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乌龟膀胱中碱和酸转运的主动电生成机制。

Active electrogenic mechanisms for alkali and acid transport in turtle bladders.

作者信息

Satake N, Durham J H, Ehrenspeck G, Brodsky W A

出版信息

Am J Physiol. 1983 Mar;244(3):C259-69. doi: 10.1152/ajpcell.1983.244.3.C259.

Abstract

Immediately after mounting in the Ussing chamber between choline bicarbonate Ringer solutions devoid of exogenous Na and Cl, the serosal fluid is electronegative to the luminal fluid in bladders from postabsorptive and acidotic turtles; and electropositive in bladders from alkalotic turtles. In bladders from postprandial turtles, the electrical orientation, initially serosal positive, reverses to serosal negative. Serosal additions of 3-isobutyl-1-methylxanthine (IBMX) and adenosine 3',5'-cyclic monophosphate (cAMP) produce no changes in the negative short-circuiting current (Isc) of acidotic turtles but induce large positively-directed increases of Isc in bladders from other turtle groups. With IBMX and cAMP in the (HCO3 + CO2)-rich serosal fluid at pH 7.2 and with luminal pH maintained at 4.0-5.0, the rate at which titratable alkali enters the luminal fluid is electrochemically equal to the positive Isc; and this increased positive Isc is the same as that in the absence of transepithelial gradients. The effects of acetazolamide and 4-acetamido-4-isothiocyanostilbene-2,2'-disulfonic acid on positive and negative Isc are presented. It is concluded that isolated bladders from alkalotic, postprandial or postabsorptive turtles, but not those from acidotic turtles, possess an active electrogenic mechanism for a Na-independent Cl-independent secretion of bicarbonate. This transport process is accelerated by phosphodiesterase inhibitors (IBMX) and cAMP or its eight substituted derivatives.

摘要

在安装于不含外源钠和氯的碳酸氢胆碱林格液之间的乌斯电极槽中后,禁食和酸中毒海龟膀胱的浆膜液相对于管腔液呈电负性;而碱中毒海龟膀胱的浆膜液呈电正性。在餐后海龟的膀胱中,电取向最初是浆膜正性,随后转变为浆膜负性。向浆膜侧添加3 - 异丁基 - 1 - 甲基黄嘌呤(IBMX)和腺苷3',5'-环磷酸(cAMP),酸中毒海龟的负短路电流(Isc)无变化,但在其他海龟组的膀胱中会导致Isc大幅正向增加。在pH 7.2的富含(HCO3 + CO2)的浆膜液中加入IBMX和cAMP,并将管腔pH维持在4.0 - 5.0时,可滴定碱进入管腔液的速率在电化学上等于正向Isc;并且这种增加的正向Isc与不存在跨上皮梯度时相同。文中还介绍了乙酰唑胺和4 - 乙酰氨基 - 4 - 异硫氰基芪 - 2,2'-二磺酸对正向和负向Isc的影响。得出的结论是,碱中毒、餐后或禁食海龟的分离膀胱,而非酸中毒海龟的膀胱,具有一种不依赖钠、不依赖氯的主动电生成机制来分泌碳酸氢盐。这种转运过程会被磷酸二酯酶抑制剂(IBMX)和cAMP或其八种取代衍生物加速。

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