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Physiologically Based Absorption Modelling to Explore the Impact of Food and Gastric pH Changes on the Pharmacokinetics of Entrectinib.
Parrott, Neil; Stillhart, Cordula; Lindenberg, Marc; Wagner, Bjoern; Kowalski, Karey; Guerini, Elena; Djebli, Nassim; Meneses-Lorente, Georgina.
Affiliation
  • Parrott N; Pharmaceutical Sciences, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd, Grenzacherstrasse 124, 4070, Basel, Switzerland. neil_john.parrott@roche.com.
  • Stillhart C; Pharmaceutical Research & Development, Formulation & Process Sciences, F. Hoffmann-La Roche Ltd, Basel, Switzerland.
  • Lindenberg M; Pharmaceutical Research & Development, Analytical, F. Hoffmann-La Roche Ltd, Basel, Switzerland.
  • Wagner B; Pharmaceutical Sciences, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd, Grenzacherstrasse 124, 4070, Basel, Switzerland.
  • Kowalski K; Ignyta, San Diego, California, 92121, USA.
  • Guerini E; Pharmaceutical Sciences, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd, Grenzacherstrasse 124, 4070, Basel, Switzerland.
  • Djebli N; Pharmaceutical Sciences, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd, Grenzacherstrasse 124, 4070, Basel, Switzerland.
  • Meneses-Lorente G; Pharmaceutical Sciences, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd, Grenzacherstrasse 124, 4070, Basel, Switzerland.
AAPS J ; 22(4): 78, 2020 05 26.
Article in En | MEDLINE | ID: mdl-32458089
ABSTRACT
Entrectinib is a potent and selective tyrosine kinase inhibitor (TKI) of TRKA/B/C, ROS1, and ALK with both systemic and CNS activities, which has recently received FDA approval for ROS1 fusion-positive non-small cell lung cancer and NTRK fusion-positive solid tumors. This paper describes the application of a physiologically based biophamaceutics modeling (PBBM) during clinical development to understand the impact of food and gastric pH changes on absorption of this lipophilic, basic, molecule with reasonable permeability but strongly pH-dependent solubility. GastroPlus™ was used to develop a physiologically based pharmacokinetics (PBPK) model integrating in vitro and in silico data and dissolution studies and in silico modelling in DDDPlus™ were used to understand the role of self-buffering and acidulant on formulation performance. Models were verified by comparison of simulated pharmacokinetics for acidulant and non-acidulant containing formulations to clinical data from a food effect study and relative bioavailability studies with and without the gastric acid-reducing agent lansoprazole. A negligible food effect and minor pH-dependent drug-drug interaction for the market formulation were predicted based on biorelevant in vitro measurements, dissolution studies, and in silico modelling and were confirmed in clinical studies. These outcomes were explained as due to the acidulant counteracting entrectinib self-buffering and greatly reducing the effect of gastric pH changes. Finally, sensitivity analyses with the verified model were applied to support drug product quality. PBBM has great potential to streamline late-stage drug development and may have impact on regulatory questions.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Benzamides / Food-Drug Interactions / Protein Kinase Inhibitors / Gastric Absorption / Gastric Mucosa / Indazoles / Models, Biological Type of study: Prognostic_studies Limits: Adult / Female / Humans / Male / Middle aged Language: En Journal: AAPS J Journal subject: FARMACOLOGIA / TERAPIA POR MEDICAMENTOS Year: 2020 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Benzamides / Food-Drug Interactions / Protein Kinase Inhibitors / Gastric Absorption / Gastric Mucosa / Indazoles / Models, Biological Type of study: Prognostic_studies Limits: Adult / Female / Humans / Male / Middle aged Language: En Journal: AAPS J Journal subject: FARMACOLOGIA / TERAPIA POR MEDICAMENTOS Year: 2020 Document type: Article Affiliation country:
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