1.Effect of Shenqi Yiliu Formula (参芪抑瘤方) Drug-Containing Serum on the Cycle of Gastric Cancer Cell AGS and Wnt/β-Catenin Pathway
Na WEI ; Chongyuan GUO ; Min BAI ; Yaorong AN ; Sichao ZHANG ; Liyang WU ; Yongqiang DUAN
Journal of Traditional Chinese Medicine 2025;66(4):399-406
ObjectiveTo investigate the potential mechanism of Shenqi Yiliu Formula (参芪抑瘤方) in treating precancerous lesions of gastric cancer (PLGC) by the Wnt/β-catenin signaling pathway. MethodsThe CCK-8 assay was used to determine the optimal intervention time for Shenqi Yiliu Formula drug-containing serum and the concentration of the Wnt/β-catenin pathway inhibitor XAV939 depends on the survival rate of AGS gastric cancer cell line. AGS cells were divided into the gastric cancer cell group (15% blank serum), inhibitor group (selected concentration of XAV939), high-dose Shenqi Yiliu Formula group (12% Shenqi Yiliu Formula drug-containing serum + 3% blank serum), medium-dose Shenqi Yiliu Formula group (6% Shenqi Yiliu Formula drug-containing serum + 9% blank serum), and low-dose Shenqi Yiliu Formula group (3% Shenqi Yiliu Formula drug-containing serum + 12% blank serum). Each group was tested in triplicate. After culturing for 24 and 48 hours, cell migration and invasion were assessed by scratch assays; after a selected intervention period (48 hours), cell cycle distribution was analyzed using flow cytometry, Ki67 protein levels were detected by immunofluorescence, the protein levels of Wnt, β-catenin, GSK-3β, and intranuclear T-cell specific factor(TCF) were measured by the protein immunoblotting assay, and the mRNA expressions of these above factors were determined by quantitative real-time PCR. ResultsThe optimal intervention time for Shenqi Yiliu Formula drug-containing serum was determined to be 48 hours, and the effective concentration of XAV939 was 20 μmol/L. Compared with the gastric cancer cell group, Shenqi Yiliu Formula at all doses reduced the cell migration rate at 24 and 48 hours (P<0.05), except for the low-dose group at 24 hours. Compared to the low-dose group at corresponding time points, high- and medium-dose Shenqi Yiliu Formula groups showed significantly reduced migration rates, particularly the high-dose group at 48 hours (P<0.05). Compared with the gastric cancer cell group, the high-dose Shenqi Yiliu Formula and inhibitor groups exhibited reduced protein and mRNA levels of Wnt, β-catenin, and TCF, along with reduced Ki67 protein levels and a decreased proportion of cells in the S and G2 phases of the cell cycle, but GSK-3β protein levels, GSK-3β mRNA expression, and the proportion of cells in the G1 phase increased (P<0.05). Compared to the inhibitor group, the high-dose Shenqi Yiliu Formula group showed a decreased proportion of G1-phase cells and an increased proportion of G2-phase cells (P<0.05), although differences in Wnt and β-catenin protein levels and mRNA expressions were not statistically significant (P>0.05). ConclusionShenqi Yiliu Formula drug-containing serum inhibits the migration and invasion of gastric cancer AGS cells and block the cell cycle at G1 phase, and its underlying mechanism may be related to the regulation of the Wnt/β-catenin signaling pathway.
