1.Epidemiological characteristics and prediction analysis of hand, foot and mouth disease in Shanxi Province in 2012 - 2024
Wenjun WANG ; Xiaohong ZHANG ; Lijuan LIU ; Yaqiong SONG ; Qing TAN ; Yanzhen NIU
Journal of Public Health and Preventive Medicine 2026;37(3):14-18
Objective To analyze the epidemiological characteristics of hand, foot, and mouth disease (HFMD) in Shanxi Province from 2012 to 2024, and predict the incidence trend for 2025, and to provide a scientific basis for the formulation of prevention and control strategies. Methods Based on the surveillance data of HFMD in Shanxi Province from 2012 to 2024, the spatial and temporal distribution characteristics and time trends of the disease were analyzed. The ARIMA model was constructed and used to predict the incidence trend in 2025. Results From 2012 to 2024, a total of 254 028 HFMD cases were reported in Shanxi Province, with an average annual incidence rate of 54.17 per 100 000 population, a severe case rate of 0.56%, and a case fatality rate (CFR) of 12.60 per 100 000 population. Joinpoint regression analysis showed that the incidence rate, severe case rate, mortality rate, and case fatality rate all presented a downward trend. The epidemic exhibited obvious seasonal distribution characteristics, with the peak period from April to November, and two incidence peaks in June-July and October-November. The male-to-female incidence ratio was 1.41:1. Children aged 1-5 years accounted for 89.24% of the total cases, among which scattered children (58.48%) and nursery children (33.54%) were the high-risk groups. Linfen City (96.06 /100 000) and Taiyuan City (88.54 /100 000) had relatively high incidence rates. After 2017, the proportion of enterovirus A71 (EV-A71) decreased, while coxsackievirus A16 (Cox-A16) and other enteroviruses became the main epidemic strains. The ARIMA(1,0,1)(0,1,1)₁₂ model predicted that the incidence of HFMD in 2025 would remain at the level of 2023-2024, and the dual-peak characteristic would continue. Conclusion From 2012 to 2024, the overall HFMD epidemic in Shanxi Province generally shows a significant downward trend. The high-risk population includes scattered children and nursery children under 5 years old, with high-incidence areas concentrated in the central and southern regions, requiring focused attention. The seasonal ARIMA model can effectively fit the evolutionary trend of HFMD incidence in Shanxi Province and possesses short-term predictive capability.
2.Study on the mechanism of Naozhenning granules in improving learning and memory impairment in multiple cerebral concussion model rats
Xinru WANG ; Yaozhou YAN ; Chunxue ZHANG ; Le ZHAO ; Li GAO ; Yonghui WANG
China Pharmacy 2026;37(11):1416-1421
OBJECTIVE To investigate the mechanism by which Naozhenning granules (NZN) improve learning and memory impairment in a rat model of multiple cerebral concussion (MCC). METHODS The MCC rat model was established using the closed controlled cortical impact method. The experiment was set up with a blank group (normal saline), a model group (normal saline), a piracetam group (positive control group, 0.324 g/kg), and high-, medium-, and low-dose NZN groups (5.4, 2.7, 1.35 g/kg), with 11 rats in each group. Drugs or normal saline were administered by gavage once daily for 28 consecutive days. General condition and body weight were monitored throughout the experiment. The sucrose preference rate and novel object recognition index were measured; Evans blue (EB) extravasation in the cerebral cortex was detected; pathological changes of cortical neurons were observed; the levels of B-cell lymphoma-2 (Bcl-2), Bcl-2-associated X protein (Bax), interleukin-6 (IL-6), IL-10, and tumor necrosis factor-α (TNF-α) in the cerebral cortex were determined; and the phosphorylation levels of AMP-activated protein kinase (AMPK), glycogen synthase kinase 3β (GSK3β), and Tau protein were detected. RESULTS Compared with the blank group, the model group showed poor mental state, sluggish response to external stimuli, reduced food and water intake, decreased limb flexibility, and disheveled fur. Body weight, sucrose preference rate, and novel object recognition index were significantly decreased ( P <0.05); EB extravasation in the cerebral cortex was significantly increased ( P <0.05), with severe neuronal damage. The positive area ratio of Bax protein, IL-6 and TNF-α levels, and Tau protein phosphorylation level were all significantly increased ( P <0.05), whereas the positive area ratio of Bcl-2 protein, IL-10 level, and AMPK and GSK3β protein phosphorylation levels were significantly decreased ( P <0.05). Compared with the model group, all NZN dose groups showed improvements in general condition and pathological damage, with quantitative indices partially restored, and the differences in quantitative indices in high-dose NZN group were statistically significant ( P <0.05). CONCLUSIONS NZN can effectively improve learning and memory impairment in MCC model rats. The mechanism may be related to activating the AMPK/GSK3β pathway, inhibiting inflammatory response, reducing Tau protein phosphorylation level, and then repairing the neuronal injury.
