1.Antidepressant effects of Ziziphi Spinosae Semen extract on depressive-like behaviors in sleep deprivation rats based on integrated serum metabolomics and gut microbiota.
Liang-Lei SONG ; Ya-Yu SUN ; Ze-Jia NIU ; Jia-Ying LIU ; Xiang-Ping PEI ; Yan YAN ; Chen-Hui DU
China Journal of Chinese Materia Medica 2025;50(16):4510-4524
Based on serum metabolomics and gut microbiota technology, this study explores the effects and mechanisms of the water extract of Ziziphi Spinosae Semen(SZRW) and the petroleum ether extract of Ziziphi Spinosae Semen(SZRO) in improving depressive-like behaviors induced by sleep deprivation. A modified multi-platform water environment method was employed to establish a rat model of sleep deprivation. Depressive-like behaviors in rats were assessed through the sucrose preference test and forced swim test. The expression of barrier proteins, such as Occludin, in the colon was determined by immunofluorescence. UPLC-Q-Orbitrap MS was utilized to analyze the serum metabolic profiles of sleep-deprived rats, screen for differential metabolites, and analyze metabolic pathways. The diversity of the gut microbiota was detected using 16S rRNA gene sequencing. Spearman correlation coefficient analysis was conducted to assess the correlation between differential metabolites and gut microbiota. The results indicated that SZRO significantly increased the sucrose preference index and decreased the immobility time in the forced swim test in rats. A total of 34 differential metabolites were identified through serum metabolomics. SZRW and SZRO shared five metabolic pathways, including phenylalanine metabolism. SZRW uniquely featured taurine and hypotaurine metabolism, while SZRO uniquely featured linoleic acid metabolism and tyrosine metabolism. Correlation analysis revealed that SZRW could upregulate the abundance of Bilophila, promoting the production of indole-3-propionic acid and subsequently upregulating the expression levels of intestinal tight junction proteins such as ZO-1, Occludin, and Claudin-1. SZRO could indirectly influence metabolic pathways such as arginine metabolism and linoleic acid metabolism by upregulating the abundance of gut microbiota such as Coprococcus and Eubacterium species. Both SZRW and SZRO can regulate endogenous metabolism, including amino acids, energy, and lipids, alter the gut microbiota microecology, and improve depressive-like behaviors. SZRO demonstrated superior effects in regulating metabolic pathways and gut microbiota structure compared to SZRW. The findings of this study provide a scientific basis for elucidating the pharmacodynamic material basis of Ziziphi Spinosae Semen.
Animals
;
Rats
;
Gastrointestinal Microbiome/drug effects*
;
Male
;
Metabolomics
;
Drugs, Chinese Herbal/administration & dosage*
;
Depression/blood*
;
Rats, Sprague-Dawley
;
Sleep Deprivation/complications*
;
Ziziphus/chemistry*
;
Antidepressive Agents/administration & dosage*
;
Behavior, Animal/drug effects*
;
Humans
2.High expression of miR-124 improves cognitive function of sleep-deprived rats by modulating the PI3K/AKT signaling pathway.
Yuejiao PEI ; Huimin LIU ; Yu XIN ; Bo LIU
Journal of Southern Medical University 2025;45(2):340-346
OBJECTIVES:
To explore the molecular mechanism by which miR-124 affects cognitive function of sleep-deprived rats.
METHODS:
Fifty-four adult male SD rats were randomized into 6 groups (n=9), including a normal control group, a sleep deprivation (SD) model group, and 4 intracerebral microinjection groups in which the rats were subjected to stereotactic injection of miR-124 agomir, miR-124 agomir NC, miR-124 antagomir, or miR-124 antagomir into the lateral ventricle 7 days before SD modeling. The cognitive functions of the rats were evaluated with Morris water maze test, and pathological changes in the hippocampus were observed using HE staining. The expression level of miR-124 in hippocampal tissues of the rats was detected with qRT-PCR, and the expression level of apoptosis-related proteins and signaling pathway proteins were determined using Western blotting.