2.Visualization analysis of artificial intelligence in bone trauma research based on Citespace
Haoran SONG ; Yuqiang ZHANG ; Na GU ; Xiaodong ZHI ; Wei WANG
Chinese Journal of Tissue Engineering Research 2025;29(3):493-502
BACKGROUND:The development of artificial intelligence in the medical field is rapidly advancing,with increasing research on its applications in the field of bone trauma.Through bibliometric analysis,this paper analyzed the research hotspots of artificial intelligence in the field of bone trauma in recent years,and predicted the future research trend. OBJECTIVE:To summarize the development history,research status,hot spots,and future development trends of artificial intelligence technology in the field of bone trauma to provide new insights for future research. METHODS:This study selected relevant literature from the Web of Science core database,covering the period from the inception to August 2023,and retrieved 420 articles related to the application of artificial intelligence,machine learning,and deep learning in the field of bone trauma.After manual screening,202 articles related to this article were exported,and Citespace software was used for visual analysis of cooperation of countries,institutions,cited journals,citation analysis,keyword co-occurrence,and other aspects. RESULTS AND CONCLUSION:(1)The overall number of publications from the 202 selected articles showed an upward trend,indicating significant research potential for future studies.The country with the highest centrality and the highest publication volume was the United States.The University of California(USA)was the most prolific research institution.(2)The top five most commonly used keywords in bone trauma research using artificial intelligence were deep learning,artificial intelligence,bone density,machine learning,and diagnosis.The keyword with the highest centrality was bone density,and the keyword with the highest frequency was deep learning.(3)The top 10 most cited reference papers provided comprehensive insights into the feasibility of applying artificial intelligence techniques to the diagnosis of bone trauma from various perspectives.Among them,eight papers focused on bone and joint injuries and deep convolutional neural networks.One paper discussed the use of deep learning in detecting osteoporosis in CT scans to prevent fragility fractures,while another paper explored the correlation between the application of artificial intelligence in identifying changes in skin texture and the recognition of bone characteristics.(4)In the future,the research hotspots of artificial intelligence will mainly focus on the specific study of fractures caused by bone and joint trauma and osteoporosis.The research trend mainly focuses on improving the performance of artificial intelligence algorithms,using new artificial intelligence technologies to accurately classify and quickly and efficiently diagnose bone injuries,especially for the diagnosis of complex and hidden fractures.By establishing finite element analysis models,more standardized evaluations of bone injuries can be achieved.
3.Serologic and molecular biology analysis of a rare Pk phenotype
Huanhuan GAO ; Na ZHANG ; Wei GENG ; Fansheng KONG
Chinese Journal of Blood Transfusion 2025;38(3):426-430
[Objective] To analyze the serological characteristics and molecular biology results for a Pk phenotype. [Methods] One patient with Pk phenotype upon unexpected antibodies at Jining Blood Center in July 2022 was selected as the study subject. The blood groups and unexpected antibodies of the proband and his second son were identified using serological methods. The sequences of 3-β-N-acetylgalactosaminyltransferase gene (B3GALNT1) and the coding region of α-1,4-galactosyltransferase gene (A4GALT) were amplified and analyzed by PCR direct sequencing, and haploid sequence analysis was carried out on the variant sites of the B3GALNT1 gene. PROVEAN, SIFT, PolyPhen2 and Mutation Taster were used to analyze the effect of mutations on the protein. [Results] Serological test results suggested that the proband was a P
4.Pharmacological Mechanism of Chinese Medicine in Systemic Lupus Erythematosus: A Narrative Review.
Bo-Yu ZHU ; Zhi-Chao LIU ; Zhen-Xi ZHAO ; Hui-Ping HUANG ; Na ZHANG ; Jia XIA ; Wei-Wei CHEN
Chinese journal of integrative medicine 2025;31(2):157-169
Systemic lupus erythematosus (SLE) is a chronic autoimmune disorder affecting multiple systems, characterized by the development of harmful autoantibodies and immune complexes that lead to damage in organs and tissues. Chinese medicine (CM) plays a role in mitigating complications, enhancing treatment effectiveness, and reducing toxicity of concurrent medications, and ensuring a safe pregnancy. However, CM mainly solves the disease comprehensively through multi-target and multi-channel regulation process, therefore, its treatment mechanism is often complicated, involving many molecular links. This review introduces the research progress of pathogenesis of SLE from the aspects of genetics, epigenetics, innate immunity and acquired immunity, and then discusses the molecular mechanism and target of single Chinese herbal medicine and prescription that are commonly used and effective in clinic to treat SLE.
Lupus Erythematosus, Systemic/immunology*
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Humans
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Medicine, Chinese Traditional
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Drugs, Chinese Herbal/pharmacology*
;
Animals
5.Rescuing lysosomal/autophagic defects via nanoapproach: implications for lysosomal/autophagic defect-related diseases.
