1.Construction of evaluation index system of core competence of dental nurses applying digital technology
Ke SHAO ; Lan FU ; Lin LIU ; Na LI
Chinese Journal of Practical Nursing 2025;41(33):2561-2568
Objective:To construct evaluation index system of core competence of dental nurses applying digital technology, and to provide reference for training, assessment and digital technology application capabilities evaluation of dental nurses.Methods:From May to August 2024, literature review, semi-structured interview, Delphi expert letter consultation and analytic hierarchy process were used to build anevaluation index system of core competence of dental nurses applying digital technology and determine the weights of each index.Results:The effective response rate of the two rounds of expert inquiry questionnaires was 100%(26 / 26), the expert authority coefficient of the two rounds of expert correspondence was 0.943, and the Kendall harmony coefficient of the first, second and third indexes in the second round of inquiry were 0.221, 0.261 and 0.200 (all P<0.05), respectively. Finally, the evaluation index system of digital technology application core competence of dental nurses included 7 first-level indicators, 15 second-level indicators and 61 third-level indicators. Conclusions:The evaluation index system of digital technology application core competence of dental nurses established in this study has a high degree of expert authority, concentrated opinions, and scientific and reliable research results. It can provide reference for nursing managers to train, assess and hire dental nurses.
2.Role of TXNIP in lipid deposition of placental trophoblast in gestational diabetes mellitus
Jie YANG ; Jianchao JIA ; Ying ZHANG ; Rina SA ; Dongfang LI ; Zhiying LI ; Na HUANG ; Lan YU
Chinese Journal of Clinical and Experimental Pathology 2025;41(4):483-490
Purpose To investigate the expression of thioredoxin-interacting protein(TXNIP)in placental tissues of gestational diabetes mellitus(GDM)and its role in lipid deposition in the placental trophoblast.Methods The pla-centa tissues of 16 GDM pregnant women and 25 women with normal glucose tolerance(NGT)were collected.Mean-while,in vitro models of high-glucose induced human chorionic trophoblast cells(HTR-8/SVneo)were established,which were divided into normal glucose control group(NG),high glucose group(HG),high glucose+si nonsense in-terference group(HG+siNC)and high glucose+TXNIP siRNA group(HG+siTXNIP).The pathological structure and morphological changes of placenta were observed by HE staining.Lipid droplet formation was detected by oil red O staining.The expression and localization of TXNIP in cells were detected by immunocytochemical EnVision method.The mRNA and protein expression levels of TXNIP and lipogenic protein SREBP1 were detected by real-time fluorescent quantitative PCR and Western blot.The relationships between TXNIP expression and lipid droplet accumulation in-duced by high glucose was analyzed.Results High glucose results in abnormal placental structure of GDM.The area of human chorionic intervillous tissue in placenta of GDM group was decreased,the size of fetal capillaries was different and the lumen was dilated.Compared with those NGT group,the accumulation of lipid droplets and the expression of TXNIP mRNA and protein in placental tissue of GDM were increased(P<0.05).The TXNIP and SREBP1 were up-regulated and the formation of droplets increased in high glucose induced HTR-8/SVneo cells(P<0.05).On the con-trary,TXNIP siRNA transfection reversed the gene expression level and lipid deposition in high glucose induced cells(P<0.05).Conclusion TXNIP is involved in abnormal lipid deposition in the placental trophoblast of GDM.
3.Microglia and peripheral immune cell interactions involved in regulation of ischemic stroke
Fei-yu MA ; Na LI ; Lan LUO ; Xiang CAO
Chinese Pharmacological Bulletin 2025;41(8):1407-1413
Ischemic stroke is the most common type of stroke,characterized by a complex pathophysiology in which inflammato-ry responses play a pivotal role,significantly affecting patient outcomes.Following a stroke,the disruption of the blood-brain barrier facilitates interactions between the central nervous system(CNS)and the peripheral immune system,triggering a cascade of inflammatory responses that exacerbate ischemic brain injury.Microglia(MG),as the primary immune cells of the CNS,are highly sensitive to cerebral ischemia and interact with various peripheral immune cells to regulate the inflammatory response.For instance,neutrophils participate in early MG-mediated in-flammatory responses through the release of neutrophil extracel-lular traps;T cells interact with MG,exerting bidirectional effects on the spread of brain inflammation and tissue repair.Additionally,other immune cells such as B cells,monocytes/macrophages,and dendritic cells contribute to these processes through complex immune regulatory networks,influencing MG's inflammatory functions and its capacity for tissue repair.This re-view delves into the interaction mechanisms between MG and pe-ripheral immune cells,providing novel insights into the dynamic changes of post-stroke inflammation and potential directions for precision therapies aimed at modulating immune balance.
