1.Association between brain and muscle Arnt like protein 1 gene polymorphisms and ambulatory blood pressure among college students
Chinese Journal of School Health 2026;47(6):864-868
Objective:
To investigate the association between brain and muscle Arnt like protein 1( BMAL 1) gene and ambulatory blood pressure (ABP) parameters in college students, and to explore the influence of the interaction between the gene and weight status on the ABP levels, so as to provide reference for early prevention of chronic cardiovascular diseases related to hypertension.
Methods:
During September 2022 to June 2024, a total of 510 college students were recruited from a university in Changsha, China for on site questionnaire investigation, physical examination, ABP monitoring and genotyping testing. Multiple linear regression method was used to explore the association between the BMAL 1 gene and ABP indicators. An interaction term was included in the general linear model of multiple linear regression to analyze the interactive effects of BMAL 1 gene polymorphisms and weight status on ABP levels.
Results:
The prevalence of abnormal 24 hour blood pressure, abnormal daytime blood pressure, and abnormal nighttime blood pressure were 3.3%, 3.1%, and 3.9%, respectively. Multiple linear regression analysis showed that the BMAL 1/rs7950226 polymorphism was positively correlated with the 24 hour diastolic blood pressure(DBP) and the daytime DBP level after adjusting for gender, age, and body mass index( β =0.87,0.99, both P <0.05). Also, interaction between BMAL 1/ rs 11022775 and weight status on the nighttime DBP level ( P interaction =0.03) was found. The CC genotype carriers had significantly higher nighttime DBP level ( β =3.52, P <0.05) among overweight/obesity college students, but no differences in nocturnal DBP levels were observed between CC genotype carriers and TT+CT genotype carriers among college students with normal body weight( P > 0.05).
Conclusions
The rs 7950226 polymorphism is associated with 24 hours DBP and daytime DBP levels. Significant interaction between rs 11022775 with weight status on the nighttime DBP level is found among college students.
2.The application of brain-computer interface in the diagnosis and treatment of addiction and sleep disorder
Chinese Journal of Clinical Medicine 2026;33(2):226-229
Brain-computer interface (BCI) is a neuro-engineering technology that establishes a direct communication pathway between the brain and external devices. It can realize bidirectional information interaction between the brain and external devices through real-time acquisition and decoding of brain signals, thereby completing brain state recognition and precise feedback regulation. This technology is promoting the transformation of the diagnosis and treatment model of neuropsychiatric diseases from “open-loop stimulation” to “closed-loop adaptation”. The brain regions and circuits involved in the neural mechanisms of addiction and sleep disorder are highly intertwined. Sleep-related brain rhythms provide a key time window for the intervention of addiction memory, and both have abnormal electrophysiological activities and functional imbalances in core neural circuits. This article reviews the latest research progress of closed-loop BCI in the fields of addiction and sleep disorder, explains the neural circuits and electrophysiological mechanisms of its regulation, and its limitations in diagnosis and treatment of the two diseases. In addition, it prospects individualized closed-loop intervention from the perspective of brain-body interaction, so as to provide reference for the clinical transformation of closed-loop BCI.
3.Research progress on the association between physical activity and sleep quality in adolescents
WANG Jinxian*, LIU Yuan, WU Jian, WU Huipan, WANG Zhe, ZHANG Yingkun, WANG Yi, YIN Xiaojian
Chinese Journal of School Health 2026;47(1):140-143
Abstract
To promote adolescents active participation in physical activity and improve sleep quality, the article analyzes the relationship of adolescent physical activity with subjective sleep satisfaction, sleep latency, sleep continuity, sleep efficiency, and sleep duration. It explores potential mechanisms underlying the link between physical activity and sleep quality, including physiological mechanisms (circadian rhythms, body temperature, neuroendocrine systems, and immune function), and psychological mechanisms (stress relief, improvement of negative emotions, and promotion of mental relaxation). Based on existing research, it is recommended that adolescents engage in moderate to vigorous physical activity daily to promote improved sleep quality.
