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physiologically-based pharmacokinetic (pbpk) modelling tool  (Simcyp)

 
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    Structured Review

    Simcyp physiologically-based pharmacokinetic (pbpk) modelling tool
    Physiologically Based Pharmacokinetic (Pbpk) Modelling Tool, supplied by Simcyp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/physiologically-based+pharmacokinetic+(pbpk)+modelling+tool/physiologically+based+pharmacokinetic++pbpk++model/pmc09961156-135-25-28
    Average 90 stars, based on 1 article reviews
    physiologically-based pharmacokinetic (pbpk) modelling tool - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Dissolution:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Clinical Proteomics:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    In Vitro:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Software:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Binding Assay:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Permeability:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Solubility:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Diffusion-based Assay:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Capsules:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    In Vivo:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.

    Derivative Assay:

    Article Title: Precision dosing-based optimisation of paroxetine during pregnancy for poor and ultrarapid CYP2D6 metabolisers: a virtual clinical trial pharmacokinetics study.
    Article Snippet: The physiologically based pharmacokinetic (PBPK) modelling tool Simcyp was utilised to conduct virtual clinical trials simulations in subjects (Simcyp Ltd, a Certara company, Sheffield, UK, Version 17).

    Article Title: Virtual Clinical Trials Guided Design of an Age-Appropriate Formulation and Dosing Strategy of Nifedipine for Paediatric Use
    Article Snippet: In order to pragmatically assess the translation of resultant dissolution profiles to the paediatric populations, virtual clinical trials simulations were conducted using the physiologically-based pharmacokinetic (PBPK) modelling tool Simcyp in both adults and children (Simcyp Ltd., a Certara company, Sheffield, UK, Version 21).

    Article Title: On the Usefulness of Two Small-Scale In Vitro Setups in the Evaluation of Luminal Precipitation of Lipophilic Weak Bases in Early Formulation Development
    Article Snippet: Precipitation parameters estimated from the in vitro data were inputted into the Simcyp ® physiologically based pharmacokinetic (PBPK) modelling software and simulated human plasma profiles were compared with previously published pharmacokinetic data.



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