論文

国際誌
2021年8月

Pharmacokinetics of CuGTSM, a Novel Drug Candidate, in a Mouse Model of Menkes Disease.

Pharmaceutical research
  • Yoshiaki Yamagishi
  • Toshiyuki Kudo
  • Masafumi Oyumi
  • Yusuke Sakamoto
  • Kazuki Takahashi
  • Taiki Akashi
  • Shohei Kobayashi
  • Takeaki Kawakami
  • Hitomi Goda
  • Yasuhiro Sato
  • Masakazu Mimaki
  • Hiroko Kodama
  • Mitsutoshi Munakata
  • Kosho Makino
  • Hideyo Takahashi
  • Toshiro Fukami
  • Kiyomi Ito
  • 全て表示

38
8
開始ページ
1335
終了ページ
1344
記述言語
英語
掲載種別
研究論文(学術雑誌)
DOI
10.1007/s11095-021-03090-0

PURPOSE: Menkes disease is a rare hereditary disease in which systemic deficiency of copper due to mutation of the ATP7A gene causes severe neurodegenerative disorders. The present parenteral drugs have limited efficacy, so there is a need for an efficacious drug that can be administered orally. This study focused on glyoxal-bis (N(4)-methylthiosemicarbazonato)-copper(II (CuGTSM), which has shown efficacy in macular mice, a murine model of Menkes disease, and examined its pharmacokinetics. In addition, nanosized CuGTSM (nCuGTSM) was prepared, and the effects of nanosizing on CuGTSM pharmacokinetics were investigated. METHODS: CuGTSM or nCuGTSM (10 mg/kg) was administered orally to male macular mice or C3H/HeNCrl mice (control), and plasma was obtained by serial blood sampling. Plasma concentrations of CuGTSM and GTSM were measured by LC-MS/MS and pharmacokinetic parameters were calculated. RESULTS: When CuGTSM was administered orally, CuGTSM and GTSM were both detected in the plasma of both mouse strains. When nCuGTSM was administered, the Cmax was markedly higher, and the mean residence time was longer than when CuGTSM was administered for both CuGTSM and GTSM in both mouse strains. With macular mice, the AUC ratio (GTSM/CuGTSM) was markedly higher and the plasma CuGTSM concentration was lower than with C3H/HeNCrl mice when either CuGTSM or nCuGTSM was administered. CONCLUSION: Absorption of orally administered CuGTSM was confirmed in macular mice, and the nano-formulation improved the absorption and retention of CuGTSM in the body. However, the plasma concentration of CuGTSM was lower in macular mice than in control mice, suggesting easier dissociation of CuGTSM.

リンク情報
DOI
https://doi.org/10.1007/s11095-021-03090-0
PubMed
https://www.ncbi.nlm.nih.gov/pubmed/34403032
ID情報
  • DOI : 10.1007/s11095-021-03090-0
  • PubMed ID : 34403032

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