4.Developing a polygenic risk score for pelvic organ prolapse: a combined risk assessment approach in Chinese women.
Xi CHENG ; Lei LI ; Xijuan LIN ; Na CHEN ; Xudong LIU ; Yaqian LI ; Zhaoai LI ; Jian GONG ; Qing LIU ; Yuling WANG ; Juntao WANG ; Zhijun XIA ; Yongxian LU ; Hangmei JIN ; Xiaowei ZHANG ; Luwen WANG ; Juan CHEN ; Guorong FAN ; Shan DENG ; Sen ZHAO ; Lan ZHU
Frontiers of Medicine 2025;19(4):665-674
Pelvic organ prolapse (POP), whose etiology is influenced by genetic and clinical risk factors, considerably impacts women's quality of life. However, the genetic underpinnings in non-European populations and comprehensive risk models integrating genetic and clinical factors remain underexplored. This study constructed the first polygenic risk score (PRS) for POP in the Chinese population by utilizing 20 disease-associated variants from the largest existing genome-wide association study. We analyzed a discovery cohort of 576 cases and 623 controls and a validation cohort of 264 cases and 200 controls. Results showed that the case group exhibited a significantly higher PRS than the control group. Moreover, the odds ratio of the top 10% risk group was 2.6 times higher than that of the bottom 10%. A high PRS was significantly correlated with POP occurrence in women older than 50 years old and in those with one or no childbirths. As far as we know, the integrated prediction model, which combined PRS and clinical risk factors, demonstrated better predictive accuracy than other existing PRS models. This combined risk assessment model serves as a robust tool for POP risk prediction and stratification, thereby offering insights into individualized preventive measures and treatment strategies in future clinical practice.
Humans
;
Female
;
Pelvic Organ Prolapse/epidemiology*
;
Middle Aged
;
Risk Assessment/methods*
;
China/epidemiology*
;
Multifactorial Inheritance
;
Aged
;
Risk Factors
;
Genome-Wide Association Study
;
Genetic Predisposition to Disease
;
Case-Control Studies
;
Adult
;
Polymorphism, Single Nucleotide
;
Genetic Risk Score
;
East Asian People
5.Construction and validation of a mouse model for optically activation of oligodendrocyte precursor cells
Shu-yue WANG ; Bei-na SHENYANG ; Nan-xin HUANG ; Si-wei LI ; Bin YU ; Yu-xin WANG ; Lan XIAO
Acta Anatomica Sinica 2025;56(5):507-514
Objective To develop and validate a transgenic mouse model enabling specific and inducible optogenetic activation of oligodendrocyte precursor cells(OPCs).Methods A conditional allele for the photosensitive opsin chicken opsin 5(cOpn5)(Rosa26-LSL-cOpn5)was generated using CRISPR/Cas9 technology.These mice were subsequently crossed with NG2-CreERT transgenic mice to produce NG2-CreERT;cOpn5 animals.In this model,tamoxifen administration induces Cre-mediated recombination,leading to specific expression of cOpn5 in NG2-positive OPCs.The specificity and efficiency of cOpn5 expression in OPCs were confirmed by immunofluorescent staining.Functional validation of light-induced OPC activation was performed by using calcium imaging in acute brain slices after stimulation with 470 nm blue light.Results Immunofluorescence analysis confirmed robust and specific expression of cOpn5 within NG2-positive OPCs in the brains of tamoxifen-treated NG2-CreERT;cOpn5 mice.Crucially,calcium imaging of acute brain slices from these mice demonstrated a significant increase in intracellular calcium levels in cOpn5-expressing OPCs upon stimulation with 470 nm blue light,indicating successful optogenetic activation.Conclusion We have successfully generated and validated a novel transgenic mouse model(NG2-CreERT;cOpn5)that permits specific and inducible optogenetic activation of OPCs.This model provides a novel tool for subsequent in vivo studies of the role and regulating mechanisms of OPCs in the central nervous system.
