1.Cognitive function disparities among atrial fibrillation patients with varying comorbidities.
Mei-Qi ZHAO ; Ting SHEN ; Man-Lin ZHAO ; Jia-Xin LIU ; Mei-Lin XU ; Xin LI ; Liu HE ; Yu KONG ; Chang-Sheng MA
Journal of Geriatric Cardiology 2025;22(10):859-870
BACKGROUND:
Mild cognitive impairment (MCI) is common in atrial fibrillation (AF) patients and may develop earlier in those with multiple cardiovascular comorbidities, potentially impairing self-management and treatment adherence. This study aimed to characterize the prevalence and profile of MCI in AF patients, examine its associations with cardiovascular comorbidities, and assess how these comorbidities influence specific cognitive domains.
METHODS:
This cross-sectional study analyzed data from AF patients who underwent cognitive assessment between 2017 and 2021. Cognitive status was categorized as MCI or non-MCI based on the Montreal Cognitive Assessment. Associations between comorbidities and MCI were assessed by logistic regression, and cognitive domains were compared using the Mann-Whitney U test.
RESULTS:
Of 4136 AF patients (mean age: 64.7 ± 9.4 years, 64.7% male), 33.5% of patients had MCI. Among the AF patients, 31.2% of patients had coronary artery disease, 20.1% of patients had heart failure, and 18.1% of patients had hypertension. 88.7% of patients had left atrial enlargement, and 11.0% of patients had reduced left ventricular ejection fraction. Independent factors associated with higher MCI prevalence included older age (OR = 1.04, 95% CI: 1.03-1.05, P < 0.001), lower education level (OR = 1.51, 95% CI: 1.31-1.73, P < 0.001), hypertension (OR = 1.28, 95% CI: 1.07-1.52, P = 0.001), heart failure (OR = 1.24, 95% CI: 1.04-1.48, P = 0.020), and lower left ventricular ejection fraction (OR = 1.43, 95% CI: 1.04-1.98, P = 0.028). A higher CHA2DS2-VASc score (OR = 1.27, 95% CI: 1.22-1.33, P < 0.001; ≥ 2 points vs. < 2 points), and greater atherosclerotic cardiovascular disease burden (OR = 1.45, 95% CI: 1.02-2.08, P = 0.040; 2 types vs. 0 type) were linked to increased MCI risk. These above factors influenced various cognitive domains.
CONCLUSIONS
MCI is common in AF and closely associated with cardiovascular multimorbidity. Patients with multiple comorbidities are at higher risk, highlighting the importance of routine cognitive assessment to support self-management and integrated care.
2.Electrochemical Fabrication of Molecularly Imprinted Surface-enhanced Raman Scattering Chips for Highly Selective Detection of Bisphenol A
Shu-Chen LIU ; Man-Mei TIAN ; Zhou-Ya WU ; Yuan-Ting LI
Chinese Journal of Analytical Chemistry 2025;53(10):1631-1641
A portable molecularly imprinted(MIP)surface-enhanced Raman scattering(SERS)chip was fabricated via a green electrochemical approach for highly selective detection of bisphenol A(BPA).This MIP-AuNP/UIO-66/SPE sensor was fabricated through a single-step co-deposition process.The process involved electropolymerization onto a UIO-66 modified screen-printed electrode(SPE),by usingo-phenylenediamine(OPD)as functional monomer and BPA as template,and simultaneously electro-reduction generated gold nanoparticles(AuNPs),which served as the SERS-active substrate.Ultimately,this one-step method formed a three-dimensional porous architecture on the electrode surface.Under 785 nm laser excitation,the sensing chip exhibited a highly sensitive SERS response towards BPA.The intensity of its characteristic peak at 850 cm-1 showed a good linear relationship with logarithm of BPA concentration in the range of 1.0×10-10 to 1.0×10-6 mol/L,with a detection limit of 1.0×10-12 mol/L.More importantly,the fabricated chips maintained highly selective binding affinity for BPA in water samples even in the presence of structural analogs bisphenol F(BPF)and bisphenol S(BPS).When the chip was applied to detection of BPA in water samples from plastic bottle and paper cup,the recovery rates ranged from 94.0%to 103.0%with relative standard deviations(RSD)less than 4.7%.The developed chip offered a highly sensitive and selective solution for detection of trace BPA in complex water samples.
3.Exploration of pharmacodynamic material basis and mechanism of Jinbei Oral Liquid against idiopathic pulmonary fibrosis based on UHPLC-Q-TOF-MS/MS and network pharmacology.