3.The mechanism of magnoflorine in inhibiting colon cancer based on network pharmacology and in vitro experiment
Lulu TAN ; Lina ZHU ; Shujin ZHANG ; Yuxuan WANG ; Huimei LI ; Yuke WANG ; Jiayi HOU ; Qilong FENG ; Jianyun SHI
Acta Universitatis Medicinalis Anhui 2026;61(6):1021-1031
ObjectiveTo explore the function and related molecular mechanisms of magnoflorine against colon cancer via network pharmacology, molecular docking, and in vitro cell experiments. MethodsIn this study, the canonical SMILES of magnoflorine was obtained from the PubChem database, and the potential targets of magnoflorine were predicted by the Swiss Target Prediction database, while the disease targets of colon cancer were obtained from the DisGeNET, GeneCards and OMIM databases. The intersecting targets between magnoflorine's predicted targets and colon cancer disease targets were taken, and a protein-protein interaction (PPI) network was constructed and analyzed. The DAVID online database was employed to conduct Gene Ontology (GO) and KEGG pathway enrichment analyses on core targets. The top five key targets screened were docked with magnoflorine using AutoDock software. Finally, cellular experiments including CCK-8 assays, EdU experiments, cell scratch assays, and Transwell assays were conducted to validate the results from network pharmacology and molecular docking. Results44 key targets of magnoflorine in resisting colon cancer were acquired. The molecular docking results showed that magnoflorine had a strong binding activity with the core target signal transducer and activator of transcription 3 (STAT3) in the top five of the PPI network. Cellular experiments confirmed that magnoflorine could inhibit the proliferation and migration of colon cancer cells by suppressing the JAK/STAT3 signaling pathway. ConclusionMagnoflorine may inhibit the proliferation and migration of colon cancer cells by regulating the JAK/STAT3 signaling pathway.
4.Semaphorin 3A promotes pathological cardiac hypertrophy: an experimental study
Lifei WU ; Jiaojiao ZHANG ; Xing ZHANG ; Donghang LI ; Hongbo WANG ; Jimin CAO
Acta Universitatis Medicinalis Anhui 2026;61(7):1215-1222
ObjectiveTo investigate the effect of Semaphorin 3A (Sema3A) on the progression of pathological cardiac hypertrophy. MethodsWild-type C57BL 6J mice, Sema3A global overexpressing (Sema3A/Cre-ERTM) mice, and their littermate controls (Cre-ERTM) were used, with 6 mice per group. A pressure-overload induced cardiac hypertrophy model was established via transverse aortic constriction (TAC), with a sham-operated group (Sham) as the control. Cardiac hypertrophy was assessed by gross morphology, heart weight/body weight ratio (HW/BW), heart weight/tibia length ratio (HW/HL), and heart weight/lung weight ratio (HW/PW). Cardiac function was evaluated by measuring ejection fraction (EF) and fractional shortening (FS) via echocardiography. In heart tissues, the mRNA level of atrial natriuretic peptide (ANP) and Sema3A were detected by RT-qPCR, Sema3A protein level was detected by western blot, morphological structure was detected by hematoxylin and eosin (HE) staining, level of fibrosis was detected by Masson’s trichrome staining, and angiogenesis was detected by immunohistochemical detection of CD31. For in vitro experiments, rat H9C2 cardiomyocytes were treated with angiotensin Ⅱ (Ang Ⅱ) to induce hypertrophy, with PBS-treated cells as the control. After 48 hours, the mRNA expression of ANP, B-type natriuretic peptide (BNP) and Sema3A were measured by RT-qPCR, and Sema3A protein level was assessed by western blot. ResultsAt the animal level, compared with the sham group, mice subjected to TAC showed significantly increased mRNA levels of ANP in cardiac tissue, as well as markedly elevated mRNA and protein levels of Sema3A (all P<0.05). Compared with the Cre-ERTM + TAC group, the Sema3A/Cre-ERTM + TAC group exhibited more pronounced cardiac hypertrophy, greater ventricular wall thickening, higher HW/BW, HW/HL, and HW/PW ratios, more significant reductions in EF and FS, more severe cardiac fibrosis, and a significant decrease in cardiac CD31 expression levels (all P<0.05). At the cellular level, compared with the control group, H9C2 cells treated with Ang Ⅱ displayed significantly increased mRNA levels of ANP and BNP, along with markedly elevated mRNA and protein levels of Sema3A (all P<0.05). ConclusionSema3A promotes the progression of pressure overload-induced cardiac hypertrophy by inhibiting angiogenesis.
