1.The Role and Mechanism of Circadian Rhythm Regulation in Skin Tissue Regeneration
Ya-Qi ZHAO ; Lin-Lin ZHANG ; Xiao-Meng MA ; Zhen-Kai JIN ; Kun LI ; Min WANG
Progress in Biochemistry and Biophysics 2025;52(5):1165-1178
Circadian rhythm is an endogenous biological clock mechanism that enables organisms to adapt to the earth’s alternation of day and night. It plays a fundamental role in regulating physiological functions and behavioral patterns, such as sleep, feeding, hormone levels and body temperature. By aligning these processes with environmental changes, circadian rhythm plays a pivotal role in maintaining homeostasis and promoting optimal health. However, modern lifestyles, characterized by irregular work schedules and pervasive exposure to artificial light, have disrupted these rhythms for many individuals. Such disruptions have been linked to a variety of health problems, including sleep disorders, metabolic syndromes, cardiovascular diseases, and immune dysfunction, underscoring the critical role of circadian rhythm in human health. Among the numerous systems influenced by circadian rhythm, the skin—a multifunctional organ and the largest by surface area—is particularly noteworthy. As the body’s first line of defense against environmental insults such as UV radiation, pollutants, and pathogens, the skin is highly affected by changes in circadian rhythm. Circadian rhythm regulates multiple skin-related processes, including cyclic changes in cell proliferation, differentiation, and apoptosis, as well as DNA repair mechanisms and antioxidant defenses. For instance, studies have shown that keratinocyte proliferation peaks during the night, coinciding with reduced environmental stress, while DNA repair mechanisms are most active during the day to counteract UV-induced damage. This temporal coordination highlights the critical role of circadian rhythms in preserving skin integrity and function. Beyond maintaining homeostasis, circadian rhythm is also pivotal in the skin’s repair and regeneration processes following injury. Skin regeneration is a complex, multi-stage process involving hemostasis, inflammation, proliferation, and remodeling, all of which are influenced by circadian regulation. Key cellular activities, such as fibroblast migration, keratinocyte activation, and extracellular matrix remodeling, are modulated by the circadian clock, ensuring that repair processes occur with optimal efficiency. Additionally, circadian rhythm regulates the secretion of cytokines and growth factors, which are critical for coordinating cellular communication and orchestrating tissue regeneration. Disruptions to these rhythms can impair the repair process, leading to delayed wound healing, increased scarring, or chronic inflammatory conditions. The aim of this review is to synthesize recent information on the interactions between circadian rhythms and skin physiology, with a particular focus on skin tissue repair and regeneration. Molecular mechanisms of circadian regulation in skin cells, including the role of core clock genes such as Clock, Bmal1, Per and Cry. These genes control the expression of downstream effectors involved in cell cycle regulation, DNA repair, oxidative stress response and inflammatory pathways. By understanding how these mechanisms operate in healthy and diseased states, we can discover new insights into the temporal dynamics of skin regeneration. In addition, by exploring the therapeutic potential of circadian biology in enhancing skin repair and regeneration, strategies such as topical medications that can be applied in a time-limited manner, phototherapy that is synchronized with circadian rhythms, and pharmacological modulation of clock genes are expected to optimize clinical outcomes. Interventions based on the skin’s natural rhythms can provide a personalized and efficient approach to promote skin regeneration and recovery. This review not only introduces the important role of circadian rhythms in skin biology, but also provides a new idea for future innovative therapies and regenerative medicine based on circadian rhythms.
2.Neutralizing Antibody Responses against Five SARS-CoV-2 Variants and T Lymphocyte Change after Vaccine Breakthrough Infections from the SARS-CoV-2 Omicron BA.1 Variant in Tianjin, China: A Prospective Study.
Ying ZHANG ; Jiang Wen QU ; Min Na ZHENG ; Ya Xing DING ; Wei CHEN ; Shao Dong YE ; Xiao Yan LI ; Yan Kun LI ; Ying LIU ; Di ZHU ; Can Rui JIN ; Lin WANG ; Jin Ye YANG ; Yu ZHAI ; Er Qiang WANG ; Xing MENG
Biomedical and Environmental Sciences 2023;36(7):614-624
OBJECTIVE:
To investigate whether Omicron BA.1 breakthrough infection after receiving the SARS-CoV-2 vaccine could create a strong immunity barrier.
