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胰腺腺泡细胞:微量离子电泳施加多肽对膜电位和电阻的影响。

Pancreatic acinar cells: effects of micro-ionophoretic polypeptide application on membrane potential and resistance.

作者信息

Petersen O H, Philpott H G

出版信息

J Physiol. 1979 May;290(2):305-15. doi: 10.1113/jphysiol.1979.sp012772.

Abstract
  1. Acinar cell membrane potential and resistance were measured from superfused segments of mouse pancreas, in vitro, using intracellular glass micro-electrodes. One or two extracellular micropipettes containing caerulein, bombesin nonapeptide (Bn) or acetylcholine (ACh) were placed near to the surface of the impaled acinus. The secretagogues were ejected rapidly from the micropipettes by ionophoresis.2. Each secretagogue evoked a similar electrical response from the impaled acinar cell: membrane depolarization and a simultaneous reduction in input resistance. The duration of cell activation from caerulein ionophoresis was longer than that observed for ACh and Bn. The cell response to the peptide hormone applications could be repeated in the presence of atropine.3. The minimum interval before the onset of cell depolarization after caerulein ionophoresis was determined. Values ranged between 500 and 1000 msec. The minimum latencies after Bn ionophoresis were 500-1400 msec.4. With two electrodes inserted into electrically coupled acinar cells, direct measurements of the caerulein and Bn null potentials were made. At high negative membrane potentials an enhanced depolarization was evoked by caerulein ionophoresis. At low negative membrane potentials the caerulein stimulation produced a diminished depolarization, and at membrane potentials less than - 10 mV acinar cell hyperpolarizations were observed. A similar series of responses was obtained in experiments where Bn ionophoresis was used. The caerulein and the Bn null potentials were always contained within - 10 to - 15 mV.5. The results describe the almost identical electrical response of acinar cells to stimulation by ACh, caerulein and bombesin. All three secretagogues have similar null potentials and latencies of activation on acinar cells. The bombesin latency responses appear as short as those measured for caerulein and provide electro-physiological evidence that Bn acts directly on acinar cells. The findings support the hypothesis that ACh, caerulein and Bn, though acting on different receptors, evoke the observed changes in electrical properties of acinar cell membranes, through a common pathway.
摘要
  1. 使用细胞内玻璃微电极,在体外对小鼠胰腺的灌流节段进行腺泡细胞膜电位和电阻的测量。将一或两个含有蛙皮素、蛙皮素九肽(Bn)或乙酰胆碱(ACh)的细胞外微吸管置于被刺穿腺泡的表面附近。通过离子电泳将促分泌剂从微吸管中快速喷出。

  2. 每种促分泌剂都能引起被刺穿腺泡细胞类似的电反应:膜去极化以及输入电阻同时降低。蛙皮素离子电泳引起的细胞激活持续时间比乙酰胆碱和蛙皮素九肽观察到的要长。在阿托品存在的情况下,细胞对肽类激素应用的反应可以重复。

  3. 测定了蛙皮素离子电泳后细胞去极化开始前的最短间隔时间。数值范围在500至1000毫秒之间。蛙皮素九肽离子电泳后的最短潜伏期为500 - 1400毫秒。

  4. 将两个电极插入电耦合的腺泡细胞中,对蛙皮素和蛙皮素九肽的零电位进行直接测量。在高负膜电位下,蛙皮素离子电泳引起增强的去极化。在低负膜电位下,蛙皮素刺激产生的去极化减弱,并且在膜电位小于 - 10 mV时观察到腺泡细胞超极化。在使用蛙皮素九肽离子电泳的实验中获得了类似的一系列反应。蛙皮素和蛙皮素九肽的零电位始终在 - 10至 - 15 mV范围内。

  5. 结果描述了腺泡细胞对乙酰胆碱、蛙皮素和蛙皮素九肽刺激几乎相同的电反应。所有三种促分泌剂在腺泡细胞上具有相似的零电位和激活潜伏期。蛙皮素九肽的潜伏期反应与蛙皮素测量的结果一样短,并提供了蛙皮素九肽直接作用于腺泡细胞的电生理证据。这些发现支持了这样的假设,即乙酰胆碱、蛙皮素和蛙皮素九肽虽然作用于不同的受体,但通过共同途径引起腺泡细胞膜电特性的观察到的变化。

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