5.Optimization Strategy and Practice of Traditional Chinese Medicine Compound and Its Component Compatibility
Zhihao WANG ; Wenjing ZHOU ; Chenghao FEI ; Yunlu LIU ; Yijing ZHANG ; Yue ZHAO ; Lan WANG ; Liang FENG ; Zhiyong LI
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(1):299-310
Prescription optimization is a crucial aspect in the study of traditional Chinese medicine (TCM) compounds. In recent years, the introduction of mathematical methods, data mining techniques, and artificial neural networks has provided new tools for elucidating the compatibility rules of TCM compounds. The study of TCM compounds involves numerous variables, including the proportions of different herbs, the specific extraction parts of each ingredient, and the interactions among multiple components. These factors together create a complex nonlinear dose-effect relationship. In this context, it is essential to identify methods that suit the characteristics of TCM compounds and can leverage their advantages for effective application in new drug development. This paper provided a comprehensive review of the cutting-edge optimization experimental design methods applied in recent studies of TCM compound compatibilities. The key technical issues, such as the optimization of source material selection, dosage optimization of compatible herbs, and multi-objective optimization indicators, were discussed. Furthermore, the evaluation methods for component effects were summarized during the optimization process, so as to provide scientific and practical foundations for innovative research in TCM and the development of new drugs based on TCM compounds.
6.Dihuang Yinzi Improves Cognitive Function of Mouse Model of Learning and Memory Impairments by Regulating Synaptic Plasticity via SIRT2
Wenting WANG ; Yangjing HAO ; Wenna SU ; Qinqing LI ; Shifeng CHU ; Junlong ZHANG ; Wenbin HE
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(6):9-17
ObjectiveTo investigate the effects of Dihuang Yinzi on the cognitive function in the mouse model of learning and memory impairments induced by scopolamine (SCOP) and explore the treatment mechanism. MethodsA mouse model of learning and memory impairment was induced by intraperitoneal injection of SCOP. Sixty male C57BL/6J mice were randomized into six groups: control (0.9% NaCl, n=10), model (SCOP 1 mg·kg-1·d-1, n=10), low-, medium-, and high-dose Dihuang Yinzi (SCOP 1 mg·kg-1·d-1 + Dihuang Yinzi 5.5, 11.0, and 22.0 g·kg-1·d-1, n=10), and donepezil (SCOP 1 mg·kg-1·d-1 + donepezil 0.84 mg·kg-1·d-1, n=10). Mice were administrated with corresponding drugs for 6 weeks. Modeling started in the 4th week, and mice in other groups except the control group were injected with SCOP intraperitoneally 40 min after daily gavage. Behavioral testing began in the 5th week, 30 min after modeling each day. The Morris water maze and novel object recognition tests were carried out to evaluate the spatial learning and memory function of mice. Nissl staining was employed to observe the survival of neurons and Nissl bodies in the hippocampal CA1 region. Western blot was employed to determine the protein levels of silent information regulator 2 (SIRT2), α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA) receptor 1 (GluA1), protein kinase A (PKA), cAMP response element-binding protein (CREB), phosphorylated-CREB (p-CREB), postsynaptic density protein 95 (PSD95), growth-associated protein-43 (GAP-43), and synaptophysin (SYN) in the hippocampus. Immunofluorescence was used to detect the expression of doublecortin (DCX) in the hippocampal dentate gyrus (DG) region. ResultsCompared with the control group, the model group showed impaired learning and memory (P<0.01), obvious neuronal damage in the hippocampal CA1 region, a reduction in neuron survival (P<0.01), a decrease in DCX expression in the hippocampal DG region (P<0.01), down-regulated proteins levels of GluA1, PKA, p-CREB/CREB, PSD95, SYN, and GAP-43 in the hippocampal tissue (P<0.05, P<0.01), and an up-regulated protein level of SIRT2 (P<0.01). Compared with the model group, the medium- and high-dose Dihuang Yinzi groups and the donepezil group showed improvements in learning and memory (P<0.05, P<0.01), while the low-, medium-, and high-dose Dihuang Yinzi groups and the