Related Experiment Video
Updated: Aug 11, 2026

Testing Animal Anxiety in Rats: Effects of Open Arm Ledges and Closed Arm Wall Transparency in Elevated Plus Maze Test
Published on: June 29, 2018
Pharmacodynamic interaction between midazolam and a specific benzodiazepine antagonist in humans
Abstract:
The pharmacodynamic interaction between midazolam and the specific benzodiazepine antagonist Ro 15-1788 has been investigated in six healthy male volunteers. Hypnotic steady-state concentrations of midazolam (55 +/- 11 ng/mL; mean +/- SD) have been achieved rapidly by an intravenous bolus of 0.07 mg/kg and maintained by an individual but constant infusion rate of 0.025 to 0.04 mg/kg/hr for eight hours. Following a two-hour control period, the antagonist (2.5 mg) or the solvent were injected double-blind in random order. Three hours later, the other medication was administered. Whereas plasma levels of midazolam remained constant throughout the complete eight-hour trial (Clearance = 670 +/- 96 mL/min) concentrations of Ro 15-1788 declined rapidly with an elimination half-life between 0.7 and 1.8 hours and a total plasma clearance of 702 +/- 235 mL/min. Concentrations of Ro 15-1788 approached the analytic limit of 2 ng/mL within three hours. The pharmacodynamic response to midazolam and the antagonist was assessed by a sedation index using visual analogue scales, reaction time (RT) measurements, and transformed Fourier analysis of the power spectrum of the recorded electroencephalogram (EEG). About 30 to 45 seconds following the injection of Ro 15-1788, hypnotic action of midazolam was completely reversed as visualized by return to alpha rhythm in the EEG, shortening of prolonged RT, and normalization of the elevated sedation index. The antagonistic action lasted for about two to three hours. The abrupt arousal from sleep was not associated with any unpleasant sensations, however, three subjects experienced a profound perspiration for about ten minutes following the injection of Ro 15-1788.(ABSTRACT TRUNCATED AT 250 WORDS)
More Related Videos
07:02A Computerized Test Battery to Study Pharmacodynamic Effects on the Central Nervous System of Cholinergic Drugs in Early Phase Drug Development
Published on: February 11, 2019
07:16Methods for the Discovery of Novel Compounds Modulating a Gamma-Aminobutyric Acid Receptor Type A Neurotransmission
Published on: August 16, 2018
Related Concept Videos
Drug-Receptor Interaction: Antagonist
Antagonists can be classified as competitive or noncompetitive based on their...
CNS Depressants: Barbiturates and Benzodiazepines
Anxiolytic Drugs: Benzodiazepines and Buspirone
Sedatives and Hypnotics: Overview
Sedative-hypnotics are categorized into barbiturates, benzodiazepines (BZDs), and non-benzodiazepines or Z-drugs. These drugs work by suppressing central nervous system activity, and this suppression is dose-dependent. Older sedative medications, like barbiturates, follow a linear curve in...
Sedatives and Hypnotics Drugs: Benzodiazepines
Benzodiazepines work by enhancing the effects of the inhibitory neurotransmitter GABA. They bind to the GABAA receptor, increasing its affinity for GABA, which opens chloride...
Sedatives and Hypnotics Drugs: Miscellaneous Agents
Melatonin congeners like ramelteon (Rozerem) and tasimelteon (Hetlioz) selectively bind to melatonin receptors (MT1 and MT2) and thus mimic the actions of melatonin, a hormone that regulates sleep-wake cycles. Tasimelteon is primarily used for non-24-hour sleep-wake disorder, common in blind patients. They are also used to treat conditions like insomnia...