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Upregulation of secretin receptors on cholangiocytes after bile duct ligation.

机译:胆管结扎后胆管细胞分泌素受体的上调。

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Secretin not only increases ductular bile secretion in vivo in rats after bile duct ligation (BDL) [1], but also increases cAMP levels and stimulates exocytosis in isolated cholangiocytes [2]. Although we have previously reported that secretin receptor mRNA was upregulated in cholangiocytes after BDL [3], the cholangiocyte secretin receptor has not been functionally characterized or quantified after BDL. In this work, we used a novel, photolabile and biologically active analogue of secretin to quantify and characterize secretin receptors on cholangiocytes isolated from normal and BDL rats. The cholangiocyte secretin receptor bound radioligand with high affinity and in a rapid, reversible, and temperature-dependent manner. While receptors on cholangiocytes from normal and BDL rats were functionally and biochemically identical, receptor density on cholangiocytes was increased 5-fold following BDL. The combination of increased cell number with increased functional secretin receptors per cell is due to the fact that cholangiocyte hyperplasia represents a reactive response to a cholestatic condition and this effort on the part of the organism to maintain bile secretion, explains the increased hormone-responsive choleresis observed after BDL and may reflect an adaptive response of the organism to cholestasis.
机译:促胰液素不仅会增加大鼠胆管结扎(BDL)后体内的胆汁胆汁分泌[1],而且还会增加cAMP水平并刺激离体胆管细胞的胞吐作用[2]。尽管我们先前曾报道BDL后胆管细胞中促胰液素分泌mRNA上调[3],但BDL后胆管细胞分泌素受体尚未得到功能鉴定或定量。在这项工作中,我们使用了一种新型的,分泌不稳定的,具有生物活性的促胰液素类似物来量化和表征从正常和BDL大鼠中分离出的胆管细胞上的促胰液素受体。胆管细胞分泌素受体以快速,可逆和依赖温度的方式高亲和力结合放射性配体。尽管正常和BDL大鼠胆管细胞上的受体在功能和生化上均相同,但BDL后胆管细胞上的受体密度增加了5倍。增加的细胞数量与每个细胞的功能性促胰液素受体增加的结合是由于以下事实:胆管细胞增生代表对胆汁淤积状况的反应性反应,而这种生物体为维持胆汁分泌所做的努力解释了激素反应性胆汁淤积症的增加在BDL之后观察到,可能反映了生物体对胆汁淤积的适应性反应。

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