1.A Case of Multidisciplinary Treatment for a Patient with Gorham-Stout Disease
Jing HU ; Ying JIN ; Yan ZHANG ; Ji LI ; Wenhui WANG ; Yue CHI ; Chunxu LI ; Zhenjie ZHANG ; Yaping LIU ; Xiaotian CHU ; Jin XU ; Min SHEN
JOURNAL OF RARE DISEASES 2026;5(1):52-59
Gorham-Stout disease(GSD) is a rare osteolytic disorder characterized by spontaneous and progressive osteolysis, along with abnormal angiogenesis and lymphangiogenesis, with no new bone formation. We present a case of a 15-year-old female admitted due to " recurrent right leg pain for 5 years, 11 months after undergoing right femoral fracture surgery". Through comprehensive integration of the patient's clinical phenotype, laboratory tests, imaging findings, pathological examinations, and molecular biological test results, GSD was considered highly likely. A multidisciplinary treatment approach was conducted, including a combination of zoledronic acid and sirolimus to inhibit osteolysis, along with rehabilitation training and orthopedic intervention, providing a personalized and comprehensive treatment strategy.
2.Regulatory mechanisms of the corticospinal tract after spinal cord injury:combined therapeutic strategies targeting transcription factors and signaling pathways
Zhenjie GUAN ; Wenyuan LI ; Rui GENG ; Ying WANG
Chinese Journal of Tissue Engineering Research 2025;29(24):5158-5170
BACKGROUND:Current strategies for the treatment of the corticospinal tract after spinal cord injury mainly focus on exercise rehabilitation,drug therapy,transcranial magnetoelectric stimulation,endogenous regulation such as transcription factors and specific signaling pathways.Among them,transcription factors and their specific signaling pathways are the key factors regulating the axonal regeneration of corticospinal tract after spinal cord injury.A large number of preclinical studies have confirmed that the synergy between transcription factors and their signaling pathways has a significant regulatory effect on the axonal regeneration of neurons in the corticospinal tract after spinal cord injury.Therefore,it has broad application prospects to explore new combination therapy strategies targeting transcription factors and specific signaling pathways for spinal cord injury.OBJECTIVE:To systematically summarize the regulatory effects of transcription factors and their signaling pathways on the axonal regeneration of neurons in the corticospinal tract after spinal cord injury and the underlying molecular mechanisms,and explore the application of combined therapy strategies targeting transcription factors and signaling pathways in the neuroplasticity of the corticospinal tract after spinal cord injury,in order to provide a new combination strategy for the treatment of spinal cord injury.METHODS:The search terms included"spinal cord injury,axon regeneration,transcription factors,signaling pathway,corticospinal tract,central nervous system,synergistic system,neuroprotective system"in Chinese and English.A literature retrieval was conducted in WanFang,Web of Science,and PubMed for relevant literature published from database inception to September 2024.Finally,101 articles were included for analysis and summary.RESULTS AND CONCLUSION:(1)The article outlines the biological properties and intervention strategies for axonal regeneration of the corticospinal tract after spinal cord injury,analyses the reasons for focusing on the corticospinal tract after spinal cord injury,and elucidates the response and possibility of regeneration of the corticospinal tract after spinal cord injury.(2)In this study,the combined regulatory strategy of transcription factors centered on Krüppel-like factor 6,Krüppel-like factor 7,and neuronal restriction silencing factor can significantly promote the axonal regeneration of neurons in the corticospinal tract after spinal cord injury.(3)The phosphatidylinositol 3-kinase-protein kinase B-rapamycin target protein signaling pathway and Wnt5a pathway are the classical signaling pathways fortranscription factors to regulate the axonal regeneration of corticospinal tract neurons,and the combined treatment strategy can effectively promote the axonal regeneration and functional reconstruction of corticospinal tract neurons after spinal cord injury.(4)This article discusses the combined treatment strategies of transcription factors and specific signaling pathways in a comprehensive and detailed manner,such as Krüppel-like factor 6 combined with signal transducer and activator of transcription 3,Krüppel-like factor 7 combined with SOX11 transcription factor,combined inhibition of phosphatase and tensin homologs and neuronal restriction silencing factor,etc.,to exert a synergistic effect and promote the axonal regeneration of corticospinal tract neurons after spinal cord injury,which are significantly better than those of single treatment.It can effectively improve functional recovery and provide a reference scheme for the future treatment of axonal regeneration of corticospinal tract neurons after spinal cord injury.However,the specific mechanism of the combination therapy still needs to be further studied,and the current combination strategy is only widely used in animal models but not in clinical practice.(5)The combined therapy strategy based on transcription factors and specific signaling pathways has a significant therapeutic effect on the axonal regeneration of corticospinal tract neurons after spinal cord injury,and it is necessary to further explore the molecular mechanism of joint regulation in the future,in order to provide an effective combined therapy strategy for the rehabilitation and functional reconstruction of spinal cord injury.