donepezil group had increased neuron survival (P<0.05, P<0.01). The medium-dose Dihuang Yinzi group and the donepezil group showed increased DCX expression (P<0.05, P<0.01). The medium- and high-dose Dihuang Yinzi groups and the donepezil group showed up-regulation in the protein levels of GluA1, PKA, p-CREB/CREB, PSD95, SYN, and GAP-43 (P<0.05, P<0.01) and down-regulation in the protein level of SIRT2 (P<0.01). ConclusionDihuang Yinzi can improve the cognitive function in the mouse model of learning and memory impairments induced by SCOP by inhibiting the upregulation of SIRT2, activating the PKA/CREB signaling pathway, improving synaptic plasticity, and reducing hippocampal neuronal damage.
7.Application of Recombinant Collagen in Biomedicine
Huan HU ; Hong ZHANG ; Jian WANG ; Li-Wen WANG ; Qian LIU ; Ning-Wen CHENG ; Xin-Yue ZHANG ; Yun-Lan LI
Progress in Biochemistry and Biophysics 2025;52(2):395-416
Collagen is a major structural protein in the matrix of animal cells and the most widely distributed and abundant functional protein in mammals. Collagen’s good biocompatibility, biodegradability and biological activity make it a very valuable biomaterial. According to the source of collagen, it can be broadly categorized into two types: one is animal collagen; the other is recombinant collagen. Animal collagen is mainly extracted and purified from animal connective tissues by chemical methods, such as acid, alkali and enzyme methods, etc. Recombinant collagen refers to collagen produced by gene splicing technology, where the amino acid sequence is first designed and improved according to one’s own needs, and the gene sequence of improved recombinant collagen is highly consistent with that of human beings, and then the designed gene sequence is cloned into the appropriate vector, and then transferred to the appropriate expression vector. The designed gene sequence is cloned into a suitable vector, and then transferred to a suitable expression system for full expression, and finally the target protein is obtained by extraction and purification technology. Recombinant collagen has excellent histocompatibility and water solubility, can be directly absorbed by the human body and participate in the construction of collagen, remodeling of the extracellular matrix, cell growth, wound healing and site filling, etc., which has demonstrated significant effects, and has become the focus of the development of modern biomedical materials. This paper firstly elaborates the structure, type, and tissue distribution of human collagen, as well as the associated genetic diseases of different types of collagen, then introduces the specific process of producing animal source collagen and recombinant collagen, explains the advantages of recombinant collagen production method, and then introduces the various systems of expressing recombinant collagen, as well as their advantages and disadvantages, and finally briefly introduces the application of animal collagen, focusing on the use of animal collagen in the development of biopharmaceutical materials. In terms of application, it focuses on the use of animal disease models exploring the application effects of recombinant collagen in wound hemostasis, wound repair, corneal therapy, female pelvic floor dysfunction (FPFD), vaginal atrophy (VA) and vaginal dryness, thin endometritis (TE), chronic endometritis (CE), bone tissue regeneration in vivo, cardiovascular diseases, breast cancer (BC) and anti-aging. The mechanism of action of recombinant collagen in the treatment of FPFD and CE was introduced, and the clinical application and curative effect of recombinant collagen in skin burn, skin wound, dermatitis, acne and menopausal urogenital syndrome (GSM) were summarized. From the exploratory studies and clinical applications, it is evident that recombinant collagen has demonstrated surprising effects in the treatment of all types of diseases, such as reducing inflammation, promoting cell proliferation, migration and adhesion, increasing collagen deposition, and remodeling the extracellular matrix. At the end of the review, the challenges faced by recombinant collagen are summarized: to develop new recombinant collagen types and dosage forms, to explore the mechanism of action of recombinant collagen, and to provide an outlook for the future development and application of recombinant collagen.
