Agonism Antagonism

Agonism and antagonism describe how drugs or endogenous ligands influence biological receptors, providing a foundation for understanding therapeutic effects and adverse responses in clinical pharmacology. An agonist binds to a receptor and activates signaling, whereas an antagonist binds without activating it and reduces or prevents the action of an agonist; partial agonists produce a limited response and may oppose stronger agonists when they compete for the same receptor. These interactions shape dose-response relationships, drug efficacy, and treatment selection, helping clinicians manage pain, cardiovascular disease, respiratory disorders, and other conditions while anticipating drug interactions and effects of receptor blockade or overstimulation.

Agonism Antagonism - Related Videos

Education

JoVE Core - Pharmacokinetics and Pharmacodynamics
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Agonism and Antagonism: Quantification

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2024

When drugs are administered, they can elicit either an agonist or antagonist effect on the body. Agonism occurs when a drug activates a specific receptor, triggering a biological response. On the other hand, antagonism happens when a drug binds to the same receptors but blocks their activation, thereby preventing a biological response. To quantify these effects, researchers use a dose-response curve, which provides valuable information about the potency and efficacy of a drug. Potency refers to...

Education

JoVE Core - Pharmacology
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Combined Effects of Drugs: Antagonism

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2025

The combined effects of drugs can result in various interactions, of which an important type is antagonism. Antagonism is a mechanism where one drug inhibits or counteracts the effects of another drug. Antagonism can occur through various means, including receptor binding, allosteric modulation, functional interaction, chemical reactions, and pharmacokinetic processes. The most common type is receptor antagonism, where one drug acts as an antagonist to block the effects of another drug by...

Research

JoVE Journal - Immunology and Infection
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Use of Single Chain MHC Technology to Investigate Co-agonism in Human CD8+ T Cell Activation

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Cited by 6 •

2019

This protocol describes the use of single chain MHC class I complexes to investigate molecular interactions in human CD8+ T cell activation: generation of engineered antigen presenting cells expressing single chain constructs, culture of human CD8+ T cell clone and T cell activation experiments.

Research

JoVE Journal - Biochemistry

Measuring G-protein-coupled Receptor Signaling via Radio-labeled GTP Binding

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Cited by 11 •

2017

Guanosine triphosphate (GTP) binding is one of the earliest events in G-Protein-Coupled Receptor (GPCR) activation. This protocol describes how to pharmacologically characterize specific GPCR-ligand interactions by monitoring the binding of the radio-labeled GTP analog, [35S]guanosine-5'-O-(3-thio)triphosphate ([35S]GTPγS), in response to a ligand of interest.

A Technique to Assess the Inhibitory Effect of Toxin Exposure on Miniature Excitatory Postsynaptic Currents (mEPSCs)

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2025

The video demonstrates the electrophysiological analysis of embryonic stem cell-derived neurons after exposure to neurotoxins. Treating these neurons with botulinum neurotoxins reduces the frequency of spontaneous miniature excitatory post-synaptic currents, confirming inhibition of synaptic transmission.

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