METHODS:
Blood samples were collected at two different time points from 124 Omicron BA.1 breakthrough infected patients and 124 controls matched for age, gender, and vaccination profile. Live virus-neutralizing antibodies against five SARS-CoV-2 variants, including WT, Gamma, Beta, Delta, and Omicron BA.1, and T-lymphocyte lymphocyte counts in both groups were measured and statistically analyzed.
RESULTS:
The neutralizing antibody titers against five different variants of SARS-CoV-2 were significantly increased in the vaccinated population infected with the Omicron BA.1 variant at 3 months after infection, but mainly increased the antibody level against the WT strain, and the antibody against the Omicron strain was the lowest. The neutralizing antibody level decreased rapidly 6 months after infection. The T-lymphocyte cell counts of patients with mild and moderate disease recovered at 3 months and completely returned to the normal state at 6 months.
CONCLUSION
Omicron BA.1 breakthrough infection mainly evoked humoral immune memory in the original strain after vaccination and hardly produced neutralizing antibodies specific to Omicron BA.1. Neutralizing antibodies against the different strains declined rapidly and showed features similar to those of influenza. Thus, T-lymphocytes may play an important role in recovery.
Humans
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Antibodies, Neutralizing
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Prospective Studies
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SARS-CoV-2
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Breakthrough Infections
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COVID-19 Vaccines
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COVID-19
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T-Lymphocytes
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China/epidemiology*
;
Antibodies, Viral
3.The impact of amygdala glutamate receptors on cardiovascular function in rats with post-traumatic stress disorder.
Ya-Yang WU ; Kun-Yi CAI ; Yu-Jie WU ; Chao ZHENG ; Meng-Ya WANG ; Huan-Huan ZHANG
Acta Physiologica Sinica 2023;75(5):611-622
Post-traumatic stress disorder (PTSD) has been reported to be associated with a higher risk of cardiovascular disease. The amygdala may have an important role in regulating cardiovascular function. This study aims to explore the effect of amygdala glutamate receptors (GluRs) on cardiovascular activity in a rat model of PTSD. A compound stress method combining electrical stimulation and single prolonged stress was used to prepare the PTSD model, and the difference of weight gain before and after modeling and the elevated plus maze were used to assess the PTSD model. In addition, the distribution of retrogradely labeled neurons was observed using the FluoroGold (FG) retrograde tracking technique. Western blot was used to analyze the changes of amygdala GluRs content. To further investigate the effects, artificial cerebrospinal fluid (ACSF), non-selective GluR blocker kynurenic acid (KYN) and AMPA receptor blocker CNQX were microinjected into the central nucleus of the amygdala (CeA) in the PTSD rats, respectively. The changes in various indices following the injection were observed using in vivo multi-channel synchronous recording technology. The results indicated that, compared with the control group, the PTSD group exhibited significantly lower weight gain (P < 0.01) and significantly decreased ratio of open arm time (OT%) (P < 0.05). Retrograde labeling of neurons was observed in the CeA after microinjection of 0.5 µL FG in the rostral ventrolateral medulla (RVLM). The content of AMPA receptor in the PTSD group was lower than that in the control group (P < 0.05), while there was no significant differences in RVLM neuron firing frequency and heart rate (P > 0.05) following ACSF injection. However, increases in RVLM neuron firing frequency and heart rate were observed after the injection of KYN or CNQX into the CeA (P < 0.05) in the PTSD group. These findings suggest that AMPA receptors in the amygdala are engaged in the regulation of cardiovascular activity in PTSD rats, possibly by acting on inhibitory pathways.
