1.Expert consensus on clinical application of parenteral direct thrombin inhibitors in perioperative period
Mingyu JIANG ; Yuan BIAN ; Lizhu HAN ; Qinan YIN ; Fengjiao KANG ; Anhua WEI ; Danjie ZHAO ; Lin WANG ; Ying SHAO ; Li TANG ; Yi WANG ; Shuhong LIANG ; Huijuan LIU ; Guirong XIAO ; Yue LI
China Pharmacy 2026;37(6):689-699
OBJECTIVE To form an expert consensus on the clinical application of parenteral direct thrombin inhibitors (DTIs) in patients during the perioperative period. METHODS Led by Sichuan Academy of Medical Sciences & Sichuan Provincial People’s Hospital (the Affiliated Hospital of UESTC), a multidisciplinary working group was established. Through literature review and the Delphi method, clinical questions related to the rational perioperative use of parenteral DTIs were identified. A structured design was adopted using the “Population-Intervention-Comparison-Outcome” framework; systematic searches were conducted in CNKI, Medline, Embase and other databases. Relevant evidence from randomized controlled trials and cohort studies was included and synthesized. Evidence quality was assessed using the Grades of Recommendations Assessment,Development and Evaluation (GRADE) approach, and recommendations were formulated through multiple rounds of Delphi surveys and expert consensus meetings. RESULTS &CONCLUSIONS Seven recommendations (each with an expert consensus rate exceeding 90%) on the use of parenteral DTIs in perioperative patients were developed. These recommendations specify drug selection, dosing ranges, key monitoring points, and safety management strategies for parenteral DTIs in various scenarios, including the perioperative period of ventricular assist device implantation, the perioperative period of cardiac surgery, perioperative patients with lower-extremity atherosclerotic disease, the perioperative period of percutaneous coronary intervention in patients with acute coronary syndrome, the perioperative period of carotid artery stenting in patients with carotid stenosis, the perioperative period of patients with right heart thrombosis, and patients who develop related thrombosis and dysfunction after a central venous catheter insertion. In addition, warning and management pathways for perioperative bleeding and thrombotic events were proposed. This expert consensus, which is formulated based on the best available evidence, provides evidence-based guidance for standardized and individualized use of parenteral DTIs in perioperative period.
2.Influence of CYP2C19 gene polymorphism on platelet function and inflammatory cytokines and analysis of factors associated with poor prognosis in elderly patients with ischemic stroke
Hai LIANG ; Hong ZHANG ; Runan XIA ; Huijuan CHEN ; Mengyu JIANG ; Fanqin LI ; Panpan DI ; Miao YANG
China Pharmacy 2026;37(6):782-787
OBJECTIVE To investigate the influence of CYP2C19 gene polymorphism on platelet function and inflammatory cytokines in elderly patients with ischemic stroke, and to analyze potential factors associated with poor prognosis. METHODS A retrospective study was conducted on elderly patients with ischemic stroke admitted to our hospital from June 2024 to June 2025, wh o underwent CYP2C19 genotype testing and received antiplatelet therapy with clopidogrel. The levels of platelet function indicators and inflammatory cytokines before and after treatment were compared among patients with different metabolic phenotypes. Based on the prognosis at 6 months post-treatment, patients were divided into poor prognosis group and good prognosis group. Univariate analysis was performed on general data, metabolic phenotype, the levels of platelet function indicators and inflammatory cytokines. Variables with P <0.05 and the levels of inflammatory cytokines before treatment were included in a multivariate Logistic regression analysis to identify independent risk factors for poor prognosis. Multiple linear regression was used to further analyze the relationship between metabolic phenotypes and inflammatory cytokines. RESULTS A total of 448 elderly patients with ischemic stroke were included; among them, 162 cases were normal metabolic phenotype, 218 were intermediate metabolic phenotype, and 68 were poor metabolic phenotype. No rapid or ultrarapid metabolic phenotypes were observed. After treatment, platelet aggregation rate, the levels of P-selectin and platelet activated complex-1 (PAC-1), high-sensitivity C-reactive Protein (hs-CRP), interleukin-1β (IL-1β), IL-6 and tumor necrosis factor-α (TNF-α) in the normal metabolic phenotype group, intermediate metabolic phenotype group, and poor metabolic phenotype group (except for platelet aggregation rate, and the levels of P-selectin and PAC-1 in the poor metabolic phenotype group) were significantly lower than those before treatment in the same group. Moreover, the above indicators in the normal metabolic phenotype group were significantly lower than those in the intermediate and poor metabolic phenotype groups at the corresponding time, and the levels of platelet function indicators in the intermediate metabolic phenotype group were significantly lower than those in the poor metabol ic phenotype group at the corresponding time ( P <0.05). Univariate and multivariate Logistic regression analyses showed that combined with hypertension, combined with diabetes mellitus, and intermediate or poor metabolic genotypes were independent risk factors for poor prognosis in elderly patients with ischemic stroke ( P <0.05). Multiple linear regression analysis showed that serum levels of hs-CRP, IL-1β, IL-6 and TNF-α before treatment were significantly higher in patients with intermediate and poor metabolic genotypes compared to those with normal metabolic genotype ( P <0.05), with a greater magnitude of increase in inflammatory cytokines observed in the patients with poor metabolic genotype. CONCLUSIONS The elderly ischemic stroke patients with CYP2C19 intermediate and poor metabolic genotypes have poor inhibition effect on platelet and higher levels of inflammatory cytokines than normal metabolic genotype; CYP2C19 gene polymorphism, and in combination with hypertension and diabetes, can be used as independent predictors of poor prognosis.
