with the contralateral intact side. The expression in the laryngeal glands was also decreased in the aged mice.
水通道蛋白(AQPs)在声带中的表达以及喉腺中AQPs的副交感神经调节对于控制喉部分泌和声带水合作用可能很重要。这些发现被认为是理解水流过声带表面潜在机制的第一步。
声带润滑对于发声和喉部防御很重要。然而,喉上皮中的水运输系统尚未阐明。我们研究了水通道蛋白水通道(AQP1 - 9)在小鼠喉部的表达,并检查了这些亚型的神经调节机制。
通过免疫组织化学检查AQPs(AQP1 - 9)在小鼠喉部的分布。接下来,使用单侧迷走神经切断的小鼠研究调节喉部AQPs的神经机制。
AQP1、4和5在包括声带在内的喉上皮中表达。声带AQP表达在声突处最少。AQP2、3、5、6、7和8定位于黏膜下腺。与对侧完整侧相比,迷走神经切断区域中AQPs的表达显著降低。老年小鼠喉腺中的表达也降低。