4.Clinical effect of functional genomic analysis combined with individualized drug selection in treatment of autosomal dominant polycystic kidney disease with congenital hepatic fibrosis: A case report
Kaidi ZHU ; Jianzeng ZHANG ; Hongyi LI ; Mengqi YUAN ; Ziying ZHANG ; Zhe XU ; Hongling LIU ; Fusheng WANG ; Xuechun LU ; Lei SHI
Journal of Clinical Hepatology 2026;42(7):1670-1676
Autosomal dominant polycystic kidney disease (ADPKD) is a systemic hereditary renal disorder and can affect multiple organs, and congenital hepatic fibrosis is one of the manifestations of liver involvement and is an important complication of ADPKD. Symptomatic management is currently the main treatment method for this disease, and disease-specific drugs such as tolvaptan have limited indications and cannot correct the underlying genetic defect. This article reports a case of ADPKD with congenital hepatic fibrosis, and sirolimus was identified as the individualized treatment regimen based on peripheral blood functional genomic analysis and drug sensitivity prediction platform. The patient achieved significant improvements in symptoms and quality of life after treatment, with a stable kidney volume. This case shows that functional genomics has a potential value in guiding individualized treatment of rare genetic disorders, which provides new treatment ideas and practice paths for similar patients.
5.Translational Research of Electromagnetic Fields on Diseases Related With Bone Remodeling: Review and Prospects
Peng SHANG ; Jun-Yu LIU ; Sheng-Hang WANG ; Jian-Cheng YANG ; Zhe-Yuan ZHANG ; An-Lin LI ; Hao ZHANG ; Yu-Hong ZENG
Progress in Biochemistry and Biophysics 2025;52(2):439-455
Electromagnetic fields can regulate the fundamental biological processes involved in bone remodeling. As a non-invasive physical therapy, electromagnetic fields with specific parameters have demonstrated therapeutic effects on bone remodeling diseases, such as fractures and osteoporosis. Electromagnetic fields can be generated by the movement of charged particles or induced by varying currents. Based on whether the strength and direction of the electric field change over time, electromagnetic fields can be classified into static and time-varying fields. The treatment of bone remodeling diseases with static magnetic fields primarily focuses on fractures, often using magnetic splints to immobilize the fracture site while studying the effects of static magnetic fields on bone healing. However, there has been relatively little research on the prevention and treatment of osteoporosis using static magnetic fields. Pulsed electromagnetic fields, a type of time-varying field, have been widely used in clinical studies for treating fractures, osteoporosis, and non-union. However, current clinical applications are limited to low-frequency, and research on the relationship between frequency and biological effects remains insufficient. We believe that different types of electromagnetic fields acting on bone can induce various “secondary physical quantities”, such as magnetism, force, electricity, acoustics, and thermal energy, which can stimulate bone cells either individually or simultaneously. Bone cells possess specific electromagnetic properties, and in a static magnetic field, the presence of a magnetic field gradient can exert a certain magnetism on the bone tissue, leading to observable effects. In a time-varying magnetic field, the charged particles within the bone experience varying Lorentz forces, causing vibrations and generating acoustic effects. Additionally, as the frequency of the time-varying field increases, induced currents or potentials can be generated within the bone, leading to electrical effects. When the frequency and power exceed a certain threshold, electromagnetic energy can be converted into thermal energy, producing thermal effects. In summary, external electromagnetic fields with different characteristics can generate multiple physical quantities within biological tissues, such as magnetic, electric, mechanical, acoustic, and thermal effects. These physical quantities may also interact and couple with each other, stimulating the biological tissues in a combined or composite manner, thereby producing biological effects. This understanding is key to elucidating the electromagnetic mechanisms of how electromagnetic fields influence biological tissues. In the study of electromagnetic fields for bone remodeling diseases, attention should be paid to the biological effects of bone remodeling under different electromagnetic wave characteristics. This includes exploring innovative electromagnetic source technologies applicable to bone remodeling, identifying safe and effective electromagnetic field parameters, and combining basic research with technological invention to develop scientifically grounded, advanced key technologies for innovative electromagnetic treatment devices targeting bone remodeling diseases. In conclusion, electromagnetic fields and multiple physical factors have the potential to prevent and treat bone remodeling diseases, and have significant application prospects.
