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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Mechanism of intestinal absorption of an orally active beta-lactam prodrug: uptake and transport of carindacillin in Caco-2 cells.
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Mechanism of intestinal absorption of an orally active beta-lactam prodrug: uptake and transport of carindacillin in Caco-2 cells.

机译:口服活性β-内酰胺前药的肠道吸收机理:卡那西林在Caco-2细胞中的吸收和转运。

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摘要

Absorption characteristics of carindacillin (CIPC) were investigated using Caco-2 cells, and the results were compared with those of its parent drug, carbenicillin (CBPC). Uptake of CBPC was not affected by the metabolic inhibitor or the change in extracellular pH. CBPC appeared to be taken up into Caco-2 cells by passive diffusion. In contrast, the uptake of CIPC was greater at lower extracellular pH and was inhibited in the presence of carbonyl cyanide p-(trifluoromethoxy)phenyl hydrazone, a protonophore. Also, transport of CIPC through Caco-2 cell monolayer was energy and temperature dependent. Moreover, the uptake and transport of CIPC were significantly inhibited in the presence of various monocarboxylic acids, which are the substrates of the monocarboxylic acid transport system(s), whereas the substrates of the oligopeptide transporter had no effect on the uptake or transport of CIPC. These results suggested that the absorption of CIPC may be mediated by the monocarboxylic acid transport system(s), not by the oligopeptide transporter. Furthermore, the uptake and transport of CIPC were approximately 40-fold greater than those of CBPC. Therefore, it is likely that the participation of a carrier-mediated transport in the absorption of CIPC may significantly contribute to the improved absorption of the prodrug over the parent drug.
机译:使用Caco-2细胞研究了卡那达西林(CIPC)的吸收特性,并将结果与​​其母体羧苄西林(CBPC)进行了比较。 CBPC的摄取不受代谢抑制剂或细胞外pH值变化的影响。 CBPC似乎被被动扩散吸收到Caco-2细胞中。相反,CIPC的摄取在较低的细胞外pH值下更大,在羰基氰对-(三氟甲氧基)苯基(质子体)的存在下受到抑制。而且,CIPC通过Caco-2细胞单层的转运与能量和温度有关。此外,在各种一元羧酸的存在下,CIPC的摄取和转运受到显着抑制,而一元羧酸是一元羧酸转运系统的底物,而寡肽转运蛋白的底物对CIPC的吸收或转运没有影响。 。这些结果表明,CIPC的吸收可能是由单羧酸转运系统介导的,而不是由寡肽转运蛋白介导的。此外,CIPC的吸收和运输是CBPC的约40倍。因此,很可能载体介导的转运参与CIPC的吸收可以显着有助于改善母体药物对前药的吸收。

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