3.Risk of latent hypertension in type 2 diabetes patients under the background of AI in healthcare
Huijuan TANG ; Li ZHANG ; Qiumin YE ; Xiaoqin DING ; Xiaorong WANG
Journal of Public Health and Preventive Medicine 2026;37(3):75-79
Objective To explore the influence of the medical and health management model based on artificial intelligence (AI) on type 2 diabetes mellitus (T2DM) combined with masked hypertension (MH). Methods A total of 342 patients with T2DM admitted to the hospital from May 2021 to August 2024 were selected as research subjects, and the incidence rate of MH was counted. All patients were classified into the reference group (routine management) and the study group (AI+medical health management) according to the random number table method, with 171 cases in each group. The self-management, glycolipid metabolism and ambulatory blood pressure were compared between both groups before and after intervention. Results Among the 342 patients with T2DM, MH occurred in 34 cases, with an incidence rate of 9.94% (34/342). The self-management ability in the two groups was improved after 6 months and 12 months of intervention, and the self-management ability was higher in the study group (P<0.05). After 6 months and 12 months of intervention, the glucolipid metabolism indexes in both groups were optimized, and the improvements in the study group were greater (P<0.05). The daytime average systolic blood pressure and diastolic blood pressure, 24 h average systolic blood pressure and diastolic blood pressure were decreased in both groups after 6 months and 12 months of intervention, and the study group showed lower indexes (P<0.05). Conclusion T2DM are prone to MH. AI medical and health chronic disease management can enhance patients' self-management ability, help improve glucose and lipid metabolism, lower blood pressure, and help reduce the risk of MH.
4.Research progress in the role of STMN1 in tumor.
Xingxing MA ; Muzi LI ; La CHEN ; Huijuan MEI ; Ziye RONG
Journal of Central South University(Medical Sciences) 2025;50(6):1052-1059
Stathmin 1 (STMN1) is a microtubule-binding cytoplasmic phosphoprotein that promotes microtubule depolymerization or inhibits microtubule assembly, thereby regulating cytoskeletal organization and cell cycle progression. STMN1 is upregulated in a variety of malignant tumors, where it drives proliferation, invasion, metastasis, and angiogenesis through classic pathways such as nuclear factor-κB (NF-κB), mitogen-activated protein kinase (MAPK), and ferroptosis. STMN1 can also modulate the function of immune cells, thereby influencing antitumor immunity. Clinical data show that its high expression correlates positively with tumor drug resistance and poor prognosis, suggesting that STMN1 has potential as a tumor biomarker and therapeutic molecular target with important clinical significance.
Humans
;
Stathmin/metabolism*
;
Neoplasms/genetics*
;
Biomarkers, Tumor/metabolism*
;
NF-kappa B/metabolism*
;
Cell Proliferation
;
Drug Resistance, Neoplasm
5.Effect of ginsenoside Rb3 on experimental periodontitis in rats.
Hua LI ; Kang ZHANG ; Huijuan QU ; Honghai JI ; Minmin SUN
West China Journal of Stomatology 2025;43(5):711-721
OBJECTIVES:
This study aimed to explore the therapeutic effect and mechanism of ginsenoside Rb3 on experimental periodontitis and bone resorption in rats.
METHODS:
Male SD rats were randomly divided into a control group, a ligation group, an Rb3 group, and a doxycycline (Dox) group for in vivo experiments. A periodontitis model was established by ligating the maxillary second molar, and samples were collected after 3 weeks of drug treatment. Micro-CT assessment of alveolar bone resorption was performed, and hematoxylin-eosin (HE) staining was used to observe pathological changes in periodontal and visceral tissues. Tartrate resistant acid phosphatase (TRAP) staining was applied to detect the formation of osteoclasts in periodontal tissues, and enzyme-linked immunosorbent assay (ELISA) was adopted to detect the serum levels of interleukin (IL)-6, IL-8, immunoglobulin (Ig)M, and IgG. Quantitative polymerase chain reaction (qPCR) was employed to detect the expression of factors related to gingival inflammation and osteoclast formation. Immunofluorescence staining was used to detect phospho-extracellular signal-regulated kinase (p-ERK) expression. In vitro experiments were conducted by pretreating RAW264.7 cells with drugs and adding lipopolysaccharides (LPS) stimulation from Porphyromonas gingivalis (P. gingivalis). IL-1β and IL-6 mRNA expression was detected by qPCR, and Western blot was used to detect the effect of Rb3 on the mitogen-activated protein kinases (MAPKs) signaling pathway.
