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4.8: Dose-Response Relationship: Overview

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Pharmacology

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Dose-Response Relationship: Overview
 
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4.8: Dose-Response Relationship: Overview

Agonists can bind with and activate receptors, resulting in the formation of drug-receptor complexes. Once formed, these complexes catalyze many biochemical processes at the cellular level and subsequently induce a pharmacologic response. The degree of response is directly proportional to the fraction of activated receptors, which in turn, depends on the concentration of the drug at the receptor site as well as the sensitivity of the receptor. An increase in the administered dose contributes to increased drug concentration at the receptor site, enhancing the strength of the biological response. The graded dose-response curve is a graphical representation that showcases the correlation between the drug's concentration and the extent of the resultant response. The hyperbolic curve demonstrates that the magnitude of the response gradually increases with the increase in drug dose. The maximum effect of the drug is observed once the receptors attain complete saturation. Sigmoidal curves emerge upon the semi-logarithmic plotting of hyperbolic curves, and these curves are used for depicting drug efficacy and potency. Potency is gauged by evaluating the drug concentration required to reach half of the maximum effect, represented by the EC50 value. Conversely, efficacy is a measure of the drug's ability to produce a maximal therapeutic effect, which is determined by the Emax value.

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Dose-response Relationship Agonists Drug-receptor Complexes Biochemical Processes Pharmacologic Response Activated Receptors Drug Concentration Sensitivity Of The Receptor Administered Dose Biological Response Graded Dose-response Curve Hyperbolic Curve Maximum Effect Complete Saturation Sigmoidal Curves Semi-logarithmic Plotting Drug Efficacy Drug Potency EC50 Value Drug Concentration Required Maximum Effect Emax Value

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