Department of Otolaryngology, Head and Neck Surgery, Kochi Medical School, Kochi 783-8505, Japan.
Hear Res. 2010 Feb;260(1-2):11-9. doi: 10.1016/j.heares.2009.09.011. Epub 2009 Sep 29.
Recently, considerable evidence has been accumulated to support the novel view that water homeostasis in the inner ear is regulated via the vasopressin-aquaporin 2 (VP-AQP2) system in the same fashion as in the kidney. Indeed, multiple subtypes of AQPs including AQP-2 are reported to be expressed in the cochlea. However, the mechanism that underlies VP-AQP-2 mediated water homeostasis remains to be elucidated. In the present study, the localizations of AQP-1, -2, -3, -4, -5, -7, -8, -9, and vasopressin type 2 receptor (V2-R) in the stria vascularis (SV) were molecular biologically and immunohistochemically examined to evaluate the role of the AQP water channel system in water homeostasis of the SV. A RT-PCR study revealed that AQPs and V2-R mRNA are expressed in the cochlea. As for their immunohistochemical localization, the AQP-2 protein is expressed on the basal side of the basal cells of the SV, and proteins of AQP-3 and V2-R are expressed on the apical side of the basal cells. AQP-7 and -9 proteins are expressed on the apical side of marginal cells. AQP-4, -5, and -8 protein expressions could not be detected in the lateral wall of the cochlea. From the present results, water flux in the SV is thought to be regulated at the level of the basal cells by vasopressin. Furthermore, such a distribution of AQP-2, -3, and V2-R suggests that VP-AQP-2 mediated water transport might work actively in the basal cells from perilymph towards endolymph containing AQP-1, -7 and -9.
最近,大量证据支持了一种新观点,即内耳水稳态是通过血管加压素-水通道蛋白 2(VP-AQP2)系统来调节的,其方式与肾脏中相同。事实上,已有报道称包括 AQP-2 在内的多种 AQP 亚型在耳蜗中表达。然而,VP-AQP-2 介导的水稳态的机制仍有待阐明。在本研究中,通过分子生物学和免疫组织化学方法研究了 AQP-1、-2、-3、-4、-5、-7、-8、-9 和血管加压素 2 型受体(V2-R)在血管纹(SV)中的定位,以评估 AQP 水通道系统在 SV 水稳态中的作用。RT-PCR 研究显示 AQP 和 V2-R mRNA 在耳蜗中表达。至于它们的免疫组织化学定位,AQP-2 蛋白表达在 SV 基底细胞的基底侧,AQP-3 和 V2-R 蛋白表达在基底细胞的顶侧。AQP-7 和 -9 蛋白表达在边缘细胞的顶侧。AQP-4、-5 和 -8 蛋白在耳蜗外侧壁不能检测到。从目前的结果来看,SV 中的水流通过血管加压素来调节基底细胞的水平。此外,AQP-2、-3 和 V2-R 的这种分布表明,VP-AQP-2 介导的水转运可能在含有 AQP-1、-7 和 -9 的基底细胞中从外淋巴向内淋巴积极进行。