RESULTS:
In Morris water maze test, the SD rat models treated with miR-124 agomir showed a significantly shorter escape latency and fewer platform crossings with increased percentage of time and swimming distance in the fourth quadrant as compared with those in SD model group, while the rats treated with miR-124 antagomir exhibited worsened performance in the test. In the SD rat models, treatment with miR-124 agomir obviously lessened pathological changes in the hippocampus, while treatment with miR-124 antagomir significantly worsened the pathological changes. Compared with those in SD model group, the miR-124 agomir-treated rats showed an increased hippocampal expression of miR-124 with upregulated protein expressions of PI3K, p-AKT/AKT, and Bcl-2 and downregulated expressions of Bax and caspase-3 proteins, while rats treated with miR-124 antagomir showed significantly decreased hippocampal expression of miR-124 with lowered expressions of PI3K, p-AKT/AKT and Bcl-2 proteins and increased Bax and caspase-3 protein expressions.
CONCLUSIONS
High expression of miR-124 alleviates SD-induced cognitive decline and neuronal apoptosis in rats by activating the PI3K/AKT signaling pathway.
Animals
;
MicroRNAs/metabolism*
;
Signal Transduction
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Male
;
Rats, Sprague-Dawley
;
Hippocampus/metabolism*
;
Phosphatidylinositol 3-Kinases/metabolism*
;
Cognition
;
Rats
;
Sleep Deprivation/metabolism*
;
Apoptosis
;
Maze Learning
3.Modulating the Pronociceptive Effect of Sleep Deprivation: A Possible Role for Cholinergic Neurons in the Medial Habenula.
Xiang-Sha YIN ; Bai-Rong CHEN ; Xi-Chun YE ; Yun WANG
Neuroscience Bulletin 2024;40(12):1811-1825
Sleep deprivation has been shown to exacerbate pain sensitivity and may contribute to the onset of chronic pain, yet the precise neural mechanisms underlying this association remain elusive. In our study, we explored the contribution of cholinergic neurons within the medial habenula (MHb) to hyperalgesia induced by sleep deprivation in rats. Our findings indicate that the activity of MHb cholinergic neurons diminishes during sleep deprivation and that chemogenetic stimulation of these neurons can mitigate the results. Interestingly, we did not find a direct response of MHb cholinergic neurons to pain stimulation. Further investigation identified the interpeduncular nucleus (IPN) and the paraventricular nucleus of the thalamus (PVT) as key players in the pro-nociceptive effect of sleep deprivation. Stimulating the pathways connecting the MHb to the IPN and PVT alleviated the hyperalgesia. These results underscore the important role of MHb cholinergic neurons in modulating pain sensitivity linked to sleep deprivation, highlighting potential neural targets for mitigating sleep deprivation-induced hyperalgesia.
Animals
;
Habenula/physiology*
;
Sleep Deprivation/physiopathology*
;
Cholinergic Neurons/physiology*
;
Male
;
Hyperalgesia/physiopathology*
;
Rats, Sprague-Dawley
;
Rats
;
Interpeduncular Nucleus/physiology*
;
Pain Threshold/physiology*
;
Midline Thalamic Nuclei/physiology*
;
Neural Pathways/physiopathology*
4.Molecular mechanism of sleep deprivation-induced body injury and traditional Chinese medicine prevention and treatment: a review.
Dan YANG ; Yan SHI ; Yi-Xuan WANG ; Qian KANG ; Ming-Hui XIU ; Jian-Zheng HE
China Journal of Chinese Materia Medica 2023;48(21):5707-5718
Sleep occupies one-third of a person's lifetime and is a necessary condition for maintaining physiological function and health. With the increase in social and economic pressures, the growing use of electronic devices and the accelerated aging process of the population, insufficient sleep and its hazards have drawn widespread attention from researchers in China and abroad. Sleep deprivation refers to a decrease in sleep or a severe lack of sleep due to various reasons. Previous studies have found that sleep deprivation can cause extensive damage to the body, including an increased incidence and mortality rate of neuropathic diseases in the brain, cardiovascular diseases, imbalances in the gut microbiota, and other multi-organ diseases. The mechanisms underlying the occurrence of multi-system and multi-organ diseases due to sleep deprivation mainly involve oxidative stress, inflammatory responses, and impaired immune function in the body. According to traditional Chinese medicine(TCM), sleep deprivation falls into the category of sleepiness, and long-term sleepiness leads to Yin-Yang imbalance, resulting in the consumption of Qi and damage to the five Zang-organs. The appropriate treatment should focus on tonifying deficiency, reinforcing healthy Qi, and harmonizing Yin and Yang. TCM is characterized by a wide variety and abundant resources, and it has minimal side effects and a broad range of applications. Numerous studies have shown that TCM drugs and prescriptions not only improve sleep but also have beneficial effects on liver nourishment, intelligence enhancement, and kidney tonification, effectively preventing and treating the body injury caused by sleep deprivation. Given the increasing prevalence of sleep deprivation and its significant impact on body health, this article reviewed sleep deprivation-mediated body injury and its mechanism, summarized and categorized TCM compound prescriptions and single drugs for preventing and treating body injury, with the aim of laying the foundation for researchers to develop effective drugs for preventing and treating body injury caused by sleep deprivation and providing references for further exploration of the molecular mechanisms underlying the body injury caused by sleep deprivation.
