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Mechanistic Multilayer Quantitative Model for Nonlinear Pharmacokinetics, Target Occupancy and Pharmacodynamics (PK/TO/PD) Relationship of D-Amino Acid Oxidase Inhibitor, TAK-831 in Mice.
Yoneyama, Tomoki; Sato, Sho; Sykes, Andy; Fradley, Rosa; Stafford, Stuart; Bechar, Shyam; Howley, Eimear; Patel, Toshal; Tagawa, Yoshihiko; Moriwaki, Toshiya; Asahi, Satoru.
Affiliation
  • Yoneyama T; Drug Metabolism and Pharmacokinetics Research Laboratories, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan. tomoki.yoneyama@takeda.com.
  • Sato S; Drug Metabolism and Pharmacokinetics Research Laboratories, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan.
  • Sykes A; Drug Metabolism and Pharmacokinetics Research Laboratories, Takeda Cambridge Ltd, Cambridge, UK.
  • Fradley R; Pharmacology, Takeda Cambridge Ltd, Cambridge, UK.
  • Stafford S; Pharmacology, Takeda Cambridge Ltd, Cambridge, UK.
  • Bechar S; Pharmacology, Takeda Cambridge Ltd, Cambridge, UK.
  • Howley E; Pharmacology, Takeda Cambridge Ltd, Cambridge, UK.
  • Patel T; Pharmacology, Takeda Cambridge Ltd, Cambridge, UK.
  • Tagawa Y; Drug Metabolism and Pharmacokinetics Research Laboratories, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan.
  • Moriwaki T; Drug Metabolism and Pharmacokinetics Research Laboratories, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan.
  • Asahi S; Drug Metabolism and Pharmacokinetics Research Laboratories, Takeda Pharmaceutical Company Limited, Fujisawa, Kanagawa, Japan.
Pharm Res ; 37(8): 164, 2020 Aug 05.
Article in En | MEDLINE | ID: mdl-32901384
ABSTRACT

PURPOSE:

TAK-831 is a highly selective and potent inhibitor of D-amino acid oxidase (DAAO) currently under clinical development for schizophrenia. In this study, a mechanistic multilayer quantitative model that parsimoniously connects pharmacokinetics (PK), target occupancy (TO) and D-serine concentrations as a pharmacodynamic (PD) readout was established in mice.

METHODS:

PK, TO and PD time-profiles were obtained in mice and analyzed by mechanistic binding kinetics model connected with an indirect response model in a step wise fashion. Brain distribution was investigated to elucidate a possible mechanism driving the hysteresis between PK and TO.

RESULTS:

The observed nonlinear PK/TO/PD relationship was well captured by mechanistic modeling framework within a wide dose range of TAK-831 in mice. Remarkably different brain distribution was observed between target and reference regions, suggesting that the target-mediated slow binding kinetics rather than slow penetration through the blood brain barrier caused the observed distinct kinetics between PK and TO.

CONCLUSION:

A quantitative mechanistic model for concentration- and time-dependent nonlinear PK/TO/PD relationship was established for TAK-831 in mice with accounting for possible rate-determining process. The established mechanistic modeling framework will provide a quantitative means for multilayer biomarker-assisted clinical development in multiple central nervous system indications.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Brain / D-Amino-Acid Oxidase Limits: Animals Language: En Journal: Pharm Res Year: 2020 Document type: Article Affiliation country: Japan

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Brain / D-Amino-Acid Oxidase Limits: Animals Language: En Journal: Pharm Res Year: 2020 Document type: Article Affiliation country: Japan