6.Association between unilateral or bilateral hearing loss and multimorbidity among the oldest old in China
Yijun LIU ; Zhe ZHAO ; Juanfang ZHU ; Jinhai SUN ; Lei YUAN
Academic Journal of Naval Medical University 2025;46(8):1027-1034
Objective To investigate the associations between unilateral or bilateral hearing loss and 12 chronic diseases as well as multimorbidity among the oldest old in China,and to identify disparities in these associations of left-and right-side hearing loss with chronic diseases.Methods Totally 7 437 people aged ≥80 years old were selected from the Chinese Longitudinal Health and Longevity Survey(CLHLS)2018 cross-sectional data.With 12 chronic diseases and multimorbidity as outcome variables,the hearing loss as explanatory variable,socio-demographic characteristics,family factors,and lifestyle as covariates,the correlations of unilateral(left-or right-side)and bilateral hearing loss with chronic diseases and multimorbidity were analyzed using multivariate logistic regression model,and the trend analyses were carried out.Results There were 205(2.76%),227(3.05%)and 3 598(48.38%)old people with left-side,right-side and bilateral hearing loss,respectively.After adjusting for confounders,the oldest old with left-sided or bilateral hearing loss had a greater risk of multimorbidity compared with those with normal hearing function,with odds ratio(95%confidence interval)of 2.14(1.58-2.90)and 1.27(1.13-1.43),respectively,while no association between right-sided hearing loss and multimorbidity was observed(P>0.05).Trend analysis showed that the risk of multimorbidity increased with hearing loss from none to unilateral and then to bilateral(P<0.001).Conclusion Hearing loss may be related to the increased risk of multimorbidity in the oldest old,and the risk of those with bilateral hearing loss is higher.More attention should be paid to the prevention and treatment of hearing loss in the oldest old.
7.Research progress on the effects of circadian rhythm disturbance on β-cell function
Zhe WANG ; Limin WANG ; Ling LI ; Huijuan YUAN
Chinese Journal of Endocrinology and Metabolism 2025;41(6):515-517
Circadian rhythm synchronize internal biological functions with environmental light-dark cycles. Impaired pancreatic β-cell function is a critical mechanism in the development and progression of type 2 diabetes. Emerging evidence suggests that circadian rhythm disturbances—caused by factors such as shift work, sleep deprivation, and gene mutations—are closely associated with β-cell dysfunction. This review summarizes recent research advances on the relationship between circadian rhythm disturbance and impaired β-cell function, and explores the potential underlying mechanisms.
8.Microbial community mediated by microbial agents improves the quality of Epimedium pubescens Maxim.
Lai KUNYANG ; Wan XIUFU ; Xiao JIANCAI ; Wang HONGYANG ; Shi SHANGXUAN ; Yan BINBIN ; Lyu CHAOGENG ; Zhang CHENGCAI ; Zhang YUFEI ; Yuan FENG ; Zhao ZHE ; Zhu SHOUDONG ; Kang CHUANZHI ; Zhang YAN
Science of Traditional Chinese Medicine 2025;3(3):270-281
Background:Optimizing cultivation techniques for traditional Chinese medicine has become a crucial means to improve the quality of medicinal materials.Microbial agents,as environmentally friendly and efficient plant growth promoters and soil conditioners,have increasingly attracted attention in eco-agriculture research.Objective:Our understanding remains limited regarding how the application of microbial agents,alone or in combination,affects changes in the rhizosphere microbiome and its association with the bioactive components of medicinal materials.Methods:In this study,Epimedium pubescens Maxim.was employed as a model plant to examine the effects of 2 microbial agents(Paenibacillus mucilaginosus and Bacillus subtilis)applied individually and in combination on plant growth and the accumulation of bioactive components.Additionally,this study explored the relationship between the rhizosphere microbiome and plant development.Results:The application of microbial agents increased the yield of E.pubescens leaves by 20.30%to 33.66%and enhanced the total flavonol glycosides content by 11.40%to 29.94%.Meanwhile,microbial treatments reshaped the rhizosphere microbiome,promoted the enrichment of beneficial microorganisms(e.g.,Frankia and Paenibacillus),suppressed phytopathogenic fungi such as Didymella and Scytalidium,and enhanced the stability of the soil microbial co-occurrence network.The partial least squares path model suggested that microbial agents not only directly impact the quality of medicinal herbs but also indirectly alter the accumula-tion of bioactive components by modulating the soil microbiome.Conclusion:These findings deepen our understanding of the relationship between medicinal plant quality and rhizosphere micro-biomes as mediated by microbial agents.They also provide a basis for designing and manipulating synthetic microbial communities to promote sustainable development in eco-agriculture.