Xiaodan HUANG ; Yue FANG ; Jie SONG ; Yuanjing HAO ; Yuanyuan CAI ; Pengfei WEI ; Na ZHANG
Journal of Zhejiang University. Science. B 2025;26(9):813-842
The dysfunction of the lysosome and autophagy-lysosome system serves as a driving force for neurodegenerative diseases, metabolic disorders, inflammatory conditions, and other related diseases, closely influencing their onset and progression. Therefore, restoring the function of the lysosome or autophagy-lysosome system has become an increasingly crucial therapeutic strategy in disease management. In this review, we will introduce the lysosomal biogenesis, structure, and function, as well as the biological process of the autophagy-lysosome system. Various diseases closely associated with lysosomal/autophagic dysfunction are also reviewed, emphasizing the significance of targeting the function of the lysosome or autophagy-lysosome system in disease treatment. Finally, we focus on engineered nanomaterials that have the capabilities to restore the function of the lysosome or autophagy-lysosome system, and summarize different strategies and methods for achieving this goal. This review aims to elucidate the latest progress in the field of nanomedicine for lysosomal/autophagic defect-related diseases and inspire the development of innovative and clinically valuable nanomedicines.
Humans
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Lysosomes/physiology*
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Autophagy/physiology*
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Nanomedicine/methods*
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Neurodegenerative Diseases/therapy*
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Animals
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Nanostructures
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Lysosomal Storage Diseases/therapy*
6.Advancements and challenges of acupuncture randomized controlled trials.
Wei Song SEETOH ; Rachel Qin Rui LIM ; Run-Bing XU ; Ming-Xun SUN ; Peng ZHANG ; Mi-Na WANG
Journal of Integrative Medicine 2025;23(4):333-343
Acupuncture is an ancient treatment method used in traditional Chinese medicine and has been popularized worldwide. Over the past decade, there has been an increase in the amount of acupuncture research, mostly comprised of randomized controlled trials (RCTs) that aimed to answer the question on the efficacy of acupuncture. However, poor methodology and low replicability in these acupuncture RCTs have resulted in uncertainty about the efficacy of acupuncture. In this review, current advancements and challenges in acupuncture RCTs, regarding the methodological aspects of randomization, blinding, sham acupuncture and quality of reporting, were discussed. While there have been advancements in various aspects, current acupuncture RCTs still face pressing issues such as inadequate randomization and blinding, unviable sham acupuncture controls, and poor reporting quality. Given these limitations, this review seeks to identify the methodological problems that are responsible for these problems and to suggest solutions that could help to overcome them so as to improve the quality of future studies evaluating the efficacy of acupuncture. Please cite this article as: Seetoh WS, Lim RQR, Xu RB, Sun MX, Zhang P, Wang MN. Advancements and challenges of acupuncture randomized controlled trials. J Integr Med. 2025; 23(4): 333-343.
Acupuncture Therapy
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Humans
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Randomized Controlled Trials as Topic/methods*
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Research Design
7.Chlorogenic acid mitigates glucocorticoid-induced osteoporosis via modulation of HER2/AKT/mTOR signaling pathway.
An-Na XIE ; Sun-Zheng-Yuan ZHANG ; Yu ZHANG ; Jin-Long CAO ; Cheng-Long WANG ; Li-Bo WANG ; Hong-Jin WU ; Jie ZHANG ; Wei-Wei DAI
Journal of Integrative Medicine 2025;23(6):670-682
OBJECTIVE:
Glucocorticoid-induced osteoporosis (GIOP) is a common complication of prolonged glucocorticoid therapy. Chlorogenic acid (CGA), a polyphenol with antioxidant properties that is extracted from traditional Chinese medicines such as Eucommiae Cortex, has potential anti-osteoporotic activity. This study aimed to investigate the possible effects of CGA on GIOP in mice and murine long bone osteocyte Y4 (MLO-Y4) cells and explore the underlying molecular mechanisms.
METHODS:
The protective effects of CGA were initially evaluated in the GIOP mouse model induced by dexamethasone (Dex). The micro-computed tomography, hematoxylin-eosin staining, silver nitrate staining, and serum detection were used to assess the efficacy of CGA for improving bone formation in vivo. Then, network pharmacology analysis was used to predict the potential targets and molecular mechanisms underlying the therapeutic efficacy of CGA against GIOP. After that, 2',7'-dichlorofluorescein diacetate staining, flow cytometry, real-time quantitative reverse transcription polymerase chain reaction, and Western blotting were used to verify the mechanisms of CGA against GIOP in vitro.
