Bochain A, Estey L, Haronian G, Reale M, Rojas C, Cramer J
J Membr Biol. 1981 May 15;60(1):73-6. doi: 10.1007/BF01870834.
A convenient catecholamine transport assay has been developed which permits continuous, instantaneous monitoring of transmembrane flux. Epinephrine transport has been examined by spectrophotometrically monitoring adrenochrome formation resulting from the passive diffusion of catecholamine into unilamellar phospholipid vesicles containing entrapped potassium ferricyanide. Ferricyanide oxidation of epinephrine under the conditions employed is fast compared to membrane transport, which obviates the need for intravesicular concentration or volume determinations. Epinephrine transport data over a pH 6 to 7 range have been fitted to an integrated rate equation from which a permeability coefficient for neutral epinephrine of 2.7 1.5 X 10-6 cm/sec has been obtained.
已开发出一种便捷的儿茶酚胺转运测定法,可对跨膜通量进行连续、即时监测。通过分光光度法监测儿茶酚胺被动扩散到含有包封铁氰化钾的单层磷脂囊泡中所产生的肾上腺色素形成,来研究肾上腺素转运。在所采用的条件下,与膜转运相比,肾上腺素的铁氰化物氧化速度很快,这使得无需测定囊泡内浓度或体积。已将pH值在6至7范围内的肾上腺素转运数据拟合到一个积分速率方程,从中得出中性肾上腺素的渗透系数为2.7×10⁻⁶厘米/秒(±1.5)。