Secretin-dependent HCO3- secretion from pancreas and liver.

T Grotmol, T Buanes, T Veel, M Roeder
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Abstract

Ultrastructural studies performed on pigs revealed that numerous cytoplasmic tubulovesicles were present in resting pancreatic duct cells. Elevation of systemic arterial PCO2 from 5.5 to 11 kPa increased the number of vesicles more than twofold. Following secretin administration, concurrent with the onset of HCO3- secretion (JHCO3), the cytoplasm became devoid of vesicles, and the basolateral plasma membrane surface area more than doubled. Similar phenomena were observed in bile duct cells. After pretreatment with the microtubules-inhibiting drug colchicine, secretin failed to reduce duct cell vesicle density, and JHCO3 was reduced by c. 50% compared to the control. These ultrastructural changes resemble those described in other H+/HCO3(-)-transporting organs such as the distal nephron and the urinary bladder. Our findings are compatible with the notion that cytoplasmic vesicles containing H(+)-ATPases are incorporated into the basolateral plasma membrane of secretory cells during secretin stimulation. Active transport of H+ into interstitial fluid might therefore be the driving force underlying JHCO3.

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胰腺和肝脏分泌的分泌素依赖性HCO3。
对猪进行的超微结构研究显示,在静息的胰管细胞中存在大量的细胞质管泡。全身动脉PCO2从5.5 kPa升高到11 kPa,使囊泡数量增加了两倍以上。分泌素给药后,随着HCO3-分泌(JHCO3)的开始,细胞质变得没有囊泡,基底外侧质膜表面积增加了一倍以上。胆管细胞也有类似现象。经微管抑制药物秋水仙碱预处理后,分泌素未能降低导管细胞囊泡密度,JHCO3较对照组降低了c. 50%。这些超微结构变化类似于其他H+/HCO3(-)转运器官,如远端肾元和膀胱。我们的发现与含有H(+)- atp酶的细胞质囊泡在分泌素刺激过程中被纳入分泌细胞的基底外侧质膜的概念相一致。因此,氢离子主动输运到组织液中可能是JHCO3的驱动力。
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