Rats
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Animals
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Rats, Sprague-Dawley
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Stress Disorders, Post-Traumatic
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Receptors, AMPA
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6-Cyano-7-nitroquinoxaline-2,3-dione/pharmacology*
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Receptors, Glutamate/metabolism*
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Amygdala
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Weight Gain
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Medulla Oblongata/physiology*
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Blood Pressure
4.Design of intelligent positioning system for mobile medical equipment in operating room based on Bluetooth technology
Zhi-Meng LIU ; Ya-Dong LYU ; Long-Xue QIAO ; Lin-Huai TIAN ; Kun YANG ; Kai-Yuan LI ; Ning-Bo ZHAN ; Ying-Kang WEI ; Yong CHAO
Chinese Medical Equipment Journal 2023;44(9):29-32
Objective To develop an intelligent positioning system for mobile medical equipment in the operating room based on Bluetooth technology to enhance medical equipment management efficiency.Methods The intelligent positioning system for mobile medical equipment used received signal strength indication(RSSI)algorithm and multi-gateway trajectory filtering algorithm to realize Bluetooth positioning,which was composed of Bluetooth gateways,Bluetooth beacons,Bluetooth labels and a background data processing platform.The Bluetooth gateway consisted of an active power over ethernet(POE)module,a DC power module,a CPU,a Wi-Fi module and a Bluetooth module;the Bluetooth beacon included a beacon control unit,a Bluetooth transmitter module and a Bluetooth receiver module;the Bluetooth label was made up of a microcontroller unit(MCU),a Bluetooth module,an anti-temper switch and a accelerometer;the data processing platform had the front end developed with Vue architecture and the back end with Java language.Results The system developed could accurately locate the medical equipment in the operating room without electromagnetic interference to other medical devices.Conclusion The system developed gains advantages in high positioning accuracy,low electromagnetic interference,high stability and reliability and low cost,which improves the positioning and management efficiency of medical equipment under the premise of ensuring safety.[Chinese Medical Equipment Journal,2023,44(9):29-32]
5.Establishment of a rapid method for quality assessment of cardiotonic effect of Shengfupian
Lu-meng CHEN ; Ya-nan HE ; Hui LIU ; Peng TAN ; Hai-feng YUAN ; Hong-yan MA ; Jun-zhi LIN ; Ming YANG ; Ming-yan JIA ; Ding-kun ZHANG
Acta Pharmaceutica Sinica 2022;57(2):460-466
Based on the similar structure of adrenaline shared by higenamine (HI), salsolinol (SA) and coryneine (CO), a photochemical colorimetric sensor based on the displacement reaction of
6.Effect of Jinlida Granules on Visceral Fat Accumulation in Prediabetic Rats
Shao-lan ZHANG ; Yun-long HOU ; Kun MA ; Jia-meng HAO ; Cui-ru LI ; Ya-hui SONG ; Cong WEI
Chinese Journal of Experimental Traditional Medical Formulae 2022;28(8):37-45
ObjectiveTo study the effect of Jinlida granules on visceral fat accumulation and its induced inflammatory response in prediabetic rats. MethodMale SD rats were randomly divided into normal group, model group, Jinlida low-dose group (1.5 g·kg-1), Jinlida high-dose group (3.0 g·kg-1) and atorvastatin group (10 mg·kg-1). Prediabetic rat model was established using high-carbohydrate, high-fat diet combined with low-dose streptozotocin (STZ) by multiple small-dose intraperitoneal injections. After 8 weeks of modeling and drug intervention for 13 consecutive weeks, body weight, oral glucose tolerance test(OGTT), fasting blood glucose (FBG), fasting insulin (FINS), insulin resistance index (HOMA-IR), total cholesterol (TC), low-density lipoprotein cholesterol (LDL-C) and high-density lipoprotein cholesterol (HDL-C) were measured in each group of rats. The content of visceral fat was quantified by micro-computed tomography (Micro-CT). Hematoxylin-eosin staining (HE) was used to observe the pathological changes of fat cells. The levels of tumor necrosis factor-α (TNF-α) and interleukin- 6 (IL-6) in rat visceral fat and serum were determined by enzyme linked immunosorbent assay (ELISA). The expression of macrophage marker CD68 in visceral fat was detected by immunofluorescence and Western blot. ResultCompared with normal group, model group had increased oral glucose tolerance, FBG, FINS, HOMA-IR, TC, LDL-C (P<0.01), elevated body weight and visceral fat accumulation (P<0.05, P<0.01), enhanced CD68 protein expression and TNF-α and IL-6 levels (P<0.01), decreased HDL-C (P<0.01), and abnormal hypertrophy of adipocytes. Compared with model group, Jinlida high- and low-dose groups lowered oral glucose tolerance, HOMA-IR, TC and LDL-C (P<0.05, P<0.01), body weight and visceral fat accumulation (P<0.05), and CD68 protein expression and TNF-α and IL-6 levels (P<0.05, P<0.01) and lessened hypertrophy of fat cells. ConclusionJinlida can improve the insulin resistance in prediabetic rats by reducing visceral fat accumulation and its induced inflammatory response, which provides a new pharmacological basis for clinical treatment of prediabetes by Jinlida granules.
