Salt A N, Inamura N, Thalmann R, Vora A
Department of Otolaryngology, Washington University School of Medicine, St Louis, MO 63110.
Am J Otolaryngol. 1989 Nov-Dec;10(6):371-5. doi: 10.1016/0196-0709(89)90030-6.
Recent studies suggest that endolymphatic hydrops resulting from the ablation of the endolymphatic duct and sac in guinea pigs may be caused by a disturbance of endolymph calcium homeostasis. A similar disturbance of calcium homeostasis could represent the underlying cause of Ménière's disease. In this study, we mapped the calcium concentrations and electrical potentials throughout the endolymphatic system in normal guinea pigs. Large concentration differences exist between different compartments, including a more than twofold increase along the length of the cochlea. The electrochemical potential for calcium (the force driving passive longitudinal calcium movement) was calculated for all the endolymphatic compartments. The results show that endolymph is extremely inhomogenous with respect to calcium potentials. On the basis of these potentials, it appears that calcium is transported into endolymph in the cochlea and out of endolymph in the saccule and utricle. The possibility that endolymphatic hydrops arises from a disturbance in longitudinal flow of calcium, rather than in longitudinal volume flow, is considered.
最近的研究表明,豚鼠内淋巴管和内淋巴囊切除后导致的内淋巴积水可能是由内淋巴钙稳态紊乱引起的。类似的钙稳态紊乱可能是梅尼埃病的根本原因。在本研究中,我们绘制了正常豚鼠整个内淋巴系统中的钙浓度和电势图。不同腔室之间存在很大的浓度差异,包括沿耳蜗长度方向增加两倍以上。计算了所有内淋巴腔室的钙电化学势(驱动被动纵向钙移动的力)。结果表明,内淋巴在钙电势方面极不均匀。基于这些电势,似乎钙在耳蜗中被转运到内淋巴中,而在球囊和椭圆囊中从内淋巴中转运出来。我们考虑了内淋巴积水是由钙的纵向流动紊乱而非纵向体积流动紊乱引起的可能性。