8.Deciphering Molecular Mechanisms of Maxing Shigan Tang Against Pneumonia Based on Transcriptomic and Structural Data
Yingdong WANG ; Haoyang PENG ; Aoyi WANG ; Wuxia ZHANG ; Chen BAI ; Peng LI
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(21):215-222
ObjectiveMaxing Shigan Tang, as a traditional prescription for treating pneumonia, has a remarkable clinical effect. This study aims to systematically investigate the molecular mechanisms of Maxing Shigan Tang in treating pneumonia by integrating its structural and transcriptomic data at the target level. MethodsNP-TCMtarget, a developed systematic network pharmacological model focusing on drug targets, was used to mine the effect targets of Maxing Shigan Tang for treating pneumonia based on the transcriptome data. The structural targets of chemical components in Maxing Shigan Tang were predicted based on the structural information. The intersection of effect targets and structural targets was taken as the direct targets of Maxing Shigan Tang for treating pneumonia, and the remaining effect targets except direct targets were taken as indirect targets. Finally, functional enrichment analysis was performed on these targets to explore the molecular mechanism of Maxing Shigan Tang in treating pneumonia. ResultsA total of 1 604 effect targets and 816 structural targets of Maxing Shigan Tang for treating pneumonia were identified. Maxing Shigan Tang exerted its therapeutic effects through 164 direct targets and 1 440 indirect targets. The functional analysis of 1 604 effect targets predicted 19 significantly enriched pathways. Comprehensive analysis of these pathways showed that these targets were mainly linked to immune and inflammatory responses, such as cytokine-cytokine receptor interaction, necrosis factor (NF)-κB signaling pathway, and helper T cell 17 differentiation. ConclusionFocusing on the hierarchical feature of drug targets and the structural and transcriptomic data, this study systematically reveals the path of herbal component-direct target-indirect target-biological effects of Maxing Shigan Tang in treating pneumonia.
9.Deciphering Molecular Mechanisms of Maxing Shigan Tang Against Pneumonia Based on Transcriptomic and Structural Data
Yingdong WANG ; Haoyang PENG ; Aoyi WANG ; Wuxia ZHANG ; Chen BAI ; Peng LI
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(21):215-222
ObjectiveMaxing Shigan Tang, as a traditional prescription for treating pneumonia, has a remarkable clinical effect. This study aims to systematically investigate the molecular mechanisms of Maxing Shigan Tang in treating pneumonia by integrating its structural and transcriptomic data at the target level. MethodsNP-TCMtarget, a developed systematic network pharmacological model focusing on drug targets, was used to mine the effect targets of Maxing Shigan Tang for treating pneumonia based on the transcriptome data. The structural targets of chemical components in Maxing Shigan Tang were predicted based on the structural information. The intersection of effect targets and structural targets was taken as the direct targets of Maxing Shigan Tang for treating pneumonia, and the remaining effect targets except direct targets were taken as indirect targets. Finally, functional enrichment analysis was performed on these targets to explore the molecular mechanism of Maxing Shigan Tang in treating pneumonia. ResultsA total of 1 604 effect targets and 816 structural targets of Maxing Shigan Tang for treating pneumonia were identified. Maxing Shigan Tang exerted its therapeutic effects through 164 direct targets and 1 440 indirect targets. The functional analysis of 1 604 effect targets predicted 19 significantly enriched pathways. Comprehensive analysis of these pathways showed that these targets were mainly linked to immune and inflammatory responses, such as cytokine-cytokine receptor interaction, necrosis factor (NF)-κB signaling pathway, and helper T cell 17 differentiation. ConclusionFocusing on the hierarchical feature of drug targets and the structural and transcriptomic data, this study systematically reveals the path of herbal component-direct target-indirect target-biological effects of Maxing Shigan Tang in treating pneumonia.
