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Drug Combination Studies and Their Synergy Quantification Using the Chou-Talalay Method

Cancer Research · 2010 · Vol. 70(2) · pp. 440–446
Ting‐Chao Chou

Abstract

This brief perspective article focuses on the most common errors and pitfalls, as well as the do's and don'ts in drug combination studies, in terms of experimental design, data acquisition, data interpretation, and computerized simulation. The Chou-Talalay method for drug combination is based on the median-effect equation, derived from the mass-action law principle, which is the unified theory that provides the common link between single entity and multiple entities, and first order and higher order dynamics. This general equation encompasses the Michaelis-Menten, Hill, Henderson-Hasselbalch, and Scatchard equations in biochemistry and biophysics. The resulting combination index (CI) theorem of Chou-Talalay offers quantitative definition for additive effect (CI = 1), synergism (CI < 1), and antagonism (CI > 1) in drug combinations. This theory also provides algorithms for automated computer simulation for synergism and/or antagonism at any effect and dose level, as shown in the CI plot and isobologram, respectively.

Computational Drug Discovery Methodsthermodynamics and calorimetric analysesProtein Structure and DynamicsAntagonismDrugDrug actionPharmacologyApplied mathematicsHill differential equationSpecificationAction (physics)Drug interactionMathematics

MeSH terms

AlgorithmsAnimalsDrug SynergismDrug Therapy, CombinationPharmaceutical PreparationsHumans
Citations
5,611
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References
Analysis of combined drug effects: a new look at a very old problem
Trends in Pharmacological Sciences · 1983 · 615 citations
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