Jin-Chun LEI ; Si-Tong ZHANG ; Xian-Run HU ; Wen-Kang LIU ; Xue-Mei CHENG ; Xiao-Jun WU ; Wan-Sheng CHEN ; Man-Lin LI ; Chang-Hong WANG
China Journal of Chinese Materia Medica 2025;50(10):2825-2840
This study aims to explore the pharmacodynamic material basis of Jinbei Oral Liquid(JBOL) against idiopathic pulmonary fibrosis(IPF) based on serum pharmacochemistry and network pharmacology. The ultra-high performance liquid chromatography-quadrupole time-of-flight tandem mass spectrometry(UHPLC-Q-TOF-MS/MS) technology was employed to analyze and identify the components absorbed into rat blood after oral administration of JBOL. Combined with network pharmacology, the study explored the pharmacodynamic material basis and potential mechanism of JBOL against IPF through protein-protein interaction(PPI) network construction, "component-target-pathway" analysis, Gene Ontology(GO) functional enrichment, and Kyoto Encyclopedia of Genes and Genomes(KEGG) pathway enrichment analysis. First, a total of 114 compounds were rapidly identified in JBOL extract according to the exact relative molecular mass, fragment ions, and other information of the compounds with the use of reference substances and a self-built compound database. Second, on this basis, 70 prototype components in blood were recognized by comparing blank serum with drug-containing serum samples, including 28 flavonoids, 25 organic acids, 4 saponins, 4 alkaloids, and 9 others. Finally, using these components absorbed into blood as candidates, the study obtained 212 potential targets of JBOL against IPF. The anti-IPF mechanism might involve the action of active ingredients such as glycyrrhetinic acid, cryptotanshinone, salvianolic acid B, and forsythoside A on core targets like AKT1, TNF, and ALB and thereby the regulation of multiple signaling pathways including PI3K/AKT, HIF-1, and TNF. In conclusion, JBOL exerts the anti-IPF effect through multiple components, targets, and pathways. The results would provide a reference for further study on pharmacodynamic material basis and pharmacological mechanism of JBOL.
Drugs, Chinese Herbal/pharmacokinetics*
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Animals
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Tandem Mass Spectrometry
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Network Pharmacology
;
Rats
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Chromatography, High Pressure Liquid
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Rats, Sprague-Dawley
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Male
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Idiopathic Pulmonary Fibrosis/metabolism*
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Humans
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Administration, Oral
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Protein Interaction Maps/drug effects*
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Signal Transduction/drug effects*
4.Analysis of patent application status of key technology in capsule endoscopy industry
A-mei HE ; Jie-ru JIANG ; Chun-lin JIN ; Li-man QU ; Shan-shi YANG
Chinese Medical Equipment Journal 2025;46(5):60-65
The patent data in the key technology field of capsule endoscopy industry was retrieved in IncoPat Global Patent Database from January 1,2003 to December 31,2022,and the development trend of key technologies and patent competition in the global capsule endoscopy industry were analyzed in terms of the applicant,concentration of China's patent applications and regional layout.It's pointed out Japan's Olympus company gained advantages in the key technology field,the enterprise played a main role in the innovation of the key technology field,the main exporters and target markets included the United States,South Korea,Japan and China and China became more and more important for the innovation of the key technology field.References were provided for the technology development of capsule endoscopy industry in China.[Chinese Medical Equipment Journal,2025,46(5):60-65]
5.Analysis of patent application status of key technology in capsule endoscopy industry
A-mei HE ; Jie-ru JIANG ; Chun-lin JIN ; Li-man QU ; Shan-shi YANG
Chinese Medical Equipment Journal 2025;46(5):60-65
The patent data in the key technology field of capsule endoscopy industry was retrieved in IncoPat Global Patent Database from January 1,2003 to December 31,2022,and the development trend of key technologies and patent competition in the global capsule endoscopy industry were analyzed in terms of the applicant,concentration of China's patent applications and regional layout.It's pointed out Japan's Olympus company gained advantages in the key technology field,the enterprise played a main role in the innovation of the key technology field,the main exporters and target markets included the United States,South Korea,Japan and China and China became more and more important for the innovation of the key technology field.References were provided for the technology development of capsule endoscopy industry in China.[Chinese Medical Equipment Journal,2025,46(5):60-65]