9.Exploration on the Effects of Yinqin Qingfei Granules on Mycoplasma Pneumoniae Infection Mice Based on the Keap1/Nrf2/HO-1 Signaling Pathway
Jingyao GOU ; Yi LIANG ; Yuan ZHANG ; Xu ZHOU ; Zhe SONG ; Baoqing ZHANG
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(11):92-98
Objective To observe the effects of Yinqin Qingfei Granules on oxidative injury in lung tissue of mice with mycoplasma pneumoniae infection;To explore the mechanism of the Keap1/Nrf2/HO-1 signaling pathway in it.Methods Totally 100 BALB/c mice were randomly divided into blank group,model group,Yinqin Qingfei group,Azithromycin group and combination group,with 20 mice in each group.Except for the blank group,the other groups of mice were used to establish mycoplasma pneumoniae pneumonia model through bacterial solution nasal drip,and the blank group was given the same amount of normal saline nasal drip for 3 days.After modeling,the drug groups were given corresponding drugs by gavage,the blank group and the model group were given the same amount of distilled water by gavage,and the materials were taken at 3 and 7 days after administration,respectively.HE staining was used to observe the morphology of lung tissue,ELISA was used to detect the contents of interleukin(IL)-1β and tumor necrosis factor(TNF)-α in serum,biochemical method was used to detect the contents of nitric oxide(NO),malondialdehyde(MDA),superoxide dismutase(SOD)and glutathione(GSH)in lung tissue,Western blot was used to detect the expressions of Kelch like ECH associated protein 1(Keap1),nuclear factor E2 related factor 2(Nrf2)and heme oxygenase-1(HO-1)protein in lung tissue.Results Compared with the blank group,the lungs of mice in the model group showed severe inflammatory changes on day 3 and 7,with alveolar fusion or disappearance,and lung consolidation,which were more severe on day 7;the contents of IL-1β and TNF-α in serum significantly increased(P<0.05),the contents of SOD and GSH in lung tissues significantly decreased(P<0.05),and the contents of MDA and NO significantly increased(P<0.05),the protein expression of Keap1 in lung tissues increased(P<0.05),and Nrf2 and HO-1 protein expressions decreased(P<0.05).Compared with the model group,the histopathological changes in lung tissue showed different degrees of improvement on day 3 and 7 of drug treatment in Yinqin Qingfei group,Azithromycin group and combination group groups,the serum contents of IL-1β and TNF-α were significantly decreased(P<0.05),the contents of SOD and GSH in lung tissue were significantly increased on day 7 of drug treatment(P<0.05),the contents of MDA and NO significantly decreased(P<0.05),the protein expression of Keap1 in lung tissue decreased on day 3 and 7 of drug treatment(P<0.05),and the protein expressions of Nrf2 and HO-1 increased(P<0.05).Conclusion Yinqin Qingfei Granules can regulate the level of inflammatory factors,reduce lung inflammation and oxidative damage of mice with mycoplasma pneumoniae infection.The mechanism may be related to down-regulating the expression of Keap1,up-regulating the expressions of Nrf2 and HO-1,reducing the contents of NO and MDA,improving the activities of SOD and GSH,and playing an antioxidant role.
10.Teaching Practice and Exploration of"Tutorial System"Based on The Cultivation of Scientific Research and Innovation Ability of Medical Students
Qiao ZHANG ; Yin-Feng YANG ; Yue-Li NI ; Zhuo-Ran TENG ; Wen-Jing LIU ; Jing WU ; Yan-Rui WU ; Yu DOU ; Ming HE ; Shu-De LI ; Ping GAN ; Fang YUAN ; Zhe YANG ; Xin-Wang YANG
Chinese Journal of Biochemistry and Molecular Biology 2025;41(3):470-480
The scientific research and innovation capabilities of medical students are intrinsically linked to the sustained and high-quality development of national healthcare initiatives.Cultivating outstanding medi-cal students with independent scientific capabilities and innovative consciousness is a critical component in the education and training of high-level medical professionals.Our investigation revealed that within the imperfections of the cultivating model,some faculty and students at medical schools have an insufficient understanding of scientific research and innovation and lack motivation for engaging in such activities,which hinder the progression of scientific research activities.Consequently,we initiated a teaching practice and exploratory study on the"tutorial system"aimed at fostering medical students'scientific research and innovation abilities.Based on the principle of"research informing teaching,teaching and research advan-cing together,"this study implements a"tutorial system"coordinated by tutors,supplemented by graduate and undergraduate student mentors,to cultivate innovative thinking,stimulate interest in scientific re-search,and enhance practical and research skills among medical students.Through collaborative efforts within"scientific research innovation teams,"various educational methods—including preliminary re-search,in-class and extracurricular activities,intra-group and inter-group interactions,and theoretical and practical applications—are employed to improve and strengthen the cultivation of medical students'scientif-ic research and innovation abilities.This study aims to provide valuable references for optimizing medical education management systems and enhancing the quality of medical student training.


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