替马洛尔对纤毛上皮主动转运的影响。

S Nagasubramanian, D Poinoosawmy
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引用次数: 0

摘要

平均经上皮电位为+4.04 mV(膜侧对间质呈阳性)。结果(图1)表明,在10(-4)M和10(-2)M时,噻莫洛尔显著降低了短路电流(p < 0.01)。由于通过离体纤毛上皮的短路电流是衡量钠向基质----后房方向主动转运的一个指标,因此当噻莫洛尔浓度为10(-4)m时,通过纤毛上皮的Na +/-转运明显下降。相比之下,值得回顾的是,0.5%滴眼液中噻洛尔的浓度略高于10(-2)m。将组织暴露于噻洛尔(一种β受体阻滞剂)中,似乎不会影响系统对β受体兴奋剂异丙肾上腺素的后续反应。Cole和Nagasubramanian报道了在类似的制备中使用异丙肾上腺素在10(-4)至10(-3)M剂量范围内显著刺激短路电流,并报道了儿茶酚胺在两栖动物上皮中短路电流和/或钠转运的增加,这种影响可能是由于在细胞水平上通过循环amp介导的“钠泵”机制带来的对离子主动转运的阻力降低。似乎噻莫洛尔对主动转运本身有直接影响,并且通过减少活性离子流入可导致水产物体积的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effects of timolol on the active transport across the ciliary epithelium.

The mean transepithelial potential was +4.04 mV (cameral side positive to stroma). The results (Fig. 1) show that the short-circuit current was significantly reduced by timolol at 10(-4) and 10(-2) M (p less than 0.01). Since the short-circuit current across the isolated ciliary epithelium is a measure of active sodium transport in the direction stroma----posterior chamber there is an appreciable fall in Na +/- transport across the ciliary epithelium at a timolol concentration of 10(-4) M. On current values of aqueous humour secretion there would be a corresponding fall in aqueous production. For comparison it is worth recalling that the concentration of timolol in 0.5 per cent eye drops is slightly over 10(-2) M. Exposure of the tissue to timolol, a beta blocker does not seem to affect the subsequent response of the system to isoprenaline, a beta stimulant. A significant stimulation of short circuit current in the dose-range of 10(-4) to 10(-3) M with isoprenaline in a similar preparation was reported by Cole and Nagasubramanian and increase of short-circuit current and/or sodium transport in amphibian epithelia have been reported for catecholamines, and this effect may possibly be due to a decrease of the resistance to ions actively transported by the 'sodium pump' mechanism brought about via cyclic-AMP mediating the action at a cellular level. It appears that timolol has a direct effect on the active transport per se and by reducing the active ion influx can cause a reduction in the volume of aqueous production.

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