Saito Y, Ozawa T, Hayashi H, Nishiyama A
Pflugers Arch. 1987 Jul;409(3):280-8. doi: 10.1007/BF00583477.
The mechanisms of Cl- transport and the effects of acetylcholine (ACh) and electrochemical Cl- potential changes across the basolateral plasma membrane on intracellular Cl- activity in the acinar cells of isolated mouse lacrimal glands were studied using double-barreled Cl- -selective microelectrodes. In the resting state, the basolateral membrane potential (Vm) was about -40 mV and intracellular Cl- activity was about 35 mmol/l. Addition of ACh (10(-9) approximately 10(-6) mol/l) hyperpolarized Vm and decreased the Cl- activity in a dose-dependent manner. ACh (10(-6) mol/l) hyperpolarized Vm by 20 mV and decreased the cytosolic Cl- activity with an initial rate of 16.0 mmol/l X min. Reduction of the perfusate Cl- concentration to 1/9 control depolarized Vm and decreased cytosolic Cl- activity at a rate of 1.9 mmol/l X min. A Vm hyperpolarization of 20 mV produced by DC injection to the adjacent cell decreased Cl- activity at a rate of 4.6 mmol/l X min. DIDS (1 mmol/l) hyperpolarized Vm by 8 mV with little change in Cl- activity and increased the input resistance of the cells by 25%. DIDS decreased the rate of change in Cl- activity induced by low-Cl- Ringer to 35% of control, but had no effect on the ACh-evoked decrease in the Cl- activity. Furosemide (1 mmol/l) slightly hyperpolarized Vm and decreased Cl- activity at a slow rate but affected Cl- movements induced by ACh or low-Cl- Ringer only slightly. Cl- uptake into the cells was inhibited partially by furosemide.(ABSTRACT TRUNCATED AT 250 WORDS)
采用双管氯离子选择性微电极,研究了分离的小鼠泪腺腺泡细胞中氯离子转运机制以及乙酰胆碱(ACh)和基底外侧质膜两侧电化学氯离子电位变化对细胞内氯离子活性的影响。在静息状态下,基底外侧膜电位(Vm)约为 -40 mV,细胞内氯离子活性约为35 mmol/L。加入ACh(10⁻⁹ 至 10⁻⁶ mol/L)使Vm超极化,并以剂量依赖方式降低氯离子活性。ACh(10⁻⁶ mol/L)使Vm超极化20 mV,使胞质氯离子活性以16.0 mmol/L·min的初始速率降低。将灌流液中氯离子浓度降至对照的1/9,使Vm去极化,并使胞质氯离子活性以1.9 mmol/L·min的速率降低。向相邻细胞注入直流电产生20 mV的Vm超极化,使氯离子活性以4.6 mmol/L·min的速率降低。二苯胺-2,2'-二磺酸(DIDS,1 mmol/L)使Vm超极化8 mV,氯离子活性变化不大,并使细胞输入电阻增加25%。DIDS将低氯林格液诱导的氯离子活性变化率降至对照的35%,但对ACh引起的氯离子活性降低无影响。呋塞米(1 mmol/L)使Vm轻度超极化,以缓慢速率降低氯离子活性,但仅轻微影响ACh或低氯林格液诱导的氯离子转运。呋塞米部分抑制了氯离子进入细胞。(摘要截断于250字)