1.Research progress in perioperative immunotherapy for non-small cell lung cancer
Yuanyuan XU ; Feng MAO ; Xiaoke CHEN ; Qiang TAN ; Qingquan LUO
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2026;33(02):318-325
It is very limited that the benefit of perioperative chemotherapy in early non-small cell lung cancer (NSCLC), and the 5-year survival rate is only 5% higher than surgery. Antibodies that block programmed cell death protein 1/programmed death-ligand 1 significantly improve the survival of advanced NSCLC. The value of immunotherapy in early NSCLC is also being explored. This paper firstly summarized and analyzed the progress of immunotherapy in the perioperative period of NSCLC. Secondly, the safety and feasibility of surgical resection after neoadjuvant immunotherapy were discussed. Finally, the clinical value of different therapeutic efficacy prediction indicators was summarized, in order to clarify the current status of immunotherapy in the perioperative period, so as to improve the clinical benefits of early NSCLC patients.
2.Expert consensus on the application of artificial intelligence in lung cancer screening, diagnosis, and treatment (2026 edition)
Wenzhao ZHONG ; Haibo WANG ; Yi HU ; Hao ZHANG ; Jigang DAI ; Junqiang FAN ; Guibin QIAO ; Fan YANG ; Jian HU ; Fengwei TAN ; Xuening YANG ; Qiang PU ; Zihao CHEN ; Hongxia TIAN ; Lunxu LIU ; Hecheng LI ; Xiaolong YAN ; Zongyang YU ; Zhenbin QIU ; Yihua SUN ; Jing HU ; Yuhang SHI ; Zhifei GUO ; Peng ZHANG ; Kezhong CHEN ; Shugeng GAO ; Yilong WU
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2026;33(06):848-856
With the continuous deepening of the concept of precision diagnosis and treatment for lung cancer, how to achieve higher efficiency and accuracy in the screening, diagnosis, and treatment pathways in clinical practice has become an important issue that urgently needs to be overcome. The current clinical difficulty lies in the fact that despite continuous advancements in imaging and molecular diagnostic technologies, there are still limitations in manual efficiency and subjective experience when it comes to massive data analysis and multi-scale feature extraction. Artificial intelligence (AI), especially algorithm systems based on deep learning, is an innovative technology capable of deeply empowering medical big data. This method utilizes algorithms such as convolutional neural networks, combined with radiomics, pathomics, and multi-modal data fusion analysis, demonstrating immense potential in early precise detection and benign-malignant differentiation of pulmonary nodules, digital pathological subtype recognition and non-invasive prediction of driver genes, precise 3D surgical planning and automatic delineation of radiotherapy target volumes, as well as dynamic risk warning during follow-up. This innovative technology provides a brand-new solution for realizing intelligent and individualized lung cancer diagnosis and treatment models. This consensus, based on the latest evidence from evidence-based medicine and combined with the development trends in the AI field and real-world clinical needs, was ultimately formed by gathering the consensus opinions of multidisciplinary experts in radiology, pathology, thoracic surgery, and other fields. The main content covers the application specifications of AI in the three core scenarios of lung cancer screening, diagnosis, and treatment, the technical standards for data collection and algorithm validation, as well as the ethical and regulatory challenges faced at the current stage. It aims to clarify the applicable boundaries of AI as a clinical auxiliary decision support tool, providing scientific guidance and standardized exploration directions for peers currently engaged in or planning to carry out AI-assisted clinical diagnosis, treatment, and translation of lung cancer.