10.Effects of peripheral blood-derived exosomes intervened by Naozhenning on injury of neuron induced by microglia
Li GAO ; Le ZHAO ; Liya WU ; Weiyi ZHANG ; Nan LI ; Nannan WEI ; Yonghui WANG
China Pharmacy 2025;36(19):2393-2398
OBJECTIVE To study the effects of peripheral blood-derived exosomes (Exo) intervened by Naozhenning (NZN) on injury of neuron cells HT22 induced by microglia BV-2 cells. METHODS Wistar rats were selected to prepare peripheral blood- derived Exo intervened by NZN (66.83 g/kg), referred to as NZN-Exo; peripheral blood-derived Exo intervened by normal saline and piracetam (PLXT, 1.62 g/kg) were prepared using the same method, denoted as KB-Exo and PLXT-Exo respectively, and all Exo were subsequently identified. Meanwhile, BV-2 cells were stimulated with 1 μg/mL lipopolysaccharide (LPS) to prepare LPS- stimulated supernatant, and non-LPS-stimulated supernatant was prepared following the same protocol. HT22 cells were divided into four groups: KB-Exo group (treated with non-LPS-stimulated supernatant+KB-Exo), model group (treated with LPS-stimulated supernatant+KB-Exo), PLXT-Exo group (treated with LPS-stimulated supernatant+PLXT-Exo), and NZN-Exo group (treated with LPS-stimulated supernatant+NZN-Exo), with the concentration of the corresponding Exo in all groups being 50 μg/mL. After 24 hours of culture, the proliferation of HT22 cells was detected by the CCK-8 assay and EdU assay; the apoptosis of HT22 cells was detected; the microstructure of HT22 cells was observed; the contents of interleukin-1β (IL-1β), IL-10, nuclear factor-κB (NF- κB), and tumor necrosis factor-α (TNF-α) in HT22 cells were measured, as well as the expression levels of TNF-α, NOD-like receptor thermal protein domain associated protein 3 (NLRP3), Caspase-1, B-cell lymphoma-2( Bcl-2), and Bcl-2-associated X protein (Bax). RESULTS KB-Exo, PLXT-Exo and NZN-Exo were successfully prepared, and all Exo exhibited typical cup-shaped contours and membrane-enclosed characteristics. Compared with KB-Exo group, model group showed significantly decreased cell proliferation rates (detected by CCK-8 and EdU), intracellular IL-10 levels, and Bcl-2 protein expression levels (P<0.05); while the cell apoptosis rate, intracellular levels of IL-1β, TNF-α, and NF-κB, as well as the expression levels of NLRP3, TNF-α, Caspase-1, and Bax proteins were significantly increased (P<0.05). Additionally, in the model group, the cells showed volume swelling, incomplete cell membrane, nucleolar rupture, significant swelling and deformation of mitochondria, and severe vacuolization. Compared with model group, the above quantitative indicators in the PLXT-Exo group and NZN-Exo group were significantly reversed (P<0.05), with large and round cell nuclei, intact nuclear membranes, and reduced mitochondrial vacuolization. CONCLUSIONS Peripheral blood-derived Exo intervened by naozhenning can alleviate the injury of neuronal cells HT22 by inhibiting inflammatory responses and cell apoptosis.


Result Analysis
Print
Save
E-mail