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    Dealing with variable drug exposure due to variable hepatic metabolism: a proof-of-concept application of liquid biopsy in renal impairment

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    Authors
    Rostami-Hodjegan, A.
    Al-Majdoub, Z. M.
    von Grabowiecki, Yannick
    Yee, K. L.
    Sahoo, Sudhakar
    Breitwieser, Wolfgang
    Galetin, A.
    Gibson, C.
    Achour, B.
    Affiliation
    Cancer Research UK Manchester Institute, University of Manchester, Manchester, UK.
    Issue Date
    2024
    
    Metadata
    Show full item record
    Abstract
    Precision dosing strategies require accounting for between-patient variability in pharmacokinetics (PK), affecting drug exposure, and in pharmacodynamics (PD), affecting response achieved at the same drug concentration at the site of action. Although liquid biopsy for assessing different levels of molecular drug targets has yet to be established, individual characterization of drug elimination pathways using liquid biopsy has recently been demonstrated. The feasibility of applying this approach in conjunction with modeling tools to guide individual dosing remains unexplored. In this study, we aimed to individualize physiologically-based pharmacokinetic (PBPK) models based on liquid biopsy measurements in plasma from 25 donors with different grades of renal function who were previously administered oral midazolam as part of a microdose cocktail. Virtual twin models were constructed based on demographics, renal function, and hepatic expression of relevant pharmacokinetic pathways projected from liquid biopsy output. Simulated exposure (AUC) to midazolam was in agreement with observed data (AFE = 1.38, AAFE = 1.78). Simulated AUC variability with three dosing approaches indicated higher variability with uniform dosing (14-fold) and stratified dosing (13-fold) compared with individualized dosing informed by liquid biopsy (fivefold). Further, exosome screening revealed mRNA expression of 532 targets relevant to drug metabolism and disposition (169 enzymes and 361 transporters). Data related to these targets can be used to further individualize PBPK models for pathways relevant to PK of other drugs. This study provides additional verification of liquid biopsy-informed PBPK modeling approaches, necessary to advance strategies that seek to achieve precise dosing from the start of treatment.
    Citation
    Rostami-Hodjegan A, Al-Majdoub ZM, von Grabowiecki Y, Yee KL, Sahoo S, Breitwieser W, et al. Dealing With Variable Drug Exposure Due to Variable Hepatic Metabolism: A Proof-of-Concept Application of Liquid Biopsy in Renal Impairment. Clinical pharmacology and therapeutics. 2024 May 13. PubMed PMID: 38738484. Epub 2024/05/13. eng.
    Journal
    Clinical Pharmacology Therapeutics
    URI
    http://hdl.handle.net/10541/627065
    DOI
    10.1002/cpt.3291
    PubMed ID
    38738484
    Additional Links
    https://dx.doi.org/10.1002/cpt.3291
    Type
    Article
    Language
    en
    ae974a485f413a2113503eed53cd6c53
    10.1002/cpt.3291
    Scopus Count
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