RESULTS:
Compared with the control group, the ligation group showed significant periodontitis and bone resorption. Compared with the ligation group, the Rb3 group showed a decrease in alveolar bone resorption and osteoclast formation; p-ERK/ERK ratio, IL-1β, IL-6, and nuclear factor of activated T cells (NFATc1) mRNA levels and downstream gene expression in periodontal tissues; serum IL-6, IL-8, IgG, and IgM levels. Rb3 reduced IL-8 and IL-1β mRNA expression levels and p-ERK/ERK and p-p38 MAPK/p38 MAPK ratios in RAW264.7 cells induced by P. gingivalis LPS stimulation.
CONCLUSIONS
Rb3 inhibits inflammation and bone resorption in experimental periodontitis in rats. Compared with Dox, Rb3 has better effects in inhibiting pro-inflammatory factors and osteoclast gene expression and may exert anti-inflammatory effects by activating the MAPK signaling pathway.
Animals
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Ginsenosides/therapeutic use*
;
Rats, Sprague-Dawley
;
Male
;
Periodontitis/pathology*
;
Rats
;
Osteoclasts/drug effects*
;
Interleukin-1beta/metabolism*
;
Interleukin-6/blood*
;
Mice
;
Alveolar Bone Loss
;
Interleukin-8/blood*
;
Immunoglobulin G/blood*
;
RAW 264.7 Cells
;
Transcription Factors
6.Construction of an engineered probiotic strain for efficiently delivering chemokine CXCL12 and application of the strain in diabetic chronic wound healing.
Shengjie LI ; Huijuan SU ; Xiaoting LI ; Jing WEI ; Tingtao CHEN
Chinese Journal of Biotechnology 2025;41(6):2334-2348
Diabetic chronic wounds are characterized by difficult healing, recurrent progression, and high rates of disability and mortality, which make their clinical treatment a medical challenge urgent to be addressed. However, the complex local microenvironment conditions of chronic wounds, such as high protease activity and persistent inflammatory responses, result in low bioavailability of exogenous cytokines (e.g., chemokine CXCL12) at the wound site, limiting their clinical application. In this study, we utilized Lactobacillus plantarum WCFS1 as the chassis to develop an efficient CXCL12 delivery system based on synthetic biology. Subsequently, we evaluated the role of the engineered probiotic strain in promoting the chronic wound healing in diabetic mice. Firstly, we fused the endogenous secretion signal peptide lp_3050 (SPlp_3050) of L. plantarum WCFS1 and the commonly used secretion signal peptide usp45 (SPusp45) of lactic acid bacteria with the reporter gene gusA and inserted them into the pTRK892-P32(pgm) plasmid by molecular cloning. Then, we prepared the engineered strains and characterized the efficacy of the two signal peptides in driving the secretion of GusA. The results showed that SPlp_3050 efficiently drove the secretion of GusA in L. plantarum WCFS1, increasing the activity of GusA in the culture supernatant by nearly five times compared with that of SPlp_3050. Further, we fused SPlp_3050 and codon-optimized CXCL12 gene to construct an engineered probiotic strain Lpw-CXCL12 for CXCL12 delivery. The results demonstrated that the content of CXCL12 in the culture supernatant reached (13.40±0.20) μg/mL. Finally, we found that the engineered probiotic strain Lpw-CXCL12 accelerated chronic wound healing in a diabetic mouse model. In conclusion, these results support an engineered probiotic strain in promoting diabetic chronic wound healing, providing a new strategy and technological foundation for the management of diabetic chronic wounds in the future.
Probiotics
;
Animals
;
Chemokine CXCL12/biosynthesis*
;
Mice
;
Wound Healing
;
Lactobacillus plantarum/metabolism*
;
Diabetes Mellitus, Experimental/complications*
;
Male
7.Progress on body composition assessment techniques and clinical applications in infants
Ting ZHANG ; Mai GAO ; Li ZHANG ; Huijuan LIU ; Yan LI
International Journal of Pediatrics 2025;52(4):248-253
Infancy is a critical period for children's growth and development. During this period,the reasonable increase of fat mass percentage and fat mass index is very important for children's healthy growth. However,excessive increases in fat mass percentage and fat mass index may increase the risk of metabolic related diseases. In China,the research field of body composition in infants is still in the development stage,and the relevant research results and literature are relatively few. This article summarizes the domestic and foreign research on infant body composition,including application techniques,influencing factors and application significance,so as to provide reference for the formulation of domestic infant body composition reference standards and related clinical and scientific research work.