3.Expert consensus on visualized tele-round and quality control management based on the improvement of clinical practice ability
Wanhong YIN ; Xiaoting WANG ; Ran ZHOU ; Dawei LIU ; Yan KANG ; Yaoqing TANG ; Xiaochun MA ; Jianguo LI ; Zhenjie HU ; Haitao ZHANG ; Wei HE ; Lixia LIU ; Wenjin CHEN ; Ran ZHU ; Jun WU ; Hongmin ZHANG ; Lina ZHANG ; Wenzhao CHAI ; Shihong ZHU ; Wangbin XU ; Rongqing SUN ; Xiangyou YU ; Tianjiao SONG ; Ying ZHU ; Hong REN ; Ai SHANMU ; Qing ZHANG ; Wei FANG ; Xiuling SHANG ; Liwen LYU ; Shuhan CAI ; Xin DING ; Heng ZHANG ; Guang FENG ; Lipeng ZHANG ; Bo HU ; Dong ZHANG ; Weidong WU ; Feng SHEN ; Xiaojun YANG ; Zhenguo ZENG ; Qibing HUANG ; Xueying ZENG ; Tongjuan ZOU ; Milin PENG ; Yulong YAO ; Mingming CHEN ; Hui LIAN ; Jingmei WANG ; Yong LI ; Feng QU ; Gang YE ; Rongli YANG ; Xiukai CHEN ; Suwei LI ; Juxiang WANG ; Yangong CHAO
Chinese Journal of Internal Medicine 2025;64(2):101-109
Turning to critical illness is a common stage of various diseases and injuries before death. Patients usually have complex health conditions, while the treatment process involves a wide range of content, along with high requirements for doctor′s professionalism and multi-specialty teamwork, as well as a great demand for time-sensitive treatments. However, this is not matched with critical care professionals and the current state of medical care in China. Telemedicine, which shortens the distance of medical professionals and the gap of disease diagnosis and treatments in various regions through electronic information, can effectively solve the current problem. Therefore, there is an urgent need to develop a standardized, high-quality visualization telemedicine round system .Therefore, experts have been organized to search domestic and foreign literature on telemedicine round for critically ill patients and to form this consensus based on clinical experiences so as to further improve the level of critical care treatments in regions.
4.Research progress of basic helix-loop-helix E40 in immune cells
Zhenjie LUO ; Dengrong ZHANG ; Chunyao LIU ; Ling GAO ; Xianping LONG ; Song WANG
Chinese Journal of Immunology 2025;41(6):1512-1516
Immune cells are formed by the proliferation and differentiation of hematopoietic stem cells in the bone marrow,in-cluding lymphocytes,macrophages,etc,which participate in the immune defense,immune stability and immune monitoring of the body,and are an indispensable basic component of the immune system.Basic helix-loop-helix family member E40(BHLHE40)has been shown to play an important role in adipogenesis,tumorigenesis,circadian rhythm and hypoxia response.Recently,it was found that BHLHE40 plays a key role in the cell cycle,proliferation and cytokine production of immune cells.This article will review the discovery,naming,structure,and mechanism of BHLHE40 in various periods,as well as it's research progress in immune cells,in order to provide new target for the treatment of immune-related diseases at the genetic level.