6.Establishment and application of ultra-fast real-time PCR for Brucella detection
Zhen-na XU ; Zhi-peng WU ; Wei-bin HONG ; Zhi-shen GUAN ; Qi-ming LIN ; Zuan-lan MO ; Yi-fei YE ; Hai-yan XIE ; Min LI ; Yan-qiu ZHU ; Xiao-jun LI ; Xian-peng ZHANG
Chinese Journal of Zoonoses 2025;41(3):278-283
This study was aimed at establishing a method of ultra-fast quantitative PCR for Brucella detection.We used an exogenous recombinant plasmid as the internal reference and targeted the T4SS secretion system,an important Brucella viru-lence factor,to design specific primers and probes.The sensitivity,specificity,and repeatability of this method were evaluated,and a standard curve was constructed.The coincidence rate of detection findings with this method versus quantitative PCR was determined.This method markedly decreased the detection time to only 10 minutes.The standard curve demonstrated a good linear relationship(Y=-3.410 7x+38.357,R2=0.998 5)with a low minimum detection limit of 10 copies/μL.The method exhibited good specificity and did not specifically amplify several common clinical bacteria other than Brucella.The de-tection of three concentrations of positive plasmids yielded coefficients of variation(CVs)of 0.20%to 0.91%,thus demonstra-ting the method's excellent repeatability.Furthermore,140 clinical samples were analyzed concurrently with the fluorescence PCR method,which yielded a 100%compliance rate and consistent results.Our findings indicated that the Brucella ultra-fast quantitative PCR was ultrafast;had high sensitivity,high specificity,and good specificity;and can be used for the clinical de-tection of Brucella and emergency investigation of epidemics.Therefore,this method is valuable for the early diagnosis of Bru-cella.
7.Association of ApoE,sSema4D,and CypA levels with unfavorable outcome in patients with chronic heart failure
Lan-yu ZHANG ; Qiang-fu HU ; Hang SHEN ; Na LI
Chinese Journal of cardiovascular Rehabilitation Medicine 2025;34(4):533-536
Objective:To analyze the association of apolipoprotein E(ApoE),soluble semaphoring 4D(sSema4D),and cyclophilin A(CypA)levels with unfavorable outcome in patients with chronic heart failure(CHF).Methods:We retrospectively enrolled 108 patients with CHF admitted in the Fifth Affiliated Hospital of Zhengzhou Universi-ty between March 2019 and March 2022.According to the outcome during 6-month follow-up,patients were di-vided into favorable outcome group(n=71)and unfavorable outcome group(n=37).ApoE,sSema4D and CypA levels were compared between the two groups,and multivariate Logistic regression was employed to identify the risk factors of unfavorable outcome within 6-month follow-up in CHF patients.Results:Compared to patients in the favorable outcome group,those in the unfavorable outcome group had significant higher proportion of NYHA classⅣ(59.46%vs.25.35%),serum creatinine[(80.74±3.89)μmol/L vs.(71.36±3.63)μmol/L],ApoE[(69.87±4.25)mg/L vs.(47.36±3.17)mg/L],sSema4D[(916.62±7.32)ng/L vs.(426.42±6.25)ng/L]and CypA[(6.74±1.32)ng/L vs.(4.38±0.72)ng/L](P<0.001 all).Multivariate Logistic regression indicated that NY-HA class Ⅳ(OR=2.782,95%CI 1.166~6.636),serum creatinine(OR=29.893,95%CI 6.782~131.768),ApoE(OR=12.046,95%CI 4.694~30.913),sSema4D(OR=8.390,95%CI 2.260~31.146)and CypA(OR=6.486,95%CI 1.780~23.635)were independent risk factors for unfavorable outcome within 6-month follow-up in CHF patients(P<0.05 or<0.01).Conclusion:The levels of ApoE,sSema4D and CypA were closely associated with short-term unfavorable outcome in patients with chronic heart failure.
8.Construction and validation of a mouse model for optically activation of oligodendrocyte precursor cells
Shu-yue WANG ; Bei-na SHENYANG ; Nan-xin HUANG ; Si-wei LI ; Bin YU ; Yu-xin WANG ; Lan XIAO
Acta Anatomica Sinica 2025;56(5):507-514
Objective To develop and validate a transgenic mouse model enabling specific and inducible optogenetic activation of oligodendrocyte precursor cells(OPCs).Methods A conditional allele for the photosensitive opsin chicken opsin 5(cOpn5)(Rosa26-LSL-cOpn5)was generated using CRISPR/Cas9 technology.These mice were subsequently crossed with NG2-CreERT transgenic mice to produce NG2-CreERT;cOpn5 animals.In this model,tamoxifen administration induces Cre-mediated recombination,leading to specific expression of cOpn5 in NG2-positive OPCs.The specificity and efficiency of cOpn5 expression in OPCs were confirmed by immunofluorescent staining.Functional validation of light-induced OPC activation was performed by using calcium imaging in acute brain slices after stimulation with 470 nm blue light.Results Immunofluorescence analysis confirmed robust and specific expression of cOpn5 within NG2-positive OPCs in the brains of tamoxifen-treated NG2-CreERT;cOpn5 mice.Crucially,calcium imaging of acute brain slices from these mice demonstrated a significant increase in intracellular calcium levels in cOpn5-expressing OPCs upon stimulation with 470 nm blue light,indicating successful optogenetic activation.Conclusion We have successfully generated and validated a novel transgenic mouse model(NG2-CreERT;cOpn5)that permits specific and inducible optogenetic activation of OPCs.This model provides a novel tool for subsequent in vivo studies of the role and regulating mechanisms of OPCs in the central nervous system.