Humans
;
Medicine, Chinese Traditional
;
Sleep Deprivation/drug therapy*
;
Sleepiness
;
Yin-Yang
;
China
;
Drugs, Chinese Herbal/therapeutic use*
5.The role of TLR4/NF-κB signaling pathway in sleep deprivation induced Meniere's disease.
Yuqi JIA ; Yongtao QU ; Xia XU ; Ce WANG ; Mingli GUO
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2023;37(10):790-795
Objective:By detecting the levels of proteins in the Toll-like receptor-4/nuclear factor-κB (TLR4/NF-κB) signaling pathway and downstream proinflammatory cytokines in peripheral blood of patients with Meniere's disease (MD), Pittsburgh Sleep Quality Index (PSQI) scores were collected to investigate the correlation between sleep disorders and MD and the role of TLR4/NF-κB signaling pathway in mediating sleep disorders inducing MD. Methods:Thirty-two MD patients and 20 family members of patients without middle ear and inner ear related diseases were selected. Basic data, PSQI and fasting peripheral blood of all subjects were collected. Enzyme linked immunosorbent assay.The levels of interleukin-1β(IL-1β), tumor necrosis factor-α(TNF-α), monocyte chemokine-1(MCP-1), Toll-like receptor 4(TLR4) and nuclear factor-κB(NF-κB) in peripheral blood were detected by ELISA, and the data were statistically analyzed. Results:①PSQI score of MD group was higher than that of normal control group, and the difference was statistically significant(P<0.01); The scores of every factors of PSQI in MD group were higher than those in normal control group, and the scores of factors 2, 4 and 6 were significantly different from those in normal control group. ②In the MD group, there were 18 patients with sleep disorders, with a prevalence rate of 56.25%, including 6 males with a prevalence rate of 50.00% and 12 females with a prevalence rate of 60.00%. ③The levels of five test indexes in MD group, sleep disorder group and non-sleep disorder group were higher than those in control group, and the levels of TLR4 and NF-κB in MD group were significantly different from those in control group(P<0.05). The levels of IL-1β, TNF-α, TLR4 and NF-κB in sleep disorder group were significantly different from those in control group(P<0.05). The levels of five test indexes in non-sleep disorder group were not statistically significant compared with those in control group. The levels of five test indexes in the MD sleep disorder group were higher than those in the MD group and the non-sleep disorder group, with no statistical significance. The levels of five test indexes in MD group were higher than those in non-sleep disorder group, with no statistical significance(P>0.05). Conclusion:①Sleep disorders may be one of the important predisposing factors of some MD, and the effects of sleep disorders on MD are different between the sexes. ②Sleep disorders may activate TLR4/NF-κB signaling pathway to induce MD. The selection of TLR4/NF-κB signaling pathway related proteins and downstream pro-inflammatory factor inhibitors to intervene MD may provide a new idea for protecting the hearing balance function of MD.
Female
;
Humans
;
Male
;
Meniere Disease
;
NF-kappa B/metabolism*
;
Signal Transduction
;
Sleep Deprivation
;
Toll-Like Receptor 4
;
Tumor Necrosis Factor-alpha/metabolism*
6.Influence of sleep fragmentation in infancy and toddler period on emotional and behavioral problem at the age of 6 years: a birth cohort study.
