Related Experiment Video
Updated: Jun 12, 2026

Rapid In Situ Hybridization using Oligonucleotide Probes on Paraformaldehyde-prefixed Brain of Rats with Serotonin Syndrome
Published on: September 23, 2015
[(3)H]lysergic acid diethylamide (LSD): differential agonist and antagonist binding properties at 5-HT receptor
A B Norman1, D R Nash, P R Sanberg
1Division of Neuroscience, Departments of Psychiatry, Physiology, Neurosurgery, Psychology and Anatomy, University of Cincinnati College of Medicine, 231 Bethesda Avenue, Cincinnati, OH 45267-0559, U.S.A.
Abstract:
[(3)H]Lysergic acid diethylamide (LSD) in the presence of 40 nM ketanserin labeled the 5-HT(1A) receptor subtype in rat hippocampal membranes. In the presence of guanosine triphosphate (GTP), the B(max) and affinity of [(3)H]LSD binding to the 5-HT(1A) binding site were significantly decreased. [(3)H]LSD in the presence of 40 nM WB4101 labeled the 5-HT(2) receptor subtype in homogenates of rat frontal cortex. In contrast to the effect on [(3)H]LSD binding to the 5-HT(1A) binding site, GTP produced no significant effect on either the B(max) or the K(D) of [(3)H]LSD binding to the 5-HT(2) binding site. Competition of 5-HT for [(3)H]LSD binding to the 5-HT(2) binding site was best described by a computer-derived model assuming two binding sites. In the presence of GTP, the 5-HT competition curve was shifted significantly to the right with an approx. 3-fold increase in the IC(50). These binding characteristics are consistent with [(3)H]LSD acting as an antagonist at the 5-HT(2) receptor which has multiple affinity states for agonists and is coupled to a guanine nucleotide regulatory subunit. Thus, [(3)H]LSD has binding characteristics consistent with it acting as an agonist at the 5-HT(1A) receptor subtype but as an antagonist at the 5-HT(2) receptor subtype in rat brain.
More Related Videos
Related Concept Videos
Antipsychotic Drugs: Typical and Atypical Agents
Adrenergic Agonists: Chemistry and Structure-Activity Relationship
Aromatic ring substitutions: Substituting the aromatic ring with –OH groups at positions 3 and 4 yields catecholamines (e.g., epinephrine), which have a high affinity for adrenoceptors. Hydrogen bonding between –OH groups and receptors enhances adrenergic activity.
Separation of the aromatic...
Drug-Receptor Interaction: Agonist
Agonists can bind to receptors in different ways. Some agonists bind directly to the receptor's active site, mimicking the endogenous ligand's action.
Ligand-Gated Ion Channel Receptor: Gating Mechanism
CNS Stimulants: Psychedelic Agents
Drug-Receptor Interaction: Antagonist
Antagonists can be classified as competitive or noncompetitive based on their...

