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Heat-Treated Limosilactobacillus fermentum PS150 Improves Sleep Quality with Severity-Dependent Benefits: A
Mon-Chien Lee1,2, Chao-Yuan Chen1,3, Ching-Yun Chen1
1Graduate Institute of Sports Science, National Taiwan Sport University, Taoyuan City 333325, Taiwan.
Abstract:
Background: Insomnia is prevalent and difficult to treat safely over the long term. Given the role of the microbiota-gut-brain axis in melatonin and hypothalamic-pituitary-adrenal (HPA) regulation, and preclinical evidence for Limosilactobacillus fermentum PS150, we evaluated whether a heat-treated formulation (HT-PS150) could improve sleep and modulate endocrine/circadian markers in adults with poor sleep. Methods: In a randomized, double-blind, placebo-controlled trial, 84 adults aged 20-60 years with PSQI ≥ 5 and ISI < 22 were assigned to receive either placebo or HT-PS150 for eight weeks. Outcomes included patient-reported sleep (PSQI, ISI), anxiety/depression (GAD-7, PHQ-9), quality of life (QLESQ-SF), gastrointestinal symptoms (VAS-GI), wrist actigraphy (Fitbit Inspire 3), and sleep-relevant biomarkers measured from urine, saliva, and/or blood samples (melatonin, cortisol, orexin, serotonin, GABA, and/or norepinephrine). Repeated measures were analyzed using generalized estimating equations. An exploratory proportional regulation analysis classified individual biomarker changes as up- or down-regulated and compared proportions between study arms. Per-protocol analyses required ≥80% compliance. Results: Improvements in the primary outcomes, PSQI and ISI, were observed over time in both groups, while no significant group × time interactions were detected. In exploratory proportional analyses, a higher proportion of participants in the HT-PS150 group exhibited up-regulated nocturnal melatonin secretion and improved daytime plasma orexin levels, as well as a tendency toward greater reductions in nocturnal salivary cortisol compared with placebo. In subgroup analyses with higher baseline insomnia severity (ISI ≥ 8), HT-PS150 was associated with greater improvements in PSQI (notably sleep duration and efficiency) and reduction in anxiety (GAD-7) upon post hoc testing. Conclusions: Although group mean scores on sleep symptom scales did not differ significantly in the full cohort, HT-PS150 appeared to modulate sleep-wake regulation by enhancing nocturnal melatonin secretion, attenuating HPA-axis activity, and stabilizing wakefulness. Clinical benefits were most evident among participants with greater baseline symptom burden, suggesting potential utility in more symptomatic populations.
Insights
Heat-treated Limosilactobacillus fermentum (HT-PS150) may improve sleep by enhancing melatonin and stabilizing wakefulness. Benefits were most apparent in individuals with severe insomnia and anxiety symptoms.
Area of Science:
- Microbiology
- Neuroscience
- Endocrinology
Background:
- Insomnia is a common sleep disorder with limited long-term safe treatment options.
- The microbiota-gut-brain axis influences melatonin and hypothalamic-pituitary-adrenal (HPA) regulation.
- Preclinical studies suggest Limosilactobacillus fermentum PS150 may impact sleep regulation.
Purpose of the Study:
- To evaluate the efficacy of a heat-treated formulation (HT-PS150) in improving sleep in adults with poor sleep.
- To assess the impact of HT-PS150 on endocrine and circadian rhythm markers.
- To explore the modulation of sleep-related biomarkers and symptom burden.
Main Methods:
- A randomized, double-blind, placebo-controlled trial involving 84 adults with poor sleep.
- Participants received either placebo or HT-PS150 for eight weeks.
- Outcomes included patient-reported sleep, anxiety, depression, quality of life, actigraphy, and biomarkers (melatonin, cortisol, orexin).
Main Results:
- No significant differences in primary sleep outcome scales (PSQI, ISI) between groups in the full cohort.
- Exploratory analyses showed HT-PS150 up-regulated nocturnal melatonin and improved daytime orexin levels.
- Subgroup analysis revealed greater improvements in sleep quality (PSQI) and anxiety (GAD-7) with HT-PS150 in participants with higher baseline insomnia severity.
Conclusions:
- HT-PS150 demonstrated a potential to modulate sleep-wake regulation by enhancing melatonin and attenuating HPA-axis activity.
- The intervention showed promise in stabilizing wakefulness and providing clinical benefits for more symptomatic individuals.
- Further research may validate HT-PS150 for specific populations experiencing significant insomnia and anxiety.
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