Yu Jiao DENG ; Yi Ding GUI ; Jian Fei LIN ; Qing Min LIN ; Guang Hai WANG ; Yan Rui JIANG ; Qi ZHU ; Yu ZHANG ; Fan JIANG
Chinese Journal of Pediatrics 2023;61(5):418-424
Objective: To investigate the influence of sleep fragmentation in infancy and toddler period on emotional and behavioral problems at the age of 6 years. Methods: Using a prospective cohort design, 262 children were extracted from mother-child birth cohort recruited from May 2012 to July 2013 in Renji Hospital, School of Medicine, Shanghai Jiao Tong University. Children's sleep and physical activities were assessed using actigraphy at 6, 12, 18, 24, and 36 months of age, from which the sleep fragmentation index (FI) at each follow-up point was calculated. Children's emotional and behavioral problems at 6 years of age were assessed using the strengths and difficulties questionnaire. Group-based trajectory model was applied to determine sleep FI in infancy and toddler period trajectory groups with Bayesian information criteria being used to determine the best fitting model. Children's emotional and behavioral problems between groups were examined with independent t test and linear regression models, etc. Results: A total of 177 children, with 91 boys and 86 girls, were included in the final analysis and were divided into 2 groups: high FI group (n=30) and low FI group (n=147). Compared with children in the low FI group, those in the high FI group presents with higher total difficulties score and higher hyperactivity or inattention score ((11.0±4.9) vs. (8.9±4.1), (4.9±2.7) vs. (3.7±2.3) scores, t=2.17, 2.23, both P<0.05, respectively), with the differences remaining significant after adjusting for covariates (t=2.08, 2.09, both P<0.05 respectively). Conclusion: High sleep fragmentation in infancy and toddler period is associated with more emotional and behavioral problems, especially hyperactivity or inattention problems, at 6 years of age.
Male
;
Female
;
Humans
;
Infant
;
Child, Preschool
;
Child
;
Cohort Studies
;
Problem Behavior/psychology*
;
Sleep Deprivation
;
Prospective Studies
;
Bayes Theorem
;
China
;
Surveys and Questionnaires
7.Study on homeostasis and circadian rhythm of attention performance of different chronotypes in sleep deprivation.
Jingqiang LI ; Qingfu WANG ; Lu ZHANG ; Xining ZHANG ; Yanru ZHOU ; Huanxi ZHANG
Journal of Biomedical Engineering 2022;39(2):248-256
Difference of chronotypes makes influence to cognitive performance of individuals in routine duties. In this paper, 55 subjects with different chronotypes were subjected to continuous sleep deprivation for 30 h by using the constant routine protocol, during which core body temperature was measured continuously, and subjective sleepiness self-rating and the performance of selective attention were measured hourly. The results showed that the phase difference of core body temperature has no significant difference, yet the amplitude and term difference among the three chronotypes are significant. There was an advance in phase between subjective sleepiness self-rating and core body temperature, and the self-rating sleepiness of evening type came the latest, and the self-rating sleepiness of morning type dissipated the fastest. The response time of selective attention showed a 2 h phase delay with subjective sleepiness self-rating. And the analysis of core body temperature showed that the later the chronotype was, the greater the phase delay was. The correct rate of selective attention of different chronotypes were inconsistent with delay of subjective sleepiness self-rating and core body temperature. We provide reference for industry, aviation, military, medical and other fields to make a more scientific scheduling/ shifting based on cognitive performance characteristics of different chronotypes.
Attention/physiology*
;
Circadian Rhythm/physiology*
;
Homeostasis
;
Humans
;
Sleep/physiology*
;
Sleep Deprivation
;
Sleepiness
8.Sleep deprivation affects sex hormones secretion by regulating the expression of the circadian clock gene in the hypothalamus and pituitary via the PI3K/Akt signaling pathway in pregnant rats.
Acta Physiologica Sinica 2022;74(4):534-540
Sleep deprivation (SD) has many deleterious health effects and occurs in more than 70% of pregnant women. However, the changes in sex hormones and relevant mechanisms after SD have not been well clarified. The aim of the present study was to explore the effects of SD on the secretion of sex hormones and the underlying mechanisms. Twelve pregnant Wistar rats were divided into control (CON, n = 6) and SD (n = 6) groups. Pregnant rats in the SD group were deprived of sleep for 18 h, and allowed free rest for 6 h, and then the above procedures were repeated until delivery. The CON group lived in a 12 h light/dark light cycle environment. Estradiol (E2) and progesterone (P4) levels were detected by enzyme-linked immunosorbent assay (ELISA), and the expression of circadian clock genes, Bmal1, Clock and Per2, in hypothalamus and pituitary gland tissues were evaluated by immunohistochemistry (IHC) and reverse transcription-quantitative polymerase chain reaction (RT-qPCR). The PI3K and Akt phosphorylation levels in the hypothalamic and pituitary tissues were determined by Western blot. The results showed that, compared with the CON group, the SD group exhibited significantly reduced serum E2 and P4 levels, down-regulated Bmal1, Clock and Per2 expression, as well as decreased phosphorylation levels of PI3K and Akt. But there was no significant difference of the total PI3K and Akt protein expression levels between the two groups. These results suggest that SD might affect the expression of the circadian clock genes in the hypothalamus and pituitary via PI3K/Akt pathway, and subsequently regulate the secretion of sex hormones in the pregnant rats, which hints the important roles of SD-induced changes of serum sex hormone levels in the pregnant rats.
