Search the PBPK Model Repository

Quickly find freely available drug and population models in our PBPK model repository.

The models provided have been collated from published examples which authors have shared in our Published Model Collection or developed as part of various global health projects in our Global Health Collection. This search facility searches both model collections simultaneously.

To contribute published user compound and/or population files, upload your files here: Upload Model Files

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Found 91 Matches

Fenebrutinib_RES_V21R1_Simcyp_20230615

Prepared: June 2023 The RES-Fenebrutinib_V21 model has been developed primarily as an inhibitor of hepatic OATP1B1 and OATP1B3, and intestinal BCRP using the New GI physiology in Simcyp V21 with altered GI tract population inputs that became default in V22. The RES-Fenebrutinib is verified as solution formulation for 100mg SD, 200mg SD, and 200mg BID. The Rosuvastatin DDI is using a 200 mg BID dosing for Fenebrutinib. Example workspaces for the Fenebrutinib PK and the DDI with Rosuvastatin are attached. The BCRP component of Rosuvastatin (V21 using the New GI physiology) was optimised using Eltrombopag and then verified with other BCRP-Inhibitors available on the members area or within the Simcyp Simulator, see attached ‘BCRP-Inhibitor V21’ document for details.

Fostamatinib_RES_V21R1_Simcyp_20230615

Prepared: June 2023 The RES-Fostamatinib-R406_V21 model has been developed primarily as inhibitor of intestinal BCRP using the New GI physiology in Simcyp V21 with altered GI tract population inputs that became default in V22. Fostamatinib rapidly cleaved (hydrolyzed) to R406 (active moiety) in the gut by alkaline phosphatases. Thus, the Fit-for-purpose file with an in vivo CL/F is modelling the metabolite and not the parent. The verification was performed for 100-150 mg SD and BID. The Rosuvastatin DDI uses 100 mg BID. Example workspaces for the metabolite PK and the DDI with Rosuvastatin are attached. The BCRP component of Rosuvastatin (V21 using the New GI physiology) was optimised using Eltrombopag and then verified with other BCRP-Inhibitors available on the members area or within the Simcyp Simulator, see attached ‘BCRP-Inhibitor V21’ document for details.

Rosuvastatin_Itraconazole_OH-Itraconazole_V19R1_Pfizer_20210804

An optimized Rosuvastatin (V19) model was used and DDIs predominantly driven by gut BCRP inhibition are reasonably recovered. Altogether, the following inhibitors were used: Capmatinib Fenebrutinib Fostamatinib Itraconazole Zepatier The workspace represents the DDI between Rosuvastatin and Itraconazole. Link to the publication with further details: http://doi.org/10.1002/psp4.12672

Enfuviridine

Brand Name(s) include: Fuzeon

Disease: HIV

Drug Class: HIV Entry and Fusion Inhibitor

Date of Review: 2020

Number of Models Reviewed: 1

Number of Models added to the Repository: 1

The model at-a-glance

 Publication

Pan, X., Stader, F., Abduljalil, K., Gill, K. L., Johnson, T. N., Gardner, I., & Jamei, M. (2020). Development and Application of a Physiologically-Based Pharmacokinetic Model to Predict the Pharmacokinetics of Therapeutic Proteins from Full-term Neonates to Adolescents. The AAPS journal, 22(4), 76.

 Simcyp Version

V18

 Published Model Application

Prediction of exposure in noenates

 Absorption Model

First Order

 Volume of Distribution Details

Full PBPK

 Route of Elimination

  • Renal filtration
  • Additional systemic clearance

 Perpetrator DDI

  • None 

 Advantages and Limitations

  • Model was developed to predict the PK of enfuviridine in neonates and adolescents.
  • Model was verified in adult and pediatric populations.
  • Model was verified for IV and subcutaneous dosing.
  • Model was developed in V18.  Due to changes in the Simulator, the model would need to be revalidated for use in V20 and subsequent versions.

 Model Compound Files

  • v18_res_enfuviridine_simcyp_pan
  • v18_res_enfuviridine_simcyp_pan_sc_paed

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