RESULTS:
Animal experiments showed that CGA treatment effectively attenuated Dex-induced decreases in bone mass and strength and improved disrupted osteocyte morphology in mice. The protein-protein interaction analysis highlighted erb-b2 receptor tyrosine kinase (ERBB2), which is also known as human epidermal growth factor receptor 2 (HER2), caspase-3, kinase insert domain receptor, matrix metallopeptidase 9, matrix metallopeptidase 2, proto-oncogene tyrosine-protein kinase Src, and epidermal growth factor receptor as core targets. The Kyoto Encyclopedia of Genes and Genomes analysis revealed several significantly enriched pathways (P < 0.05), including the ERBB, phosphoinositide 3 kinase-AKT serine/threonine kinase 1 (AKT), and mechanistic target of rapamycin kinase (mTOR) pathways. Cellular experiments verified that CGA enhanced bone formation and promoted autophagy while inhibiting apoptosis in MLO-Y4 cells exposed to Dex, which was associated with the upregulated expression of HER2 and activation of the HER2/AKT/mTOR signaling pathway.
CONCLUSION
CGA exerted anti-osteoporotic effects against GIOP, partially through targeting osteocytes and modulating the HER2/AKT/mTOR signaling pathway. Please cite this article as: Xie AN, Zhang SZY, Zhang Y, Cao JL, Wang CL, Wang LB, Wu HJ, Zhang J, Dai WW. Chlorogenic acid mitigates glucocorticoid-induced osteoporosis via modulation of HER2/AKT/mTOR signaling pathway. J Integr Med. 2025; 23(6):670-682.
Animals
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Chlorogenic Acid/therapeutic use*
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Osteoporosis/metabolism*
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Signal Transduction/drug effects*
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Proto-Oncogene Proteins c-akt/metabolism*
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TOR Serine-Threonine Kinases/metabolism*
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Mice
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Glucocorticoids/adverse effects*
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Receptor, ErbB-2/metabolism*
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Proto-Oncogene Mas
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Dexamethasone/adverse effects*
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Osteocytes/drug effects*
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Osteogenesis/drug effects*
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Male
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Cell Line
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Mice, Inbred C57BL
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Humans
8.Phenotypic Function of Legionella pneumophila Type I-F CRISPR-Cas.
Ting MO ; Hong Yu REN ; Xian Xian ZHANG ; Yun Wei LU ; Zhong Qiu TENG ; Xue ZHANG ; Lu Peng DAI ; Ling HOU ; Na ZHAO ; Jia HE ; Tian QIN
Biomedical and Environmental Sciences 2025;38(9):1105-1119
OBJECTIVE:
CRISPR-Cas protects bacteria from exogenous DNA invasion and is associated with bacterial biofilm formation and pathogenicity.
METHODS:
We analyzed the type I-F CRISPR-Cas system of Legionella pneumophila WX48, including Cas1, Cas2-Cas3, Csy1, Csy2, Csy3, and Cas6f, along with downstream CRISPR arrays. We explored the effects of the CRISPR-Cas system on the in vitro growth, biofilm-forming ability, and pathogenicity of L. pneumophila through constructing gene deletion mutants.
RESULTS:
The type I-F CRISPR-Cas system did not affect the in vitro growth of wild-type or mutant strains. The biofilm formation and intracellular proliferation of the mutant strains were weaker than those of the wild type owing to the regulation of type IV pili and Dot/Icm type IV secretion systems. In particular, Cas6f deletion strongly inhibited these processes.
CONCLUSION
The type I-F CRISPR-Cas system may reduce biofilm formation and intracellular proliferation in L. pneumophila.
Legionella pneumophila/pathogenicity*
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CRISPR-Cas Systems
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Biofilms/growth & development*
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Phenotype
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Bacterial Proteins/metabolism*
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Gene Deletion
9.Aloe-emodin inhibits scar tissue fibrosis through thrombospondin-1-PI3k-Akt pathway.
Hongbao GENG ; Xingyi ZHANG ; Siwei ZHOU ; Na LI ; Jia LIU ; Xuewei YUAN ; Chunliu NING ; Xudong ZHANG ; Wei HUANG
West China Journal of Stomatology 2025;43(5):636-647
OBJECTIVES:
To propose a hypothesis that aloe-emodin may inhibit scar tissue fibrosis through thrombospondin-1(THBS1)-PI3K-Akt pathway.
