Section for Cell Biology and Physiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Section for Clinical Oral Microbiology, Department of Odontology, University of Copenhagen, Copenhagen, Denmark.
Pflugers Arch. 2023 Mar;475(3):361-379. doi: 10.1007/s00424-022-02782-9. Epub 2022 Dec 19.
Mechanisms of synergistic agonist stimulation and modulation of the electrochemical driving force for anion secretion are still not fully explored in human pancreatic duct epithelial cells. The first objective of this study was therefore to test whether combined agonist stimulation augments anion transport responses in the Capan-1 monolayer model of human pancreatic duct epithelium. The second objective was to test the influence of H,K-ATPase inhibition on anion transport in Capan-1 monolayers. The third objective was to analyze the expression and function of K channels in Capan-1, which could support anion secretion and cooperate with H,K-ATPases in pH and potassium homeostasis. The human pancreatic adenocarcinoma cell line Capan-1 was cultured conventionally or as polarized monolayers that were analyzed by Ussing chamber electrophysiological recordings. Single-cell intracellular calcium was assayed with Fura-2. mRNA isolated from Capan-1 was analyzed by use of the nCounter assay or RT-PCR. Protein expression was assessed by immunofluorescence and western blot analyses. Combined stimulation with different physiological agonists enhanced anion transport responses compared to single agonist stimulation. The responsiveness of Capan-1 cells to histamine was also revealed in these experiments. The H,K-ATPase inhibitor omeprazole reduced carbachol- and riluzole-induced anion transport responses. Transcript analyses revealed abundant TASK-2, TWIK-1, TWIK-2, TASK-5, K, and KCNQ1 mRNA expression. KCNE1 mRNA and TREK-1, TREK-2, TASK-2, and KCNQ1 protein expression were also shown. This study shows that the Capan-1 model recapitulates key physiological aspects of a bicarbonate-secreting epithelium and constitutes a valuable model for functional studies on human pancreatic duct epithelium.
人胰腺导管上皮细胞中协同激动剂刺激和调节电化学驱动力增强阴离子分泌的机制尚未完全阐明。因此,本研究的首要目的是检测联合激动剂刺激是否会增强人胰腺导管上皮细胞 Capan-1 单层模型中的阴离子转运反应。第二个目的是检测 H,K-ATP 酶抑制对 Capan-1 单层中的阴离子转运的影响。第三个目的是分析 Capan-1 中 K 通道的表达和功能,这些 K 通道可以支持阴离子分泌,并与 H,K-ATP 酶一起在 pH 和钾稳态中发挥作用。人胰腺腺癌细胞系 Capan-1 常规培养或作为极化单层培养,并用 Ussing 室电生理记录进行分析。用 Fura-2 测定单细胞内钙。使用 nCounter 检测或 RT-PCR 分析从 Capan-1 中分离的 mRNA。通过免疫荧光和 Western blot 分析评估蛋白表达。与单独刺激相比,不同生理激动剂的联合刺激增强了阴离子转运反应。这些实验还揭示了 Capan-1 细胞对组胺的反应性。H,K-ATP 酶抑制剂奥美拉唑降低了 carbachol 和 riluzole 诱导的阴离子转运反应。转录分析显示丰富的 TASK-2、TWIK-1、TWIK-2、TASK-5、K 和 KCNQ1 mRNA 表达。还显示了 KCNE1 mRNA 和 TREK-1、TREK-2、TASK-2 和 KCNQ1 蛋白表达。本研究表明,Capan-1 模型再现了碳酸氢盐分泌上皮的关键生理方面,是研究人胰腺导管上皮功能的有价值模型。