ARNTL Transcription Factors/metabolism*
;
Animals
;
Circadian Clocks/physiology*
;
Circadian Rhythm/genetics*
;
Female
;
Gene Expression Regulation/genetics*
;
Gonadal Steroid Hormones/metabolism*
;
Hypothalamus/metabolism*
;
Phosphatidylinositol 3-Kinases/metabolism*
;
Pituitary Gland/metabolism*
;
Pregnancy
;
Progesterone
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Rats
;
Rats, Wistar
;
Signal Transduction
;
Sleep Deprivation/metabolism*
9.Advances in Mechanisms of Blood Brain Barrier Impairment Induced by Sleep Deprivation.
Ji-Xiang ZHU ; Yu-Lin HUANG ; Kun NI ; Yue LIU ; Zheng-Liang MA
Acta Academiae Medicinae Sinicae 2022;44(5):885-890
Sleep deprivation,the process and state of partial or complete lack of normal sleep caused by various factors,is prevalent at present.Seriously impairing the physical and mental health,sleep deprivation has become a public health problem that cannot be ignored.Studies have demonstrated that blood-brain barrier impairment is the key pathophysiological process of a variety of neurological diseases.Although clinical and basic studies have suggested that sleep deprivation can induce blood-brain barrier impairment,the underlying mechanisms remain to be elucidated.This review summarizes the advances in the mechanisms of blood-brain barrier impairment induced by sleep deprivation.
Humans
;
Sleep Deprivation/complications*
;
Blood-Brain Barrier
;
Brain
10.Altered Motor Performance, Sleep EEG, and Parkinson's Disease Pathology Induced by Chronic Sleep Deprivation in Lrrk2G2019S Mice.
Xinyao LIU ; Hang YU ; Yuanyuan WANG ; Song LI ; Cheng CHENG ; Murad AL-NUSAIF ; Weidong LE
Neuroscience Bulletin 2022;38(10):1170-1182
Parkinson's disease (PD) is a multifaceted disease in which environmental variables combined with genetic predisposition cause dopaminergic (DAergic) neuron loss in the substantia nigra pars compacta. The mutation of leucine-rich repeat kinase 2 (Lrrk2) is the most common autosomal dominant mutation in PD, and it has also been reported in sporadic cases. A growing body of research suggests that circadian rhythm disruption, particularly sleep-wake abnormality, is common during the early phase of PD. Our present study aimed to evaluate the impact of sleep deprivation (SD) on motor ability, sleep performance, and PD pathologies in Lrrk2G2019S transgenic mice. After two months of SD, Lrrk2G2019S mice at 12 months of age showed an exacerbated PD-like phenotype with motor deficits, a reduced striatal DA level, degenerated DAergic neurons, and altered sleep structure and biological rhythm accompanied by the decreased protein expression level of circadian locomotor output cycles kaput Lrrk2 gene in the brain. All these changes persisted and were even more evident in 18-month-old mice after 6 months of follow-up. Moreover, a significant increase in α-synuclein aggregation was found in SD-treated transgenic mice at 18 months of age. Taken together, our findings indicate that sleep abnormalities, as a risk factor, may contribute to the pathogenesis and progression of PD. Early detection of sleep disorders and improvement of sleep quality may help to delay disease progression and provide long-term clinical benefits.
Animals
;
Electroencephalography
;
Leucine/genetics*
;
Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/genetics*
;
Mice
;
Mice, Transgenic
;
Mutation
;
Parkinson Disease/metabolism*
;
Sleep Deprivation/complications*
;
alpha-Synuclein/genetics*

Result Analysis
Print
Save
E-mail