METHODS:
By cultivating fibroblasts derived from scar tissue after cleft palate surgery in humans, aloe emodin of different concentrations (10, 20, 30, 40 and 50 μmol/L) was added to the cells which activity was detected. At the same time, transcriptome sequencing was performed on scar tissue and cells, and bioinformatics methods were used to explore potential targets and signaling pathways of scar tissue fibrosis.
RESULTS:
Aloe-emodin had a concentration dependent inhibitory effect on fibroblast proliferation,with the 40 μmol/L concentration group showing the most significant effect. The results of tissue and cell sequencing indicated that differentially expressed genes were significantly enriched in extracellular matrix-receptor interaction pathway, and shared a common differential gene which was THBS1. The ORA analysis results indicated that differentially expressed genes, including THBS1, were significantly enriched in the PI3K-Akt signaling pathway.
CONCLUSIONS
Aloe emodin may inhibit the PI3K-Akt pathway by downregulating THBS1, thereby reducing the proliferation activity of fibroblasts derived from postoperative palatal scar tissue.
Thrombospondin 1/genetics*
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Humans
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Signal Transduction/drug effects*
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Fibroblasts/cytology*
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Proto-Oncogene Proteins c-akt/metabolism*
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Fibrosis
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Phosphatidylinositol 3-Kinases/metabolism*
;
Cicatrix/metabolism*
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Cell Proliferation/drug effects*
;
Anthraquinones/pharmacology*
;
Cells, Cultured
10.Scutellarin reduces apoptosis of nucleus pulposus cells in intervertebral disc degeneration of rat models
Na LI ; Peng ZHANG ; Nan ZHANG ; Wei LIN ; Defeng LIU ; Jihui ZHENG
Basic & Clinical Medicine 2025;45(9):1158-1164
Objective To investigate the effects of scutellarin(SCU)on apoptosis of nucleus pulposus cells and the Janus kinas 2/signal transducer and activator of transcription 3(JAK2/STAT3)signaling pathway in intervertebral disc degeneration(IVDD)model rats.Methods IVDD rats were randomly divided into IVDD group,SCU low and high dose groups(SCU-L,SCU-H groups),SCU high dose+JAK2 activator bispecific protein phosphatase 19(DUSP19)group(SCU-H+DUSP19 group)and control group.Enzyme-linked immunosorbent assay(ELISA)method was applied to detect inflammatory factors and oxidative stress level in intervertebral disc tissues.Eosin stai-ning(HE)staining microscopy was used to observe pathological damage of intervertebral disc tissue.Transferase mediated dUTP notch end labeling(TUNEL)staining microscopy was applied to detect apoptosis of nucleus pulpo-sus cells in intervertebral disc tissue.Western blot was applied to detect the expression of JAK2/STAT3 signaling pathway related proteins.Results Animals in the IVDD group were suffered from partial rupture of the fibrous ring in the intervertebral disc tissue,abnormal shrinkage of the nucleus pulposus structure with reduction of nucleus pul-posus cells and blurred boundary with the fibrous ring.The level of TNF-α,IL-1β,ROS and apoptosis rate of nu-cleus pulposus cells,the expression of Bax,cleaved caspase-3,p-JAK2/JAK2,p-STAT3/STAT3 were all elevated and the expression of SOD,type Ⅱ collagen,and polysaccharides decreased(P<0.05).The morphology,cell structure,density of fibrous ring and nucleus pulposus in the intervertebral disc tissue of the SCU-L and SCU-H groups were improved as compared to IVDD group.The degeneration was alleviated to varying degrees.The level of TNF-α,IL-1β,ROS,apoptosis rate of nucleus pulposus cells and the expression of Bax,cleaved caspase-3,p-JAK2/JAK2,p-STAT3/STAT3 were all reduced and the expression of SOD,type Ⅱ collagen,and polysaccha-rides significantly increased(P<0.05).DUSP19 partially reverses the effect of SCU on apoptosis of IVDD rats.Conclusions SCU may alleviate apoptosis of nucleus pulposus cells in IVDD rats.

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