首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The subcellular distribution of aquaporin 5 in the cochlea reveals a water shunt at the perilymph-endolymph barrier.
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The subcellular distribution of aquaporin 5 in the cochlea reveals a water shunt at the perilymph-endolymph barrier.

机译:水通道蛋白5在耳蜗中的亚细胞分布表明在淋巴-内淋巴屏障处有分流水。

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摘要

Aquaporins are membrane water channel proteins that have also been identified in the cochlea. Auditory function critically depends on the homeostasis of the cochlear fluids perilymph and endolymph. In particular, the ion and water regulation of the endolymph is essential for sensory transduction. Within the cochlear duct the lateral wall epithelium has been proposed to secrete endolymph by an aquaporin-mediated flow of water across its epithelial tight junction barrier. This study identifies interspecies differences in the cellular distribution of aquaporin 5 (AQP5) in the cochlear lateral wall of mice, rats, gerbils and guinea pigs. In addition the cellular expression pattern of AQP5 is described in the human cochlea. Developmental changes in rats demonstrate longitudinal and radial gradients along the cochlear duct. During early postnatal development a pancochlear expression is detected. However a regression to the apical quadrant and limitation to outer sulcus cells (OSCs) is observed in the adult. This developmental loss of AQP5 expression in the basal cochlear segments coincides with a morphological loss of contact between OSCs and the endolymph. At the subcellular level, AQP5 exhibits polarized expression in the apical plasma membrane of the OSCs. Complementary, the basolateral membrane in the root processes of the OSCs exhibits AQP4 expression. This differential localization of AQP5 and AQP4 in the apical and basolateral membranes of the same epithelial cell type suggests a direct aquaporin-mediated transcellular water shunt between the perilymph and endolymph in the OSCs of the cochlear lateral wall. In the human cochlea these findings may have pathophysiological implications attributed to a dysfunctional water regulation by AQP5 such as endolymphatic hydrops (i.e. in Meniere's disease) or sensorineural hearing loss (i.e. in Sjogren's syndrome).
机译:水通道蛋白是膜水通道蛋白,也已在耳蜗中鉴定出。听觉功能在很大程度上取决于耳蜗液的内淋巴和内淋巴的稳态。特别是,内淋巴的离子和水调节对于感觉传导至关重要。在耳蜗管中,已提出侧壁上皮细胞通过水通道蛋白介导的水通过其上皮紧密连接屏障而分泌内淋巴液。这项研究确定了小鼠,大鼠,沙鼠和豚鼠耳蜗侧壁中水通道蛋白5(AQP5)的细胞分布的种间差异。另外,在人耳蜗中描述了AQP5的细胞表达模式。大鼠的发育变化显示沿耳蜗的纵向和径向梯度。在出生后早期发育期间,检测到胰耳表达。然而,在成年人中观察到了对顶端象限的消退和对外沟细胞(OSCs)的限制。耳蜗基底节段中AQP5表达的这种发育丧失与OSC和内淋巴之间接触的形态学丧失相吻合。在亚细胞水平,AQP5在OSC的顶质膜中显示极化表达。补充地,在OSC的根部过程中的基底外侧膜表现出AQP4表达。 AQP5和AQP4在同一上皮细胞类型的顶膜和基底外侧膜中的这种不同定位表明,在耳蜗侧壁的OSCs中,在水淋巴和内淋巴之间直接存在水通道蛋白介导的跨细胞水分流。在人类耳蜗中,这些发现可能具有病理生理学意义,归因于AQP5对水的调节功能失调,例如内淋巴积水(即美尼尔氏病)或感觉神经性听力减退(即干燥综合征)。

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