6.Role of the extracellular signal-regulated kinase pathway in arsenic-induced apoptosis in mouse hippocampal neuron cells
Yao CHEN ; Man YU ; Xin LI ; Yuting WEI ; Xudan LIU ; Huanhuan WANG ; Mei WANG
Journal of China Medical University 2025;54(1):24-29
Objective To investigate the role of reactive oxygen species(ROS)and the extracellular signal-regulated kinase(ERK)/cAMP response element binding protein(CREB)signaling pathway in arsenic-induced apoptosis in HT-22 cells.Methods HT-22 cells were cultured in vitro and exposed to NaAsO2.The cells were divided into the following groups:control group,4,6,8,and 10 μmol/L NaAsO2 groups,NAC(5 mmol/L)group,and NAC(5 mmol/L)+NaAsO2(10 μmol/L)group.ROS levels were measured using a DCFH-DA assay.The expression of ERK/CREB signaling pathway-related and apoptosis-related proteins were analyzed by Western blotting.Apop-tosis rates were evaluated using flow cytometry.Results Compared with the control group,ROS levels in HT-22 cells significantly increased,while p-ERK protein level in the nucleus and p-CREB and Bcl-2 protein levels in the cells significantly decreased in the NaAsO2 only exposed groups(P<0.05).Additionally,the apoptosis rate significantly increased in the 8 and 10 μmol/L NaAsO2 groups compared with the control group(P<0.05).In the NAC+NaAsO2 group,ROS levels and the apoptosis rate significantly decreased while p-ERK protein level in the nucleus and p-CREB and Bcl-2 protein levels in the cells significantly increased compared with the 10 μmol/L NaAsO2 group(P<0.05).Conclusion Arsenic exposure induces oxidative stress,inhibits the nuclear translocation of p-ERK,and dis-rupts the CREB signaling pathway,leading to apoptosis.
7.Role of the extracellular signal-regulated kinase pathway in arsenic-induced apoptosis in mouse hippocampal neuron cells
Yao CHEN ; Man YU ; Xin LI ; Yuting WEI ; Xudan LIU ; Huanhuan WANG ; Mei WANG
Journal of China Medical University 2025;54(1):24-29
Objective To investigate the role of reactive oxygen species(ROS)and the extracellular signal-regulated kinase(ERK)/cAMP response element binding protein(CREB)signaling pathway in arsenic-induced apoptosis in HT-22 cells.Methods HT-22 cells were cultured in vitro and exposed to NaAsO2.The cells were divided into the following groups:control group,4,6,8,and 10 μmol/L NaAsO2 groups,NAC(5 mmol/L)group,and NAC(5 mmol/L)+NaAsO2(10 μmol/L)group.ROS levels were measured using a DCFH-DA assay.The expression of ERK/CREB signaling pathway-related and apoptosis-related proteins were analyzed by Western blotting.Apop-tosis rates were evaluated using flow cytometry.Results Compared with the control group,ROS levels in HT-22 cells significantly increased,while p-ERK protein level in the nucleus and p-CREB and Bcl-2 protein levels in the cells significantly decreased in the NaAsO2 only exposed groups(P<0.05).Additionally,the apoptosis rate significantly increased in the 8 and 10 μmol/L NaAsO2 groups compared with the control group(P<0.05).In the NAC+NaAsO2 group,ROS levels and the apoptosis rate significantly decreased while p-ERK protein level in the nucleus and p-CREB and Bcl-2 protein levels in the cells significantly increased compared with the 10 μmol/L NaAsO2 group(P<0.05).Conclusion Arsenic exposure induces oxidative stress,inhibits the nuclear translocation of p-ERK,and dis-rupts the CREB signaling pathway,leading to apoptosis.
8.Glycyrrhizic acid-based multifunctional nanoplatform for tumor microenvironment regulation.
Meng XIAO ; Zhiqing GUO ; Yating YANG ; Chuan HU ; Qian CHENG ; Chen ZHANG ; Yihan WU ; Yanfen CHENG ; Wui Lau Man BENSON ; Sheung Mei Ng SHAMAY ; George Pak-Heng LEUNG ; Jingjing LI ; Huile GAO ; Jinming ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2024;22(12):1089-1099
Natural compounds demonstrate unique therapeutic advantages for cancer treatment, primarily through direct tumor suppression or interference with the tumor microenvironment (TME). Glycyrrhizic acid (GL), a bioactive ingredient derived from the medicinal herb Glycyrrhiza uralensis Fisch., and its sapogenin glycyrrhetinic acid (GA), have been recognized for their ability to inhibit angiogenesis and remodel the TME. Consequently, the combination of GL with other therapeutic agents offers superior therapeutic benefits. Given GL's amphiphilic structure, self-assembly capability, and liver cancer targeting capacity, various GL-based nanoscale drug delivery systems have been developed. These GL-based nanosystems exhibit angiogenesis suppression and TME regulation properties, synergistically enhancing anti-cancer effects. This review summarizes recent advances in GL-based nanosystems, including polymer-drug micelles, drug-drug assembly nanoparticles (NPs), liposomes, and nanogels, for cancer treatment and tumor postoperative care, providing new insights into the anti-cancer potential of natural compounds. Additionally, the review discusses existing challenges and future perspectives for translating GL-based nanosystems from bench to bedside.