7.Comparison of odor and quality of Galli Gigerii Endothelium Corneum derived from domestic chickens and broilers.
Wei HUANG ; Lu-Meng CHEN ; Hao-Zhou HUANG ; Ya-Nan HE ; Xiao-Ming BAO ; Jing YANG ; Jun-Zhi LIN ; Peng TAN ; Li HAN ; Run-Chun XU ; Ding-Kun ZHANG
China Journal of Chinese Materia Medica 2022;47(20):5434-5442
Galli Gigerii Endothelium Corneum(GGEC) is commonly used for the clinical treatment of indigestion, vomiting, diarrhea, and infantile malnutrition with accumulation. In recent decades, omnivorous domestic chickens, the original source of GGEC, has been replaced by broilers, which may lead to significant changes in the quality of the yielding GGEC. Through subjective and objective sensory evaluation, biological evaluation, and chemical analysis, this study compared the odor and quality between GGEC derived from domestic chickens and that from broilers. The odor intensity between them was compared by odor profile analysis and it was found that the fishy odor of GGEC derived from domestic chickens was significantly weaker than that of GGEC from broilers. Headspace-solid phase microextraction-gas chromatography-triple quadrupole tandem mass spectrometry(HS-SPME/GC-QQQ-MS/MS) suggested that the overall odor-causing chemicals were consistent with the fishy odor-causing chemicals. According to the odor activity va-lue and the orthogonal partial least squares discriminant analysis(OPLS-DA) result, dimethyl trisulfide, 2-methoxy-3-isobutylpyrazine, and 2-methylisoborneol were responsible for the fishy odor(OAV≥1) and the content of fishy odor-causing chemicals in GGEC derived from broilers was 1.12-2.13 folds that in GGEC from domestic chickens. The average pepsin potency in GGEC derived from broilers was 15.679 U·mg~(-1), and the corresponding figure for the medicinal from domestic chickens was 26.529 U·mg~(-1). The results of pre-column derivatization reverse-phase high-performance liquid chromatography(RP-HPLC) assay showed that the content of total amino acids and digestion-promoting amino acids in domestic chickens-derived GGEC was 1.12 times and 1.15 times that in GGEC from broilers, and the bitter amino acid content was 1.21 times folds that of the latter. In conclusion, GGEC derived from domestic chickens had weaker fishy odor, stronger enzyme activity, higher content of digestion-promoting amino acids, and stronger bitter taste than GGEC from broilers. This study lays a scientific basis for studying the quality variation of GGEC and provides a method for identifying high-quality GGEC. Therefore, it is of great significance for the development and cultivation of GGEC as both food and medicine and breeding of corresponding varieties.
Animals
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Odorants/analysis*
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Chickens
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Gas Chromatography-Mass Spectrometry/methods*
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Tandem Mass Spectrometry
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Solid Phase Microextraction
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Amino Acids
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Endothelium/chemistry*
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Volatile Organic Compounds/analysis*
8.Application of isotemporal substitution model in epidemiological research.
Yu Tong WANG ; Hui Meng LIU ; Sui Xia CAO ; Kun XU ; Bin Yan ZHANG ; Ya Ting HUO ; Jing Chun LIU ; Ling Xia ZENG ; Shao Nong DANG ; Hong YAN ; Bai Bing MI
Chinese Journal of Epidemiology 2022;43(11):1842-1847
Isotemporal substitution model is a powerful tool to explore the real association between physical behavior and health outcomes, which has the potential of the application in large-scale cohort study. This paper systematically introduces the principle of isotemporal substitution model and its implementation method in specific analysis to provide analytical ideas for the epidemiological research related to physical behavior in China. The baseline data of Regional Ethic Cohort Study in Northwest China conducted in Shaanxi province were used to analyze the relationship between physical behavior and cardiovascular disease with single-factor model, partition model and isotemporal substitution model. The advantages and disadvantages of different models were compared, and the advantages of isotemporal substitution model in quantifying physical activity health risk were introduced. Isotemporal substitution model could qualify physical behavior and health outcomes, which has wide application value in epidemiological research.
Humans
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Cohort Studies
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Epidemiologic Studies
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Cardiovascular Diseases
;
China/epidemiology*
9.Microbial community structure and transformation of indoles in soaking and fermentation of Indigo Naturalis.