5.Antimicrobial resistance surveillance in the bacterial strains isolated from pediatric intensive care units in China:results from 2020 to 2022
Jing LIU ; Huiyuan YAN ; Gangfeng YAN ; Guoping LU ; Pan FU ; Chuanqing WANG ; Danqun JIN ; Wenjia TONG ; Chenyu ZHANG ; Jianli CHEN ; Yi LIN ; Jia LEI ; Yibing CHENG ; Qunqun ZHANG ; Kaijie GAO ; Yuanyuan CHEN ; Shufang XIAO ; Juan HE ; Li JIANG ; Huimin XU ; Yuxia LI ; Hanghai DING ; Hehe CHEN ; Yao ZHENG ; Qunying CHEN ; Ying WANG ; Hong REN ; Chenmei ZHANG ; Zhenjie CHEN ; Mingming ZHOU ; Yucai ZHANG ; Yiping ZHOU ; Zhenjiang BAI ; Saihu HUANG ; Lili HUANG ; Weiguo YANG ; Weike MA ; Qing MENG ; Pengwei ZHU ; Yong LI ; Yan XU ; Yi WANG ; Yanqiang DU ; Huijun CAI ; Bizhen ZHU ; Huixuan SHI ; Shaoxian HONG ; Yukun HUANG ; Meilian HUANG
Chinese Journal of Infection and Chemotherapy 2025;25(3):303-311
Objective This study aimed to investigate the antimicrobial resistance profiles of bacterial strains isolated from pediatric intensive care units(PICU)in China for better antimicrobial therapy.Methods Clinical isolates were collected from 17 institutions,including tertiary care children's hospitals and pediatric department of tertiary general hospitals in China from January 1,2020 to December 31,2022.Antimicrobial susceptibility testing was carried out according to a unified protocol using Kirby-Bauer method or automated systems.Results were interpreted according to the breakpoints released by the Clinical and Laboratory Standards Institute(CLSI)in 2020.Results A total of 10 688 isolates were collected,including gram-positive organisms(39.2%)and gram-negative organisms(60.8%).The top three organisms were S.aureus(13.6%,1 453/10 688),A.baumannii(10.0%,1 067/10 688),and coagulase-negative Staphylococcus(9.9%,1 058/10 688).Multi-drug resistant organisms(MDROs)were very common in children.The prevalence of methicillin-resistant Staphylococcus aureus(MRSA),carbapenem-resistant Enterobacterales(CRE),carbapenem-resistant E.coli,carbapenem-resistant K.pneumoniae(CRKP),carbapenem-resistant A.baumannii(CRAB),and carbapenem-resistant P.aeruginosa(CRPA)was 41.1%,19.4%,8.8%,30.9%,67.4%,and 28.8%,respectively.Overall,more than 50%of Enterobacteriales isolates were resistant to cephalosporins,while nearly 25%of Enterobacteriales isolates were resistant to carbapenems.MDROs were highly resistant to commonly used antibiotics.More than 80%of CRE and CRAB strains were resistant to all beta-lactam antibiotics.CRE and CRAB showed low resistance rates to tigecycline and polymyxin.CRPA showed lower resistance rates to piperacillin,beta-lactamase inhibitor combinations than the resistance rates to third and fourth generation cephalosporins.All of the Staphylococcus and Enterococcus isolates were susceptible to vancomycin and tigecycline.None of PRSP strains isolated from meningitis and nonmeningitis samples were resistant to rifampicin,vancomycin,or linezolid.The prevalence of β-lactamase-negative ampicillin-resistant(BLNAR)strains was 43.3%in Haemophilus influenzae.Conclusions MDROs were prevalent in PICU.It is necessary to establish an effective multidisciplinary team(MDT)to control the antimicrobial resistance.