3.Principles, technical specifications, and clinical application of lung watershed topography map 2.0: A thoracic surgery expert consensus (2024 version)
Wenzhao ZHONG ; Fan YANG ; Jian HU ; Fengwei TAN ; Xuening YANG ; Qiang PU ; Wei JIANG ; Deping ZHAO ; Hecheng LI ; Xiaolong YAN ; Lijie TAN ; Junqiang FAN ; Guibin QIAO ; Qiang NIE ; Mingqiang KANG ; Weibing WU ; Hao ZHANG ; Zhigang LI ; Zihao CHEN ; Shugeng GAO ; Yilong WU
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2025;32(02):141-152
With the widespread adoption of low-dose CT screening and the extensive application of high-resolution CT, the detection rate of sub-centimeter lung nodules has significantly increased. How to scientifically manage these nodules while avoiding overtreatment and diagnostic delays has become an important clinical issue. Among them, lung nodules with a consolidation tumor ratio less than 0.25, dominated by ground-glass shadows, are particularly worthy of attention. The therapeutic challenge for this group is how to achieve precise and complete resection of nodules during surgery while maximizing the preservation of the patient's lung function. The "watershed topography map" is a new technology based on big data and artificial intelligence algorithms. This method uses Dicom data from conventional dose CT scans, combined with microscopic (22-24 levels) capillary network anatomical watershed features, to generate high-precision simulated natural segmentation planes of lung sub-segments through specific textures and forms. This technology forms fluorescent watershed boundaries on the lung surface, which highly fit the actual lung anatomical structure. By analyzing the adjacent relationship between the nodule and the watershed boundary, real-time, visually accurate positioning of the nodule can be achieved. This innovative technology provides a new solution for the intraoperative positioning and resection of lung nodules. This consensus was led by four major domestic societies, jointly with expert teams in related fields, oriented to clinical practical needs, referring to domestic and foreign guidelines and consensus, and finally formed after multiple rounds of consultation, discussion, and voting. The main content covers the theoretical basis of the "watershed topography map" technology, indications, operation procedures, surgical planning details, and postoperative evaluation standards, aiming to provide scientific guidance and exploration directions for clinical peers who are currently or plan to carry out lung nodule resection using the fluorescent microscope watershed analysis method.
4.Mechanism of 8-hydroxygenistein in alleviating high-altitude induced heart injury based on network pharmacology,molecular docking,and animal experiment
Chen-yu YANG ; Hong-Qiang TAN ; Yu XIN ; Lin-lin JING ; Hui-ping MA
Chinese Pharmacological Bulletin 2025;41(10):1948-1956
Aim To investigate the mechanism of 8-hydroxygenistein(8-OHG)in mitigating high-altitude induced heart injury(HAHI)via network pharmacolo-gy,molecular docking and animal experiment.Meth-ods 8-OHG-related targets were obtained from Swis-sTargetPrediction,Similarity ensemble approach,Su-perPred and PharmMapper databases.Genecards and OMIM databases were utilized for retrieving HAHI-re-lated targets.Venn diagram was drawn using R pack-age.STRING 11.5 and Cytoscape 3.9.1 were used to construct the protein-protein interaction network and screen core targets.GO and KEGG enrichment analysis were carried out using DAVID database.AutoDock Vi-na software was used for molecular docking.Visualiza-tion was performed using PyMOL 3.0.0 software.The HAHI model was established,and the the mice were randomly divided into the control group,model group and 8-OHG group.Hematoxylin-eosin(HE)staining was used to observe the pathological changes of myo-cardial tissue.Western blot was applied for detecting the expression levels of related proteins in myocardial tissue.Results A total of 73 overlapping targets be-tween 8-OHG and HAHI were screened,with ALB,AKT1,ESR1,HSP90AA1,NFKB1 and MMP9 were regarded as core targets.Molecular docking results in-dicated that 8-OHG had strong binding ability with these core targets.GO functional enrichment analysis obtained 185 biological processes,including negative regulation of apoptosis,response to hypoxia and in-flammatory response,38 cell compositions,including cytosol,cytoplasm,plasma membrane,as well as 71 molecular functions,including protein binding,metal ion binding,enzyme binding and so on.Altogether 55 signaling pathways were identified via KEGG enrich-ment analysis,including PI3 K/Akt signaling pathway,HIF-1 signaling pathway and MAPK signaling pathway.The results of animal experiments showed that 8-OHG could significantly improve the myocardial histopatho-logical change induced by high-altitude hypoxia expo-sure.Western blot results showed that compared with the normal group,the ratio of p-PI3K/PI3K and p-Akt/Akt in the myocardial tissue of mice in the model group significantly decreased,while the protein expres-sion of Beclin-1 and the ratio of LC3B-Ⅱ/LC3B-Ⅰsignificantly increased,while 8-OHG could reverse these changes.Conclusion The mechanism of 8-OHG in alleviating HAHI is related to its activation of PI3K/Akt signaling pathway,thereby inhibiting auto-phagy induced by high-altitude hypoxia exposure.