Ya-Nan HE ; Le-le MA ; Yi WU ; Lu-Meng CHEN ; Ding-Kun ZHANG ; Xiang-Bo YANG ; Run-Chun XU ; Fang WANG ; Li HAN ; Ming YANG
China Journal of Chinese Materia Medica 2021;46(13):3180-3187
The soaking and fermentation of Baphicacanthus cusia( Nees),the important intermediate link of Indigo Naturalis processing,facilitates the synthesis of indigo and indirubin precursors and the dissolution of endogenous enzymes and other effective components,while the role of microorganisms in the fermentation is ignored. The present study investigated the changes of microbial community structure in Indigo Naturalis processing based on 16 S amplicon sequencing and bioinformatics. Meanwhile,the contents of indigo,indirubin,isatin,tryptanthrin,indole glycoside,etc. were determined to explore the correlation between the microorganisms and the alterations of the main components. As demonstrated by the results,the microbial diversity decreased gradually with the fermentation,which bottomed out after the addition of lime. Proteobacteria,Bacteroidetes,and Firmicutes were the main dominant communities in the fermentation. The relative abundance of Proteobacteria declined gradually with the prolongation of fermentation time,and to the lowest level after the addition of lime. The relative abundance of Firmicutes increased,and that of Bacteroidetes decreased first and then increased. The contents of effective substances in Indigo Naturalis also showed different variation tendencies. As fermentation went on,indole glycoside decreased gradually; indigo first increased and then decreased; indirubin and isatin first decreased and then increased; tryptanthrin gradually increased. Those changes were presumedly related to the roles of microorganisms in the synthesis of different components. This study preliminarily clarified the important role of microorganisms in the soaking and fermentation and provided a scientific basis for the control of Indigo Naturalis processing and the preparation of high-quality Indigo Naturalis.
Fermentation
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Indigo Carmine
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Indigofera
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Indoles
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Microbiota
10.Identification of chemical constituents of Xiaoer Chiqiao Qingre Granules based on UHPLC-LTQ-Orbitrap-MS/MS and network pharmacology analysis.
Yan ZHANG ; Yan-Yan ZHOU ; Wen-Ya GAO ; Meng-Yao CUI ; Bao-Lin BIAN ; Li-Qi NI ; Kun WANG ; Hong-Jie WANG ; Nan SI ; Hai-Yu ZHAO
China Journal of Chinese Materia Medica 2021;46(23):6163-6177
This study aimed to qualitatively analyze the chemical components in Xiaoer Chiqiao Qingre Granules(XRCQ) by UHPLC-LTQ-Orbitrap-MS/MS and identify its material basis. The absorbed components in plasma were combined for exploring the potential action mechanism by integrated network pharmacology. ACQUITY UPLC HSS T3(2.1 mm×100 mm, 1.8 μm) column and mobile phase system of 0.1% formic acid solution(A)-acetonitrile(B) were used for gradient elution, followed by high resolution liquid chromatography-mass spectrometry in both positive and negative ion scanning modes. According to the precise relative molecular mass and MS/MS fragment ions, a total of 124 chemical components were identified in XRCQ by the comparison with references and literature reports, among which 29 compounds were completely confirmed by comparison with reference substances. Then, the main absorbed components of XRCQ in plasma were also analyzed and clarified by UHPLC-LTQ-Orbitrap-MS/MS. BATMAN-TCM and SwissTargetPrediction were used for target prediction of absorbed components in plasma. Following the plotting of association network with Cytoscape 3.8.2, the core targets were subjected to GO and KEGG pathway enrichment analysis and a component-target-pathway network was constructed. A total of eight main targets of XRCQ against fever in children were obtained together with eight absorbed components in plasma, including glycyrhydinic acid, hesperidin, emodin, reticuline, daidzein, magnolignan C, magnolignan A, and magnolaldehyde D. It was inferred that XRCQ might improve alimentary system abnormality, inflammatory response, oxidative stress, and endocrine disorder through tumor necrosis factor, PI3 K-AKT, and other signaling pathways. The present study comprehensively expounded the chemical profiles of XRCQ and the main absorbed components in plasma and predicted the potential mechanism of XRCQ based on integrated network pharmacology, which has provided certain theoretical reference for the clinical application of XRCQ.
Child
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Chromatography, High Pressure Liquid
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Chromatography, Liquid
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Drugs, Chinese Herbal
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Humans
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Network Pharmacology
;
Tandem Mass Spectrometry

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