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Drug transporters are pivotal in drug absorption, distribution, and excretion processes and should be included in physiologically-based pharmacokinetic models.
A realistic description of drug transport, a critical event of drug disposition, aids in model accuracy.
Understanding drug disposition involves studying influx/efflux and binding mechanisms in microstructures like membrane transporters, surface receptors, genomes, and enzymes.
The liver participates in drug transport and bile movement and requires compartment concepts to track drug transfers in and out.
Human liver microsomes help predict the metabolic clearance of drugs in the body.
A revised model was developed using pravastatin, a drug with hepatobiliary excretion mediated by two transporters.
The pravastatin model uses physiological parameters, subcellular fractions, and drug-related parameters to evaluate drug concentration-time profiles.
Drug transporters are critical in drug absorption, distribution, and excretion processes. They should be included in physiological-based pharmacokinet…
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