9.Microglia and peripheral immune cell interactions involved in regulation of ischemic stroke
Fei-yu MA ; Na LI ; Lan LUO ; Xiang CAO
Chinese Pharmacological Bulletin 2025;41(8):1407-1413
Ischemic stroke is the most common type of stroke,characterized by a complex pathophysiology in which inflammato-ry responses play a pivotal role,significantly affecting patient outcomes.Following a stroke,the disruption of the blood-brain barrier facilitates interactions between the central nervous system(CNS)and the peripheral immune system,triggering a cascade of inflammatory responses that exacerbate ischemic brain injury.Microglia(MG),as the primary immune cells of the CNS,are highly sensitive to cerebral ischemia and interact with various peripheral immune cells to regulate the inflammatory response.For instance,neutrophils participate in early MG-mediated in-flammatory responses through the release of neutrophil extracel-lular traps;T cells interact with MG,exerting bidirectional effects on the spread of brain inflammation and tissue repair.Additionally,other immune cells such as B cells,monocytes/macrophages,and dendritic cells contribute to these processes through complex immune regulatory networks,influencing MG's inflammatory functions and its capacity for tissue repair.This re-view delves into the interaction mechanisms between MG and pe-ripheral immune cells,providing novel insights into the dynamic changes of post-stroke inflammation and potential directions for precision therapies aimed at modulating immune balance.
10.Expert consensus on intraoperative repositioning for patients with spine fracture and dislocation (version 2025)
Dongmei BIAN ; Ke SUN ; Ningbo CHEN ; Caixia BAI ; Miao WANG ; Yafeng QIAO ; Fei WANG ; Hong WANG ; Feng TIAN ; Mei YAN ; Meng BAI ; Linjuan ZHANG ; Liyan ZHAO ; Yaqing CUI ; Xue JIANG ; Leling FENG ; Ning NING ; Junqin DING ; Lan WEI ; Yonghua ZHAI ; Yu ZENG ; Zengmei ZHANG ; Jiqun HE ; Fenggui BIE ; Hong CHEN ; Zengyan WANG ; Li LI ; Li ZHANG ; Yaying ZHOU ; Bing SHAO ; Ying WANG ; Caixia XIE ; Yanfeng YAO ; Jingjing AN ; Wen SHI ; Xiongtao LIU ; Xiaoyan AN ; Ning NAN ; Lan LI ; Xiaohui GOU ; Qiaomei LI ; Xiuting WU ; Yuqin ZHANG ; Jing LIU ; Fusen XIANG ; Xu XU ; Na MEI ; Jiao ZHOU ; Shan FAN ; Qian WANG ; Shuixia LI
Chinese Journal of Trauma 2025;41(2):138-147
Spine fracture and dislocation are common traumatic spinal conditions that often require surgical intervention due to compromised spinal stability. Surgical approaches include anterior, posterior, and combined anterior-posterior spinal procedures. According to the specific surgical requirements, patients may be placed in the prone position or repositioned between prone and supine positions during surgery. Intraoperative repositioning has become an essential step in patient positioning. However, during repositioning, patients with spinal fracture and dislocation are at increased risk for complications such as hemodynamic instability, nerve injury, and pressure injuries to the skin and soft tissue. Notably, due to the instability of the spinal cord, even minor manipulations can further exacerbate the damage, potentially leading to severe outcomes like paraplegia. Although the current clinical guidelines provide instructive recommendations for standard position, there remains no specific protocols for intraoperative repositioning in patients with spine fracture and dislocation. With a concern for the lack of clinical studies on positioning techniques, risk prevention, and operational norms for special patients, no applicable guidelines or standards are available. A consensus was required to provide clinical reference, meet the requirements of surgical treatment, and minimize the safety risks of patients caused by improper placement of positions. Professional Committee of Operating Room Nursing of Shaanxi Nursing Association organized experts in nursing management and operating room nursing from major hospitals across China to formulate Expert consensus on intraoperative repositioning for patients with spinal fracture and dislocation ( version 2025). The consensus provides 11 recommendations covering pre-repositioning preparation, intraoperative maneuvers, and post-repositioning observation, aiming to provide references for clinical standardization of the intraoperative repositioning process and protection of patients′ safety.

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