Abstract Introduction People with idiopathic hypersomnia often experience sleep inertia, characterized by profound difficulty waking up with grogginess, disorientation, and cognitive impairment immediately after awakening. This post-hoc analysis of the DUET study (NCT05875974) evaluated objective and subjective sleep inertia in participants with idiopathic hypersomnia taking low-sodium oxybate (LXB; Xywav®) stratified by patient-reported ideal nighttime sleep duration (with 9h and without ≤9h long sleep need LSN), based on Idiopathic Hypersomnia Severity Scale (IHSS) item 1. Methods DUET was a phase 4, prospective, open-label study of LXB with baseline (BL), titration/optimization, stable-dose, and end-of-treatment (EOT) periods. Exploratory outcomes included Psychomotor Vigilance Test (PVT; objective performance impairment) and Karolinska Sleepiness Scale (KSS; subjective sleepiness), administered BL and EOT, in the morning after overnight polysomnogram. The 10-minute PVT was completed at 10, 40, and 90 minutes after awakening. The KSS, a single-item, 9-point scale, was completed upon awakening and immediately before/after PVT assessments. Separate nonlinear, mixed-effects regression models were applied to PVT lapses and KSS ratings to estimate objective and subjective sleep inertia magnitudes, respectively, in LSN subgroups, along with sleep inertia dissipation time constants for the overall cohort. Treatment-emergent adverse events (TEAEs) were assessed. Results Of 46 enrolled participants with idiopathic hypersomnia, 45 had BL IHSS data; 24 reported LSN and 21 reported no LSN. Most (with/without LSN) were female (100.0%/61.9%) and White (91.7%/76.2%); 20/24 and 19/21 completed the study. Based on PVT lapses, objective sleep inertia ±SE (with/without LSN) at BL was 17.0±4.2/4.2±2.8, and at EOT was 0.0±na/2.0±0.9 (BL-to-EOT changes 95% CI: −17.0 −25.5, −8.5 and −2.2 −6.9, 2.5). Based on KSS, subjective sleep inertia ±SE (with/without LSN) at BL was 6.5±0.3/5.1±0.5, and at EOT was 0.81±0.5/1.5±0.6 (BL-to-EOT changes 95% CI: −5.7 −6.7, −4.7 and −3.5 −4.5, −2.6). Sleep inertia dissipation time constants ±SE were 2.7±1.1h (PVT) and 13.9±3.8h (KSS). TEAEs were consistent with the known LXB safety profile. Conclusion Participants with idiopathic hypersomnia experienced subjective and objective sleep inertia at BL, with prolonged dissipation after awakening. Objective BL sleep inertia was particularly severe in participants with LSN (9h). After LXB treatment, notable improvements in objective and subjective sleep inertia were observed for both subgroups. Support (if any) Jazz Pharmaceuticals
Nichols et al. (Fri,) studied this question.
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