6.Graded enteral nutrition management based on intra-abdominal pressure for ICU patients:a summary of best evidence
Meimei WANG ; Yin'e WANG ; Anhua QIAO ; Wenfang LI ; Zhenjie WANG
Modern Clinical Nursing 2025;24(1):68-76
Objective To search,evaluate and integrate the evidence on enteral nutrition management based on intra-abdominal pressure(IAP)in ICU patients so as to provide an evidence-based basis for a standardised clinical enteral nutrition management for ICU patients with abdominal hypertension.Methods According to the"6S"model,the systematic searches were conducted on CNKI,VIP,SinoMed,Wanfang,Cochrane Library,Medive,UpToDate,International Guidelines Collaboration,Scottish Intercollegiate Guidelines,PubMed,Ovid,Web of Science,Embase,NICE,American Society for Parenteral Enteral Nutrition,World Association for Parenteral Syndromes,European Society of Critical Care,European Society of Clinical Nutrition and Metabolism on the grading of enteral nutrition based on intra-abdominal pressure classification,including guidelines,clinical decision-making,expert consensus,systematic evaluations,summaries of evidence,and original studies closely related to the topic of this study,with a search timeframe up to 31st October 2023.Evidence was extracted and synthesised from the literature that met the quality criteria,taking into account clinical professional judgement.Results A total of 23 articles were retrieved,including four guidelines,one evidence summary,one systematic evaluation,four expert consensuses,six randomized controlled trials,one case-control study and six quasi-experimental studies.Through strict quality evaluation,evidence extraction and summarisation,seven themes with 28 pieces of best evidence were extracted,with IAP grading as the main topic.The themes included definition and grading of abdominal hypertension,IAP monitoring,assessment of target feeding volume,IAP grades I-IV.Conclusion This study summarises the best evidence on graded enteral nutrition management for ICU patients based on IAP.This evidence provides an effective scientific basis on clinical decision-making for ICU professionals.It aims to manage the enteral nutrition for ICU patients with intra-abdominal hypertension using a scientific nursing method,thereby improving the quality of nursing care.
7.Research progress of PD-1 regulating type 2 innate lymphocytes in different diseases
Chunyao LIU ; Dengrong ZHANG ; Tingting BU ; Zhenjie LUO ; Xianping LONG ; Song WANG
Chinese Journal of Immunology 2025;41(2):479-483
Immune disorders play a vital role in the tumors,infections and allergic diseases.As a co-inhibitory molecule that has attracted much attention in recent years,programmed cell death protein 1(PD-1)can participate in immunomodulation in various immune diseases by inhibiting the proliferation and activation of type 2 innate lymphoid cells(ILC2s).ILC2s is a newly discovered subgroup of immune cell families,which is involved in tumor immunity,anti-parasitic infection and tissue damage repair by secreting type 2 cytokines.PD-1 is a major immunosuppressive molecule that can regulate the different immunomodulatory effects of ILC2s in different immune diseases.This article reviews the role and mechanism of PD-1 in regulating ILC2s in different diseases.
8.Construction and application of enterovirus D68 infectious clone expressing enhanced green fluorescent protein
Dong ZHANG ; Fengyu CHI ; Xu ZHANG ; Yuting ZHAO ; Xiaoqian WANG ; Juan LI ; Zhenjie ZHANG ; Jie TONG ; Yuming LI
Chinese Journal of Microbiology and Immunology 2025;45(11):906-913
Objective:To construct a full-length infectious clone of enterovirus D68(EV-D68)expressing enhanced green fluorescent protein(EGFP)by reverse genetics in order to provide an efficient tool for studying the biological characteristics and screening antiviral drugs for EV-D68.Methods:Gene synthesis and overlap PCR techniques were used to construct the full-length clone plasmid pUC57-EV-D68 of EV-D68. The full-length viral sequence was then transferred into the pCAGGS plasmid to obtain the pCAGGS-EV-D68 plasmid. The EGFP gene was amplified and inserted into the pCAGGS-EV-D68 plasmid to construct the pCAGGS-EGFP-EV-D68 plasmid. Then,the two constructed plasmids were transfected into human rhabdomyosarcoma(RD)cells to rescue recombinant viruses RV-EV-D68 and RV-EGFP-EV-D68. The rescued viruses were identified using PCR,Western blot,and immunofluorescence techniques. The antiviral effect of doxycycline was evaluated using the rescued RV-EGFP-EV-D68. Statistical analysis was performed using the two independent samples t-test. Results:The recombinant virus RV-EGFP-EV-D68 capable of expressing EGFP was successfully rescued. Even after 15 serial passages,the virus retained EGFP expression with no significant difference in viral titers compared to the parental virus,indicating its stable passage in RD cells. Besides,the rescued strains exhibited similar replication characteristics to the parental virus. While at 24 and 36 h after infection,the titers of the rescued strains were significantly lower than that of the parental strain(both P<0.05). This study demonstrated that doxycycline significantly reduced the fluorescence intensity of RV-EGFP-EV-D68-infected RD cells( P<0.01). Meanwhile,a negative correlation was observed between the doxycycline concentration and the fluorescence intensity,indicating that the rescued virus could be used for antiviral drug evaluation. Conclusions:This study successfully constructs an infectious clone of EV-D68 expressing EGFP. The rescued recombinant virus RV-EGFP-EV-D68 has been verified to be applicable for the evaluation of antiviral drugs.
