首页> 美国卫生研究院文献>The Journal of Physiology >Production of endolymph in the semicircular canal of the frog Rana esculenta.
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Production of endolymph in the semicircular canal of the frog Rana esculenta.

机译:蛙蛙半圆管内淋巴的产生。

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摘要

The mechanisms of secretion of endolymph were studied in vitro in the isolated inner ear of the frog. Prior to in vitro experiments, the composition of perilymph was evaluated in vivo and compared to that of plasma. Composition of perilymph resembled that of an extracellular fluid, although Na and Cl concentrations were higher and K concentration was lower in perilymph than in plasma water. No difference in Ca and Mg concentrations was observed between these two fluids. Osmolality averaged 227 mosmol/kg H2O in perilymph and 183 mosmol/kg H2O in plasma. Endolymph in frog inner ear corresponded in chemical pattern to mammalian endolymph. K and Na concentrations in endolymph collected from the ampulla of the posterior vertical semicircular canal averaged 121.1 mM and 2.5 mM, respectively. Osmolality of endolymph was 237 mosmol/kg H2O. K and Na concentrations were unaltered when inner ears were incubated for 24 h either at 15 degrees C or at 4 degrees C. Addition of ouabain (10(-4) M) to the perilymph-like bathing solution altered greatly Na and K composition of endolymph after incubation for 3 h at 15 degrees C. The Na and K concentration gradients between endolymph and the bath were abolished after incubation for 24 h. Ligatures of the posterior vertical semicircular canal were performed at different sites to isolate some parts of the canal, i.e. the ampulla and the non-ampullar duct. K concentration in the ampulla after incubation for 24 h remained as high as 20 times that in the bath. This K gradient was abolished in the presence of ouabain (10(-4) M). High K concentration could be maintained in the non-ampullar part of the semicircular canal only if the latter communicated with the ampulla. It is concluded that endolymph is actively secreted into the ampulla of the semicircular canal. Na+-K+-activated ATPase in the ampullar dark cells may energize the ouabain sensitive ionic transports that are involved in the production of endolymph. Endolymph secreted into the ampulla would spread intraluminally to account for the high K and low Na concentrations of the fluid which fills the non-secretory part of the semicircular canal.
机译:在离体的青蛙内耳中体外研究了内淋巴分泌的机制。在进行体外实验之前,先评估体内淋巴的成分,然后与血浆进行比较。尽管与血浆水相比,周淋巴中的Na和Cl浓度较高,而K浓度较低,但周淋巴的成分类似于细胞外液。在这两种流体之间,未观察到Ca和Mg浓度的差异。渗透压在周淋巴中平均为227 mosmol / kg H2O,在血浆中平均为183 mosmol / kg H2O。青蛙内耳的内淋巴在化学模式上与哺乳动物内淋巴相对应。从垂直后半规管的壶腹收集的内淋巴中的K和Na浓度分别平均为121.1 mM和2.5 mM。内淋巴的重量克分子渗透压浓度为237 mosmol / kg H2O。当内耳在15°C或4°C下孵育24小时时,K和Na的浓度不变。向淋巴状沐浴液中添加哇巴因(10(-4)M)会极大地改变Na和K的组成。在15摄氏度下孵育3小时后,内淋巴消失。孵育24小时后,内淋巴和浴液之间的Na和K浓度梯度消失。在不同部位进行垂直后半圆形管的结扎术,以分离出运河的某些部分,即壶腹和非壶腹导管。温育24小时后壶腹中的钾浓度仍高达浴液中的20倍。在哇巴因(10(-4)M)存在的情况下取消了此K梯度。仅在半圆形管的非壶腹部分与壶腹连通时,才能保持高K浓度。结论是内淋巴活跃地分泌到半圆形管的壶腹中。壶腹暗细胞中的Na + -K +激活的ATPase可能会激发与内淋巴产生有关的哇巴因敏感离子运输。分泌到壶腹的内淋巴会在腔内扩散,以解释充满半圆形管非分泌部分的高K和低Na的液体。

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