Literature DB >> 28281195

Microdialysis: the Key to Physiologically Based Model Prediction of Human CNS Target Site Concentrations.

Yumi Yamamoto1, Meindert Danhof1, Elizabeth C M de Lange2.   

Abstract

Despite the enormous research efforts that have been put into the development of central nervous system (CNS) drugs, the success rate in this area is still disappointing. To increase the successful rate in the clinical trials, first the problem of predicting human CNS drug distribution should be solved. As it is the unbound drug that equilibrates over membranes and is able to interact with targets, especially knowledge on unbound extracellular drug concentration-time profiles in different CNS compartments is important. The only technique able to provide such information in vivo is microdialysis. Also, obtaining CNS drug distribution data from human subjects is highly limited, and therefore, we have to rely on preclinical approaches combined with physiologically based pharmacokinetic (PBPK) modeling, taking unbound drug CNS concentrations into account. The next step is then to link local CNS pharmacokinetics to target interaction kinetics and CNS drug effects. In this review, system properties and small-molecule drug properties that together govern CNS drug distribution are summarized. Furthermore, the currently available approaches on prediction of CNS pharmacokinetics are discussed, including in vitro, in vivo, ex vivo, and in silico approaches, with special focus on the powerful combination of in vivo microdialysis and PBPK modeling. Also, sources of variability on drug kinetics in the CNS are discussed. Finally, remaining gaps and challenges are highlighted and future directions are suggested.

Entities:  

Keywords:  brain extracellular fluid (brainECF); central nervous system (CNS); cerebrospinal fluid (CSF); mastermind research approach; physiologically based pharmacokinetic (PBPK) model

Mesh:

Year:  2017        PMID: 28281195     DOI: 10.1208/s12248-017-0050-3

Source DB:  PubMed          Journal:  AAPS J        ISSN: 1550-7416            Impact factor:   4.009


  185 in total

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3.  Quantification of relative cerebral blood flow change by flow-sensitive alternating inversion recovery (FAIR) technique: application to functional mapping.

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6.  The mega cisterna magna.

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Review 9.  Progress in monoamine oxidase (MAO) research in relation to genetic engineering.

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Review 10.  Prediction of brain delivery of ofloxacin, a new quinolone, in the human from animal data.

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  15 in total

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2.  Accumulation of uremic solutes in the cerebrospinal fluid in experimental acute renal failure.

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Review 5.  Microdialysis as an Important Technique in Systems Pharmacology-a Historical and Methodological Review.

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6.  In Vivo Studies of Drug BBB Transport: Translational Challenges and the Role of Brain Imaging.

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Review 8.  Analgosedation in paediatric severe traumatic brain injury (TBI): practice, pitfalls and possibilities.

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9.  Predicting Drug Concentration-Time Profiles in Multiple CNS Compartments Using a Comprehensive Physiologically-Based Pharmacokinetic Model.

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