Journal of Neurochemistry · 1990 · 129 citations · 37 references
ImmunologyCyclosporin ACerebral Vascular RegulationMolecular PharmacologyCerebrospinal FluidMembrane TransportBrain InjuryNeurologyNeuroimmunologyHealth SciencesSodium HomeostasisNeuropharmacologyMembrane BiologyVascular BiologyBrain Uptake IndexCerebral Blood FlowReperfusion InjuryPharmacologyNeurological AssessmentBlood‐brain BarrierBlood–brain BarrierBlood‐csf BarriersPhysiologyPeptide TherapeuticClinical PharmacologyMedicinePharmacokinetics
Abstract: Uptake of the immunosuppressive lipophilic peptide cyclosporin A has been measured by a number of techniques. The brain uptake index (BUI) technique in the rat yields only a small BUI value that is not significantly different from that of sucrose and mannitol and is comparable to other published BUI values for this compound. Brain perfusion studies in the guinea pig produce a unidirectional cerebrovascular permeability constant ( K in ) of 1.2 ± 0.28 μg −1 min −1 for the hippocampus. Intravenous bolus injection techniques also in the guinea pig characteristically produce a larger K in value of 2.53 ± 0.38 μg −1 min −1 for the same brain region, even after a correction for the inulin space of the tissue has been made. Apparent penetration of cyclosporin A into the cerebrospinal fluid (CSF) determined with the intravenous bolus injection technique is small with a K in of 0.79 ± 0.07 μ g −1 min −1 . However it is suggested that the radioactivity present in CSF is largely tritiated water. Studies with cultured cerebral endothelial cells from the rat have also been carried out and show that the cultured cells take up and accumulate cyclosporin A in vitro, achieving a tissue‐to‐medium ratio of 20 after 25 min of incubation. It is suggested that cyclosporin A is primarily taken up from lipoprotein at the blood‐brain interface but, because of tight junctions at the blood‐brain and blood‐CSF barriers, becomes effectively trapped in the cerebral endothelial cells and the choroid plexus.
37
Graphical Evaluation of Blood-to-Brain Transfer Constants from Multiple-Time Uptake Data
Clifford S. Patlak, Ronald G. Blasberg, Joseph D. Fenstermacher · Journal of Cerebral Blood Flow & Metabolism · 1983 · 3.6K citations · Full text
Engineering, Neurophysiological Biomarkers, Biomedical Engineering +23
Carlos Cordon‐Cardo, James P. O’Brien, D Casals et al. · Proceedings of the National Academy of Sciences · 1989 · 1.7K citations · Full text
Endothelial Cell Expression, Endothelial Cells, Pathology +19