8.Serum levels of YKL-40 and sCD163 in children with henoch-schonlein purpura nephritis and their predictive value for prognosis
Huijuan JIA ; Li TIAN ; Shengyuan LI
International Journal of Laboratory Medicine 2025;46(9):1092-1096,1103
Objective To explore the levels of serum chitinase protein 40(YKL-40)and soluble CD163(sCD163)in children with henoch-schonlein purpura nephritis(HSPN)and their prognostic value.Methods Chil-dren with HSPN treated in the hospital from December 2019 to June 2023 were selected as HSPN group(n=110),while children with Henoch-Schonlein purpura(HSP)were selected as HSP group(n=110)and healthy children were selected as control group(n=110).The levels of urinary microalbumin(U-MA),urea nitrogen(BUN),serum creatinine(Scr),YKL-40 and sCD163 were detected.Pearson and Spearman methods were used to analyze the correlation between serum YKL-40 and sCD163 levels and U-MA,BUN,Scr and the severity of the disease.Receiver operating characteristic(ROC)curve was drawn to analyze the predictive val-ue of serum YKL-40 and sCD163 for the prognosis of HSPN patients.Results The levels of serum YKL-40,sCD163,U-MA,BUN and Scr in HSPN group were higher than those in control group and HSP group(P<0.05),and the levels of serum YKL-40,sCD163,U-MA,BUN and Scr in HSP group were higher than those in control group(P<0.05).With the development of the disease severity,the serum levels of YKL-40,sCD163,U-MA,BUN and Scr in children with HSPN gradually increased(P<0.05).The serum levels of YKL-40 and sCD163 in children with HSPN were positively correlated with the levels of U-MA,BUN and Scr(r=0.653,0.521,0.585,P<0.05;r=0.632,0.507,0.571,P<0.05),and were positively correlated with the severity of the disease(r=0.428,0.417,P<0.05).The levels of YKL-40 and sCD163 in poor prognosis group were higher than those in good prognosis group(P<0.05).The area under the curve(AUC)of serum YKL-40 and SPD163 in predicting the prognosis of children with HSPN was the largest,which was better than that of indi-vidual prediction(Zcombination of the two-YKL-40=2.438,P=0.015,Zcombination of the two-sCD163=2.276,P=0.023).The re-sults of decision curve analysis(DCA)showed that when the high risk threshold was 0.05-0.97,the net bene-fit rate of predicting the prognosis of HSPN children by combining YKL-40 and sCD163 was higher than that predicted by YKL-40 and sCD163 alone.Conclusion The serum levels of YKL-40 and sCD163 in children with HSPN are increased,and the combination of them has high predictive value for the prognosis of children with HSPN.
9.FGF18 induces differentiation of human gingival fibroblasts into osteoblasts by upregulating BMP2
Yali Hou ; Huijuan Liu ; Hao Zhang ; Jingyuan Sun ; Peng Song ; Yueyao Liu ; Hexiang Li
Acta Universitatis Medicinalis Anhui 2025;60(2):279-285
Objective:
To investigate whether fibroblast growth factor 18(FGF18) can induce human gingival fibroblasts(HGFs) isolatedin vitroto differentiate into osteoblast-like cells, and to explore the mechanism of osteogenesis.
Methods :
HGFs were isolated, cultured and identified by tissue block method. The third generation of HGFs were divided into experimental group and control group. FGF18 and L-DMEM was added to the experimental group while L-DMEM was added to the control group.The effects of different concentrations of FGF18(0, 0.01, 0.02, 0.04, 0.06 mg/L) on proliferation of HGFs were detected by Methylthiazolyldiphenyl-tetrazolium bromide(MTT) assay. Alkaline phosphatase(ALP) and alizarin red staining were used to detect the osteogenesis and mineralization ability of the cells after induction. RT-PCR, immunocytochemistry staining, and Western blot were used to detect the expression of genes and proteins related to osteogenesis and BMP2 in the BMP signaling pathway.
Results:
Compared with the control group, the experimental group could promote the proliferation of HGFs at 3, 5, 7, 9, and 11days(P<0.05),ALP activity and mineral salt deposition increased after induction at 14 and 21 days(P<0.05), and the expressions of ALP, OPN, OCN mRNA and BMP2 mRNA in BMP signaling pathway significantly increased(P<0.01). The expressions of OPN, OCN and BMP2 protein at 21 days were significantly higher than those at 14 days(P<0.01).
Conclusion
FGF18 can promote the proliferation of HGFs, and induce the differentiation of HGFs into functional osteoblasts. The osteogenic mechanism is related to the upregulation of BMP2.
10.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.


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