Frambach D A, Valentine J L, Weiter J J
Department of Ophthalmology, University of Southern California, Los Angeles.
Invest Ophthalmol Vis Sci. 1989 Oct;30(10):2271-4.
Bovine retinal pigment epithelium (RPE)-choroid explants were sealed in an Ussing chamber. Typical preparations produced a transepithelial voltage (Ve) of 12 mV (retina side positive) and had an electrical resistance (R) of 300 ohm-cm2. These values can be attributed to the RPE. Furosemide and ouabain reduced the Ve without affecting R when applied to the apical side of the RPE, but had no effect upon Ve and R when applied to the choroidal side. Acetazolamide had no effect upon Ve and R when applied to either side of the tissue. In Cl-free medium, ouabain reduced Ve without affecting R, while furosemide had no effect upon Ve and R. In Na-free medium, ouabain and furosemide had no effect upon Ve and R. Unidirectional isotope flux studies performed under open circuit conditions showed a net retina-to-choroid Cl flux that was abolished by furosemide. These results indicate that bovine RPE possesses a furosemide-sensitive Cl transport system.
将牛视网膜色素上皮(RPE)-脉络膜外植体密封于尤斯灌流小室中。典型标本产生的跨上皮电压(Ve)为12 mV(视网膜侧为正),电阻(R)为300欧姆·平方厘米。这些数值可归因于RPE。当呋塞米和哇巴因应用于RPE的顶端侧时,可降低Ve而不影响R,但应用于脉络膜侧时对Ve和R无影响。乙酰唑胺应用于组织的任一侧时对Ve和R均无影响。在无氯培养基中,哇巴因降低Ve而不影响R,而呋塞米对Ve和R无影响。在无钠培养基中,哇巴因和呋塞米对Ve和R均无影响。在开路条件下进行的单向同位素通量研究显示,存在一个从视网膜到脉络膜的净氯通量,该通量被呋塞米消除。这些结果表明,牛RPE具有一个对呋塞米敏感的氯转运系统。