Evaluation of cellular purine transport and metabolism in the Caco-2 cell using comprehensive high-performance liquid chromatography method for analysis of purines

T. Fukuuchi, M. Kobayashi, N. Yamaoka, K. Kaneko
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引用次数: 2

Abstract

ABSTRACT Using Caco-2 cells and our previously developed high-performance liquid chromatography method for quantification of purine bases, nucleosides, and nucleotides, we evaluated cellular purine transport and uptake. The analytes were separated using YMC-Triart C18 column with gradient elution. We used Caco-2 cells as intestinal model cells and monitored purine transport across a monolayer for 2 h. The degree of change of purine concentrations in the permeate was very slight; however, it was possible to simultaneously determine these parameters for all purines because of our method's high sensitivity. In the present study, the purine bases (adenine, guanine, hypoxanthine, and xanthine) showed a relatively high permeability as compared with the nucleosides (adenosine, guanosine, inosine, and xanthosine). Increased concentration of metabolites in the permeate was also observed following the addition of purines. In a cell uptake assay, both the cell culture medium (extracellular) and the cells extracted from Caco-2 with acetonitrile:water (7:3) (intracellular) were measured. The additional nucleoside did not increase significantly within the cells. On the other hand, we observed that nucleotide, such as ATP, increased in the cell in a time-dependent manner following the addition of nucleoside. The additional nucleosides were considered to be rather recycled via the salvage pathway than metabolized to purine bases and/or uric acid in the cell. Such differences might have affected the increase in the serum uric acid levels depending on purine form.
利用综合高效液相色谱法分析嘌呤,评价Caco-2细胞中嘌呤的运输和代谢
利用Caco-2细胞和我们之前开发的高效液相色谱法定量嘌呤碱基、核苷和核苷酸,我们评估了细胞嘌呤的运输和摄取。采用YMC-Triart C18色谱柱进行梯度洗脱。我们使用Caco-2细胞作为肠道模型细胞,监测嘌呤在单层中的转运2小时。渗透物中嘌呤浓度的变化程度非常轻微;然而,由于我们的方法灵敏度高,可以同时测定所有嘌呤的这些参数。在本研究中,嘌呤碱基(腺嘌呤、鸟嘌呤、次黄嘌呤和黄嘌呤)与核苷(腺苷、鸟嘌呤、肌苷和黄嘌呤)相比,具有相对较高的通透性。在加入嘌呤后,还观察到渗透液中代谢物的浓度增加。在细胞摄取试验中,测量细胞培养基(细胞外)和用乙腈:水(7:3)从Caco-2中提取的细胞(细胞内)。额外的核苷在细胞内没有明显增加。另一方面,我们观察到核苷酸,如ATP,在加入核苷后以时间依赖性的方式在细胞中增加。额外的核苷被认为是通过回收途径而不是代谢成细胞中的嘌呤碱基和/或尿酸。这些差异可能影响了血清尿酸水平的增加,这取决于嘌呤的形式。
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