9.SHI Zaixiang's Clinical Experience in Using Chaihu Guizhi Ganjiang Decoction (柴胡桂枝干姜汤) to Treat High Fever in Sepsis
Tingting ZHU ; Yingying LIU ; Hailan CUI ; Zhiying REN ; Mingjing SHAO ; Yan BIAN ; Liyan WANG ; Zhenjie CHEN ; Yuan LIU ;
Journal of Traditional Chinese Medicine 2025;66(16):1645-1648
This paper summarizes Professor SHI Zaixiang's clinical experience in treating high fever caused by sepsis using Chaihu Guizhi Ganjiang Decoction (柴胡桂枝干姜汤). He holds that the key pathogenesis of sepsis involves constrained heat in the shaoyang and internal accumulation of water and fluids. The clinical manifestations such as high fever, chills, and alternating sensations of cold and heat are attributed to pathogenic heat constrained in the shaoyang. Meanwhile, soft tissue edema and serous cavity effusions are due to shaoyang dysfunction and internal water retention. In clinical practice, treating sepsis-related high fever requires addressing both the shaoyang-constrained heat and the associated edema and effusions. The therapeutic approach focuses on harmonizing the shaoyang and resolving internal fluids, using Chaihu Guizhi Ganjiang Decoction as the base formula with flexible modifications. Professor SHI emphasizes that this formula shows a rapid antipyretic effect, particularly in cases where multiple anti-infective treatments have failed.
10.Prediction analysis of the number of pre-hospital emergency ambulance trips in Handan based on the LPro Ensemble Model
Feng TIAN ; Chengcheng BI ; Penghui LI ; Haifang ZHANG ; Tingting ZHAO ; Zhenjie YANG ; Xian WANG ; Jiaxuan GU ; Shitao ZHOU ; Zengjun JIN ; Zhen WANG ; Feifei ZHAO ; Xianhui SU ; Longqiang ZHANG ; Saicong LU
Chinese Journal of Emergency Medicine 2025;34(11):1530-1537
Objective:To investigate the application of time series models in forecasting pre-hospital emergency ambulance trips in Handan City and develop the LPro ensemble model for improved prediction accuracy to support emergency resource allocation.Methods:Pre-hospital emergency data from Handan Emergency Medical Command Center (2019-2023) were retrospectively analyzed. From 324 799 original records, 289 949 valid records were included after cleaning. The training set (2019-2022: 215 918 records) included 35 527 records in 2019, 52 015 in 2020, 61 836 in 2021, and 66 540 in 2022. The validation set (2023) contained 74 031 records. ARIMA, linear trend seasonal, exponential smoothing, and Prophet models were fitted to the training set. The LPro ensemble model was constructed using MAPE-based weighting (linear trend seasonal model: 0.38, Prophet: 0.62). Performance metrics included MAPE, RMSE, MAE, and R 2. Results:Data showed annual growth (compound annual growth rate 23.27%) and seasonal patterns (October peaks, February troughs). Ambulance dispatches increased annually with monthly cyclical patterns. For 2023 validation predictions: ARIMA (MAPE 8.76%, RMSE 619, MAE 491, R 2 0.4563), linear trend seasonal (MAPE 9.83%, RMSE 671, MAE 545, R 2 0.3608), Prophet (MAPE 8.43%, RMSE 562, MAE 503, R 2 0.5513), exponential smoothing (MAPE 8.08%, RMSE 643, MAE 410, R 2 0.4124). LPro model showed superior performance (MAPE 7.05%, RMSE 491, MAE 393, R 2 0.6570), with 16.37% lower MAPE, 12.63% lower RMSE, 21.87% lower MAE, and 19.17% higher R 2 versus Prophet. Conclusion:The LPro ensemble model substantially enhances prediction accuracy and reliability, offering scientific support for emergency resource optimization and dispatch scheduling in Handan City.

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