5.Research on construction of security protection system for medical information system based on key in-formation infrastructure security requirements
Donghai OUYANG ; Qiang TAN ; Huiqiong DENG ; Haiqing LI
Modern Hospital 2025;25(4):595-598
Objective Under the"Key Information Infrastructure Security Protection Requirements for Information Secu-rity Technology"(hereinafter referred to as"Security Protection Requirements"),this study aims to construct a security protec-tion system for medical information systems and improve their security protection capabilities.Methods Starting from the char-acteristics and security requirements of medical information systems,combined with the standard"Security Protection Require-ments",this study discusses and analyzes the construction of six aspects of security protection capabilities:identification,securi-ty protection,detection and evaluation,monitoring and warning,active defense,and event handling,and implements protection for key information infrastructure in medical institutions from both software and hardware aspects.Results A practical,system-atic,and normalized security protection system for medical information systems has been constructed to achieve comprehensive protection of medical information systems.Conclusion Under the requirements of"Security Protection Requirements",it is crucial to establish a comprehensive security protection system for medical information systems and implement the protection of key information infrastructure in medical institutions from both software and hardware aspects.This provides a scientific basis and practical guidance for network security protection in the medical industry.
6.The surgeon's crucial role in the era of transcatheter aortic valve replacement:lifetime management
Tong TAN ; En-jun ZHU ; Hao CUI ; Yong-qiang LAI
Chinese Journal of Interventional Cardiology 2025;33(4):227-230
Transcatheter aortic valve replacement(TAVR)is increasingly being applied in low-risk and younger patients.However,this trend necessitates that cardiac surgeons take on the responsibility of comprehensive lifetime management.This article explores three critical aspects of lifetime management,including the selection of the initial valve,the procedural success and the device success rates of TAVR,and the durability of the valve.Younger TAVR recipients require comprehensive lifetime management strategies,including the potential risk of reintervention.Improving TAVR's procedural and device success rates is the cornerstone of lifetime management,necessitating efforts in surgical strategy and operation to reduce complications.Valve durability is a key guarantee;current surgical bioprosthetic valves show good durability,but long-term data on TAVR valves'durability is still needed.Meanwhile,novel valves are being improved in durability,offering new directions for optimizing lifetime management in TAVR patients.
7.Research on construction of security protection system for medical information system based on key in-formation infrastructure security requirements
Donghai OUYANG ; Qiang TAN ; Huiqiong DENG ; Haiqing LI
Modern Hospital 2025;25(4):595-598
Objective Under the"Key Information Infrastructure Security Protection Requirements for Information Secu-rity Technology"(hereinafter referred to as"Security Protection Requirements"),this study aims to construct a security protec-tion system for medical information systems and improve their security protection capabilities.Methods Starting from the char-acteristics and security requirements of medical information systems,combined with the standard"Security Protection Require-ments",this study discusses and analyzes the construction of six aspects of security protection capabilities:identification,securi-ty protection,detection and evaluation,monitoring and warning,active defense,and event handling,and implements protection for key information infrastructure in medical institutions from both software and hardware aspects.Results A practical,system-atic,and normalized security protection system for medical information systems has been constructed to achieve comprehensive protection of medical information systems.Conclusion Under the requirements of"Security Protection Requirements",it is crucial to establish a comprehensive security protection system for medical information systems and implement the protection of key information infrastructure in medical institutions from both software and hardware aspects.This provides a scientific basis and practical guidance for network security protection in the medical industry.
8.The surgeon's crucial role in the era of transcatheter aortic valve replacement:lifetime management
Tong TAN ; En-jun ZHU ; Hao CUI ; Yong-qiang LAI
Chinese Journal of Interventional Cardiology 2025;33(4):227-230
Transcatheter aortic valve replacement(TAVR)is increasingly being applied in low-risk and younger patients.However,this trend necessitates that cardiac surgeons take on the responsibility of comprehensive lifetime management.This article explores three critical aspects of lifetime management,including the selection of the initial valve,the procedural success and the device success rates of TAVR,and the durability of the valve.Younger TAVR recipients require comprehensive lifetime management strategies,including the potential risk of reintervention.Improving TAVR's procedural and device success rates is the cornerstone of lifetime management,necessitating efforts in surgical strategy and operation to reduce complications.Valve durability is a key guarantee;current surgical bioprosthetic valves show good durability,but long-term data on TAVR valves'durability is still needed.Meanwhile,novel valves are being improved in durability,offering new directions for optimizing lifetime management in TAVR patients.
