Literature DB >> 31690163

Metabolism of desloratadine by chimeric TK-NOG mice transplanted with human hepatocytes.

Shotaro Uehara1, Nao Yoneda1, Yuichiro Higuchi1, Hiroshi Yamazaki2, Hiroshi Suemizu1.   

Abstract

1. Desloratadine is an antiallergic drug with species-dependent metabolic profiles in mice, rats, monkeys and humans. We investigated whether humanized-liver mice could reproduce the reported human-specific in vivo metabolic profile for desloratadine in terms of the formation of 3-hydroxydesloratadine and its O-glucuronide.2. Hepatocytes prepared from humans and humanized-liver mice both preferentially catalyzed the formation of 3-hydroxydesloratadine and its O-glucuronide in vitro.3. After a single oral administration of desloratadine, plasma levels of desloratadine and its metabolites (3-hydroxydesloratadine and its O-glucuronide) in humanized-liver mice were lower and higher, respectively, than those in control mice.4. The amounts of 3-hydroxydesloratadine and its O-glucuronide excreted in humanized-liver mouse feces and urine were higher than those of the control mice, whereas 5- and 6-hydroxydesloratadine formation were predominant in the feces and urine samples from control mice. A significant correlation (r = 0.68) for the dose percentage of urinary and fecal metabolites of desloratadine was only observed between the humanized-liver mice and the reported values for humans.5. These results indicated that urinary 3-hydroxydesloratadine O-glucuronide and fecal desloratadine, 3-hydroxydesloratadine and 5-hydroxydesloratadine were the major excretion pathways of desloratadine in humanized-liver mice, which is reasonably similar to that reported for humans.

Entities:  

Keywords:  Desloratadine; Hu-Liver cell; humanized-liver mice

Mesh:

Substances:

Year:  2019        PMID: 31690163     DOI: 10.1080/00498254.2019.1688892

Source DB:  PubMed          Journal:  Xenobiotica        ISSN: 0049-8254            Impact factor:   1.908


  1 in total

1.  Humanized liver TK-NOG mice with functional deletion of hepatic murine cytochrome P450s as a model for studying human drug metabolism.

Authors:  Shotaro Uehara; Yuichi Iida; Miyuki Ida-Tanaka; Motohito Goto; Kenji Kawai; Masafumi Yamamoto; Yuichiro Higuchi; Satoshi Ito; Riichi Takahashi; Hidetaka Kamimura; Mamoru Ito; Hiroshi Yamazaki; Mitsuo Oshimura; Yasuhiro Kazuki; Hiroshi Suemizu
Journal:  Sci Rep       Date:  2022-09-01       Impact factor: 4.996

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.