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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Pharmaceutical research 17 (2000), S. 127-134 
    ISSN: 1573-904X
    Keywords: in-situ head perfusion ; pharmacokinetics ; red blood cells ; water
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract Purpose. To develop a viable, single pass rat head perfusion modeluseful for pharmacokinetic studies. Methods. A viable rat head preparation, perfused with MOPS-bufferedRinger's solution, was developed. Radiolabelled markers (red bloodcells, water and sucrose) were injected in a bolus into the internalcarotid artery and collected from the posterior facial vein over 28minutes. The double inverse Gaussian function was used to estimatethe statistical moments of the markers. Results. The viability of the perfusion was up to one hour, with optimalperfusate being 2% bovine serum albumin at 37°C, pH 7.4. Thedistribution volumes for red blood cells, sucrose and water (from all studies,n = 18) were 1.0 ± 0.3ml, 6.4 ± 4.2ml and 18.3 ± 11.9ml, respectively.A high normalised variance for red blood cells (3.1 ± 2.0) suggestsa marked vascular heterogeneity. A higher normalised variance forwater (6.4 ± 3.3) is consistent with additional diffusive/permeabilitylimitations. Conclusions. Analysis of the physiological parameters derived fromthe moments suggested that the kinetics of the markers were consistentwith distribution throughout the head (weight 25g) rather than justthe brain (weight 2g). This model should assist in studying solutepharmacokinetics in the head.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of pharmacokinetics and pharmacodynamics 25 (1997), S. 477-505 
    ISSN: 1573-8744
    Keywords: hepatic elimination models ; metabolite kinetics ; dispersion model ; distributed tube model ; area under curve ; mean transit time ; normalized variance ; hepatocyte permeability ; impulse-response
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract Predicted area under curve (AUC), mean transit time (MTT) and normalized variance (CV2 ) data have been compared for parent compound and generated metabolite following an impulse input into the liver. Models studied were the well-stirred (tank) model, tube model, a distributed tube model, dispersion model (Danckwerts and mixed boundary conditions) and tanks-in-series model. It is well known that discrimination between models for a parent solute is greatest when the parent solute is highly extracted by the liver. With the metabolite, greatest model differences for MTT and CV2 occur when parent solute is poorly extracted. In all cases the predictions of the distributed tube, dispersion, and tanks-in-series models are between the predictions of the tank and tube models. The dispersion model with mixed boundary conditions yields identical predictions to those for the distributed tube model (assuming an inverse gaussian distribution of tube transit times). The dispersion model with Danckwerts boundary conditions and the tanks-in series models give similar predictions to the dispersion (mixed boundary conditions) and the distributed tube. The normalized variance for parent compound is dependent upon hepatocyte permeability only within a distinct range of permeability values. This range is similar for each model but the order of magnitude predicted for normalized variance is model dependent. Only for a one-compartment system is the MTT for generated metabolite equal to the sum of MTTs for the parent compound and preformed metabolite administered as parent.
    Type of Medium: Electronic Resource
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