9.Glycosylated ceramide-related metabolic enzymes and atherosclerosis
Xin TAN ; Qiang WEI ; Yuan-hong LIAO ; Jing-kun LU
Chinese Pharmacological Bulletin 2025;41(6):1005-1010
Atherosclerosis is an arterial lesion involving abnor-mal lipid metabolism and an inflammatory response,and is the initiating factor of many cardiovascular and cerebrovascular dis-eases.Glycosylated ceramides are derivatives of ceramide mole-cules with a glycosylated group attached,which not only affect the structural integrity of cell membranes,but also regulate apop-tosis,inflammation and lipid metabolism,and disorders of glyco-sylated ceramide metabolism are closely related to the occurrence and progression of atherosclerosis.This review focuses on the specific functions of the glycosylated ceramide-related metabolic enzymes glucose ceramide synthetase,glucosylceramide syn-thetase,lactose ceramide synthetase,and galactosidase in athero-sclerosis,as well as their important effects on the development of atherosclerosis.Targeted therapeutic strategies for these meta-bolic enzymes,related drug development and significant potential in atherosclerosis prevention and treatment are also reviewed.
10.Functional mechanism of Qushi Huoxue decoction in treating non-alcoholic fatty liver disease based on network pharmacology and experimental validation
Wei-qiang TAN ; Xiao-ke RAN ; Zhao-quan PAN ; Xu-dong LIU ; Ye-huang WEI ; Xiao-qian GONG ; Rong-rong WANG
Chinese Pharmacological Bulletin 2025;41(9):1761-1768
Aim To verify the therapeutic effect of the Qushi Huoxue decoction(QSHXF)on a mouse model of non-alcoholic fatty liver disease(NAFLD)using network pharmacology and experimental approaches,to examine the changes in the PI3K-AKT-lipid metabo-lism signaling pathway,and to elucidate its molecular mechanisms.Methods The potential active ingredi-ents and targets of the QSHXF were identified using the TCMSP platform.NAFLD-related genes were sourced from the GeneCards,PharmGkb,TTD,and OMIM data-bases.The intersection of drug targets and NAFLD treatment targets was analyzed to identify the key tar-gets of the QSHXF in treating NAFLD.The STRING database and Cytoscape 3.9.1 software were utilized to construct networks linking traditional Chinese medicine active ingredients to disease targets and PPI networks,allowing for the screening of key active ingredients and core targets.GO and KEGG enrichment analyses of the intersecting targets were conducted using R version 4.2.2.The NAFLD model was established by feeding mice a methionine-choline deficient diet for a duration of five weeks.Following successful modeling,low,me-dium,and high doses of the QSHXF were administered for intervention over a period of six weeks.The efficacy was verified and the underlying mechanisms were ex-plored using methods such as HE staining,Oil Red O staining,and Western blot analysis.Results The net-work pharmacology prediction indicated that QSHXF might effectively treat NAFLD through key components such as quercetin and kaempferol,as well as core tar-gets including STAT3,AKT1,and HIF1A.KEGG en-richment analysis further suggested that QSHXF might exert its therapeutic effects on NAFLD via signaling pathways such as AGE-RAGE and PI3K-AKT.Verifi-cation through animal experiments demonstrated that QSHXF could significantly reduce hepatic steatosis and lipid droplet accumulation in NAFLD mice.Specifical-ly,it markedly decreased serum levels of TC,TG,ALT,AST,and LDL,while increasing HDL levels.Addition-ally,the treatment significantly reduced the protein ex-pression levels of p-PI3K,p-AKT,SREBP-1c,FASN,and ACC1 in the liver.Conclusions QSHXF can sig-nificantly enhance liver function,improve blood lipid levels,and alleviate hepatic steatosis in NAFLD mice,with its mechanism potentially linked to the inhibition of the PI3K-AKT-lipid metabolism signaling pathway.

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