Animals
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Humans
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Antineoplastic Agents/therapeutic use*
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Glycyrrhizic Acid/therapeutic use*
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Liposomes/chemistry*
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Micelles
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Nanoparticles/chemistry*
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Neoplasms/pathology*
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Tumor Microenvironment/drug effects*
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Nanoparticle Drug Delivery System/therapeutic use*
9.One-step Circulating Tumor DNA Microfluidic Sensing Based on Toehold-mediated Entropy-driven Bipedal DNA Walker and Dendritic Hybridization Chain Reaction
Mei YANG ; Yu FU ; He ZHANG ; Wen-Jie MA ; Yu-Hao DOU ; Xin FU ; Man-Xia LI ; Chao-Ran ZENG
Chinese Journal of Analytical Chemistry 2024;52(11):1755-1765
Circulating tumor DNA (ctDNA) in blood,present at low abundance,serves as a critical biomarker for cancer. Precise detection of ctDNA is of great significance for early diagnosis,disease monitoring,and prognosis evaluation. In this study,a microfluidic chip-based entropy-driven bipedal DNA walker combined with dendritic hybridisation chain reaction was designed as a cascade signal amplification strategy for detection of ctDNA in blood in a microfluidic chip. In the presence of the target,toehold A interacted with target and triggerd a bidirectional strand displacement reaction with the aid of fuel strand F,thereby releasing the target and the 8-17 DNAzyme active centre. Among them,the released target was recycled in a new round of entropy-driven chain replacement reaction. Meanwhile,8-17 DNAzyme active center activated by Pb2+would act on the cleavage site of the substrate hairpin at the microbead surface,exposing the capture probes on the surface of the microbead. The numerous capture probes induced a dendritic hybridization chain reaction,which resulted in fluorescent signals being concentrated on the surface of the microbeads. With the breast cancer mutant gene PIK3CAE545K as the target model,under the optimal experimental conditions,the linear range of sensor was 50-10000 fmol/L,the detection limit was 0.94 fmol/L (LOD,3σ),and the regression equation was y=31.65 lgCT+474.08 (CT is the concentration mutant gene PIK3CAE545K sequence,fmol/L). This method showed spiked recoveries between 98.8% and 106.5% when applied to detection of mutant gene PIK3CAE545K in human serum. Characterized by its sensitivity,specificity,anti-interference capability,high throughput,and one-step operation,this method was ideally suited for the rapid analysis of complex samples.
10.Endophytic fungi from Scutellaria baicalensis and the enzyme inhibitory activities of their secondary metabolites
De-Min LI ; Xiao-Di MA ; Kang-Xu WANG ; Mei-Yuan LI ; Man-Ping LUO ; Ying-Ying MENG ; Ai-Mei YANG ; Bei WANG ; Xin-Guo ZHANG
Chinese Traditional Patent Medicine 2024;46(8):2644-2649
AIM To study endophytic fungi from Scutellaria baicalensis Georgi.and the enzyme inhibitory activities of their secondary metabolites.METHODS Six different media were used to isolate and purify endophytic fungi from S.baicalensis by tissue homogenate method.The activities of secondary metabolites were evaluated by targeting different enzymes.The highly active strains were identified by molecular biology combined with morphology,and the highly active chemical components were tracked and separated by modern chromatographic separation technology.RESULTS Sixty-four endophytic fungal strains were isolated from S.baicalensis,and one hundred and twenty-eight secondary metabolites were obtained by fermentation.The samples with certain inhibitory activities against adenosine deaminase(ADA),β-lactamase and tyrosinase(TYR)accounted for 14.06%,3.91%and 18.75%,respectively.Strain HTS-23-2 showed high TYR inhibitory activity,and 99%homology with Aspergillus flavus by molecular identification.One compound was isolated from the fermentation samples and identified as kojic acid.CONCLUSION S.baicalensis harbors a rich diversity of endophytic fungi,which serve as a valuable resource for active substances.

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