Back

Effects of sub-anesthetic oro-mucosal dexmedetomidine on sleep in humans: A pharmacokinetics-pharmacodynamics study

Schnider, L. K.; Ratajczak, M.; Wespi, R.; Kientsch, J.; Bavato, F.; Marten, L.; Kost, J.; Puchkov, M.; Eicher, C.; Boxler, M.; Voegel, C.; Bosch, O. G.; van Someren, E.; Dornbierer, D.; Landolt, H.-P.

2024-08-22 pharmacology and therapeutics
10.1101/2024.07.03.24309892 medRxiv
Show abstract

BackgroundThe locus coeruleus noradrenergic (LC-NE) system may provide a potential new target for pharmacological insomnia treatment, particularly in patients suffering from elevated stress. The selective 2 noradrenergic agonist dexmedetomidine (DEX) attenuates LC-NE activity in sub{-} anesthetic doses, yet no adequate non-parental delivery systems of DEX are currently available. To examine the feasibility of oro-mucosal DEX administration, we developed two distinct - one sublingual and one buccal - oro-mucosal, fast-disintegrating DEX formulas tailored for self{-} administration. Here we established their pharmacokinetic and pharmacodynamic (PK-PD) profiles. MethodsIn two separate studies in 8 male good sleepers and 17 men with subclinical insomnia, we administered sub-anesthetic doses (20 & 40 {micro}g) of the two formulas following a randomized, double-blind, placebo-controlled, cross-over design. We complemented the PK assessments with all{-} night polysomnography, nocturnal cortisol and melatonin measurements, assessments of cardiovascular functions during and after sleep, cortisol awakening response, and post-awakening examination of subjective state and vigilance. ResultsParticularly buccal DEX was rapidly absorbed and exhibited excellent dose-proportionality with minimal between-subject variation in exposure. In poor sleepers, 40 {micro}g of buccal DEX shortened the sleep latency by 11 min, increased the time spent in non-rapid-eye-movement sleep by 38 min, and elevated electroencephalographic slow wave energy (0.75-4.0 Hz) in the first half of the night by 23 % (Pall < 0.05). Rapid-eye-movement sleep latency was dose-dependently prolonged (20 {micro}g: 48 min; 40 {micro}g: 117 min; Pall < 0.01). Nocturnal cortisol, melatonin and heart rate, and morning cortisol were not significantly affected by DEX, nor did post-awakening orthostatic regulation, subjective sleepiness and mood, and psychomotor vigilance differ among the conditions. ConclusionsThe favorable PK-PD profile of oro-mucosal DEX delivery warrants further dose-finding and clinical studies, to establish the exact roles of 2 receptor agonism in pharmacological sleep enhancement and as possible novel mechanism to alleviate stress-related insomnia.

Matching journals

The top 8 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.