Pondugula Satyanarayana R, Sanneman Joel D, Wangemann Philine, Milhaud Pierre G, Marcus Daniel C
Kansas State Univ., Dept. of Anatomy and Physiology, 228 Coles Hall, Manhattan, KS 66506-5802, USA.
Am J Physiol Renal Physiol. 2004 Jun;286(6):F1127-35. doi: 10.1152/ajprenal.00387.2003. Epub 2004 Mar 2.
The semicircular canal duct (SCCD) epithelium is a vestibular epithelial domain that was recently shown to actively contribute to endolymph homeostasis by Cl(-) secretion under control of beta(2)-adrenergic stimulation. By analogy to other Cl(-) secretory epithelia, we hypothesized that SCCD also provides an active absorptive pathway for Na(+) under corticosteroid control. Measurements of short-circuit current (I(sc)) demonstrated stimulation (7-24 h) by the glucocorticoids hydrocortisone (EC(50) 13 nM), corticosterone (33 nM), prednisolone (70 nM), and dexamethasone (13 nM) over physiologically and therapeutically relevant concentrations and its block by amiloride (IC(50) 470 nM) and benzamil (57 nM), inhibitors of the epithelial sodium channel (ENaC). I(sc) was also partially inhibited by basolateral ouabain and Ba(2+), indicating the participation of Na(+)-K(+)-ATPase and a K(+) channel in Na(+) transport. By contrast, aldosterone stimulated I(sc) only at unphysiologically high concentrations (EC(50) 102 nM). The action of all steroids was blocked by mifepristone (RU-486; K(d) approximately 0.3 nM) but not by spironolactone (K(d) approximately 0.7 microM). Expression of mRNA for the alpha-, beta-, and gamma-subunits of ENaC was demonstrated in the presence and absence of glucocorticoids. These findings are the first to identify SCCD in the vestibular labyrinth as a site of physiologically significant ENaC-mediated Na(+) absorption and osmotically coupled water flux. They further demonstrate regulation of Na(+) transport by natural and therapeutic glucocorticoids. The results provide for the first time an understanding of the therapeutic benefit of glucocorticoids in the treatment of Meniere's disease, a condition that is associated with increased luminal fluid volume.
半规管导管(SCCD)上皮是前庭上皮区域,最近研究表明,在β₂-肾上腺素能刺激的控制下,它通过Cl⁻分泌对内淋巴稳态起到积极作用。类比其他Cl⁻分泌上皮,我们推测SCCD在皮质类固醇的控制下也为Na⁺提供了一条活跃的吸收途径。短路电流(Isc)测量结果表明,生理和治疗相关浓度的糖皮质激素氢化可的松(EC₅₀为13 nM)、皮质酮(33 nM)、泼尼松龙(70 nM)和地塞米松(13 nM)可刺激(7 - 24小时)Isc,而阿米洛利(IC₅₀为470 nM)和苄amil(57 nM)(上皮钠通道(ENaC)抑制剂)可阻断这种刺激。Isc也被基底外侧哇巴因和Ba²⁺部分抑制,表明Na⁺-K⁺-ATP酶和一个K⁺通道参与了Na⁺转运。相比之下,醛固酮仅在非生理高浓度(EC₅₀为102 nM)时刺激Isc。所有类固醇的作用都被米非司酮(RU - 486;Kd约为0.3 nM)阻断,但未被螺内酯(Kd约为0.7 μM)阻断。无论有无糖皮质激素存在,均证实了ENaC的α、β和γ亚基的mRNA表达。这些发现首次确定前庭迷路中的SCCD是生理上重要的ENaC介导的Na⁺吸收和渗透偶联水通量的部位。它们进一步证明了天然和治疗性糖皮质激素对Na⁺转运的调节作用。这些结果首次为理解糖皮质激素在治疗梅尼埃病中的治疗益处提供了依据,梅尼埃病与管腔内液体量增加有关。