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Analiza Scatchard×Cinetică Michaelis-Menten×Analiza Schild×
DomeniuFarmacologieFarmacologieFarmacologie
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Anul apariției194919131947
Autorul originalGeorge ScatchardLeonor Michaelis and Maud MentenHenry Schild
Tipbinding affinity measurementmechanistic modelantagonism quantification
Sursa seminalăScatchard, G. (1949). The attractions of proteins for small molecules and ions. Annals of the New York Academy of Sciences, 51(4), 660-672. DOI ↗Michaelis, L., & Menten, M. L. (1913). Die Kinetik der Invertinwirkung. Biochemische Zeitschrift, 49, 333-369. link ↗Schild, H. O. (1947). pA, a new scale for the measurement of drug antagonism. Journal of Physiology, 106(3), 337-357. DOI ↗
Denumiri alternativeScatchard plot, binding analysis, Kd determinationMM kinetics, Michaelis constant, VmaxSchild plot, pA2
Înrudite323
RezumatScatchard analysis is a graphical method for determining ligand-receptor binding affinity (Kd) and binding capacity (Bmax) from binding data. Developed by George Scatchard in 1949, the Scatchard plot linearizes hyperbolic binding curves, enabling visual detection of multiple binding sites and quantitative parameter estimation.Michaelis-Menten kinetics describes the rate of enzyme-catalyzed reactions as a function of substrate concentration. Developed by Leonor Michaelis and Maud Menten in 1913, this foundational framework models enzyme catalysis through the rapid-equilibrium approximation and enables prediction of drug metabolism rates in pharmacokinetics.Schild analysis is a quantitative method for characterizing competitive receptor antagonism developed by Henry Schild in 1947. It uses dose-response curves in the presence and absence of antagonist to estimate the antagonist affinity constant (pA2), enabling standardized comparison of antagonist potency across drugs and experimental systems.
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ScholarGateCompară metode: Scatchard Analysis · Michaelis-Menten Kinetics · Schild Analysis. Preluat la 2026-06-18 de pe https://scholargate.app/ro/compare