Scinovex
articleTop 10% cited

Graphical Analysis of Reversible Radioligand Binding from Time—Activity Measurements Applied to [<i>N</i>-<sup>11</sup>C-Methyl]-(−)-Cocaine PET Studies in Human Subjects

Journal of Cerebral Blood Flow & Metabolism · 1990 · Vol. 10(5) · pp. 740–747
Jean LoganJoanna S. FowlerNora D. VolkowAlfred P. WolfStephen L. DeweyDavid J. SchlyerRobert MacGregorRobert HitzemannB. BendriemS. John GatleyDavid R. Christman

Abstract

A graphical method of analysis applicable to ligands that bind reversibly to receptors or enzymes requiring the simultaneous measurement of plasma and tissue radioactivities for multiple times after the injection of a radiolabeled tracer is presented. It is shown that there is a time t after which a plot of integral of t0ROI(t')dt'/ROI(t) versus integral of t0Cp(t')dt'/ROI(t) (where ROI and Cp are functions of time describing the variation of tissue radioactivity and plasma radioactivity, respectively) is linear with a slope that corresponds to the steady-state space of the ligand plus the plasma volume,.Vp. For a two-compartment model, the slope is given by lambda + Vp, where lambda is the partition coefficient and the intercept is -1/[kappa 2(1 + Vp/lambda)]. For a three-compartment model, the slope is lambda(1 + Bmax/Kd) + Vp and the intercept is -[1 + Bmax/Kd)/k2 + [koff(1 + Kd/Bmax)]-1) [1 + Vp/lambda(1 + Bmax/Kd)]-1 (where Bmax represents the concentration of ligand binding sites and Kd the equilibrium dissociation constant of the ligand-binding site complex, koff (k4) the ligand-binding site dissociation constant, and k2 is the transfer constant from tissue to plasma). This graphical method provides the ratio Bmax/Kd from the slope for comparison with in vitro measures of the same parameter. It also provides an easy, rapid method for comparison of the reproducibility of repeated measures in a single subject, for longitudinal or drug intervention protocols, or for comparing experimental results between subjects. Although the linearity of this plot holds when ROI/Cp is constant, it can be shown that, for many systems, linearity is effectively reached some time before this. This analysis has been applied to data from [N-methyl-11C]-(-)-cocaine ([11C]cocaine) studies in normal human volunteers and the results are compared to the standard nonlinear least-squares analysis. The calculated value of Bmax/Kd for the high-affinity binding site for cocaine is 0.62 +/- 0.20, in agreement with literature values.

Medical Imaging Techniques and ApplicationsRadiopharmaceutical Chemistry and ApplicationsReceptor Mechanisms and SignalingDissociation constantRadioligandLigand (biochemistry)ChemistryBinding potentialDissociation (chemistry)Analytical Chemistry (journal)ReceptorStereochemistryChromatography

MeSH terms

BrainCarbon RadioisotopesCocaineHumansLigandsModels, NeurologicalReceptors, DopamineTomography, Emission-ComputedLinear Models
Citations
1,512
FWCI
4.43
field-weighted impact
References
16
Percentile
95%
vs. same field & year
Citations per year
Cited by
Kinetic Modeling of Amyloid Binding in Humans using PET Imaging and Pittsburgh Compound-B
Journal of Cerebral Blood Flow & Metabolism · 2005 · 716 citations
Distribution Volume Ratios without Blood Sampling from Graphical Analysis of PET Data
Journal of Cerebral Blood Flow & Metabolism · 1996 · 1,541 citations
Positron Emission Tomography Compartmental Models
Journal of Cerebral Blood Flow & Metabolism · 2001 · 511 citations
Decreases in Dopamine Receptors but not in Dopamine Transporters in Alcoholics
Alcoholism Clinical and Experimental Research · 1996 · 611 citations
References
Graphical Evaluation of Blood-to-Brain Transfer Constants from Multiple-Time Uptake Data. Generalizations
Journal of Cerebral Blood Flow & Metabolism · 1985 · 1,694 citations
Graphical Evaluation of Blood-to-Brain Transfer Constants from Multiple-Time Uptake Data
Journal of Cerebral Blood Flow & Metabolism · 1983 · 3,589 citations
Numerical recipes: the art of scientific computing
Analytica Chimica Acta · 1987 · 3,228 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.