1.Advances in Nanoparticle-Assisted Ultrasound Therapy for Remodeling Immune Microenvironment in Triple-Negative Breast Cancer
Dian ZHANG ; Ning WANG ; Xingchun GAO ; Lik Voon KIEW
Cancer Research on Prevention and Treatment 2026;53(7):556-560
Nanoparticle-assisted ultrasound therapy (NAUT) employs low-frequency ultrasound to in situ activate gold nanoparticles, generating cavitation- and sonodynamic-derived reactive oxygen species that elicit immunogenic cell death and convert the immunologically “cold” triple-negative breast cancer (TNBC) microenvironment into a “hot” phenotype. Benefiting from its physical targeting precision, minimal invasiveness, and potent immuno-sensitization, NAUT surpasses conventional chemotherapy or single-agent immune checkpoint inhibitors in overcoming TNBC heterogeneity and eradicating minimal residual disease. In this review, the mechanistic advances of NAUT are summarized, the design of smart nanoplatforms is highlighted, its synergistic efficacy with immune checkpoint inhibitors is evaluated, and the clinical potential and challenges of NAUT in eradicating minimal residual disease are discussed. This review offers a new paradigm for precision physical-immunotherapy of TNBC.
2.Adaptability and Strategic Configuration of Performance Appraisal Tools in Public Hospitals under the Annual Salary System
Yuting WANG ; Dian ZHOU ; Shinu YANG
Chinese Hospital Management 2025;45(6):31-36
Objective To explore the suitability of performance appraisal tools in the annual salary system reform of public hospitals,and to propose a differentiated configuration plan to optimize the effectiveness of the compensation system.Methods Through the formula deduction and deductive method,it systematically assesses the suitability and conflict points of the three tools of KPI,RBRVS and 360-degree appraisal under the framework of the annual salary system,and the comparative research method,and propose a differentiated configuration scheme based on multi-dimensional scenarios.Results KPI is suitable for short-term efficiency goals but needs to prevent quantitative bias,RBRVS embodies technical value in technology-driven departments but there is a risk of profit-seeking,and 360-degree assessment strengthens long-term development but the implementation cost is high.It needs to be dynamically adjusted in combination with the regional economic level,hospital scale and departmental functions,and implemented with the technical support of information technology.Conclusion Public hospitals should differentiate the selection of performance appraisal tools according to the specific context and establish a dynamic adjustment mechanism to realize the benign interaction between the appraisal tools and the annual salary system reform,and to promote the sustainable development of hospitals and the enhancement of the value of medical services.
3.Deep learning image reconstruction algorithm in brain CT perfusion imaging with low tube voltage and reduced contrast agent dosage
Mengyuan ZHANG ; Luotong WANG ; Dian YUAN ; Yicun ZHANG ; Ke QI ; Weiting ZHANG ; Jiong ZHANG ; Songwei YUE ; Jianbo GAO ; Jie LIU
Chinese Journal of Medical Imaging Technology 2025;41(5):799-805
Objective To observe the value of deep learning image reconstruction(DLIR)algorithm in brain CT perfusion(CTP)using a protocol of 70 kVp and 40 ml contrast agent dose.Methods Totally 105 patients with suspected acute ischemic stroke(AIS)were prospectively enrolled and randomly divided into 3 groups,who underwent standard dose CTP scanning with 80 kVp and 150 mA combined with reconstruction as adaptive statistic iterative reconstruction V(ASIR-V)at 50%level(CN group,n=35),low dose(LD)scanning with 70 kVp and 100 mA combined with DLIR reconstruction at the highest level(DLIR-H)(LD group,n=35),or ultra-low dose(ULD)scanning with 70 kVp and 70 mA combined with DLIR-H reconstruction(ULD group,n=35).Radiation doses were compared among 3 groups.CT values and standard deviations(SDCT)of ROI of gray matter and white matter in the frontal,parietal and temporal lobes were measured.Signal-to-noise ratio(SNR)and contrast-to-noise ratio(CNR)between gray and white matter were calculated and compared among groups.Then pseudo-color images of cerebral blood volume(CBV),cerebral blood flow(CBF),mean transit time(MTT)and time to maximum of the tissue residual function(Tmax)were generated.The imaging quality of CTP pseudo-color images was evaluated,and the compatibility of the subjective scores within every kind of CTP pseudo-color images were assessed using Kappa test.Quantitative perfusion parameters were measured and compared among groups.Results Compared with CN group,both LD and ULD groups demonstrated significantly reduced volume CT dose index(CTDIvol),dose-length product(DLP)and effective dose(ED)(all adjusted P<0.05).In ULD group,SDCT of white matter in frontal,parietal and temporal lobes were higher than those in CN group,and SDCT of white matter in parietal lobe was also higher than that in LD group(all adjusted P<0.05).No significant difference of SDCT of gray matter was observed among groups(all P>0.05).SNR of white matter in parietal and temporal lobes in both LD and ULD groups were lower than those in CN group(all P<0.05),while no significant difference of SNR of white matter in frontal lobe,nor of gray matter in frontal,parietal and temporal lobes was found among groups(all P>0.05).CNR of gray and white matter in the frontal,parietal and temporal lobes were not significantly different among groups(all P>0.05).High consistency of inter-observer subjective scores of CBV maps,CBF maps and Tmax maps(Kappa of 0.623,0.644 and 0.638,respectively)were noticed,which of MTT maps had moderate consistency(Kappa=0.560).No significant difference of intra-obsever subjective scores of CTP pseudo-color images was found among groups(all P>0.05).CBV,CBF,MTT and Tmax values of gray and white matter in frontal,parietal and temporal lobes were not significantly different among groups(all P>0.05).Conclusion DLIR algorithm applicated in low radiation dose and reduced contrast agent dosage might ensure imaging quality.
4.A Multi-Dimensional Coupling Study on the High-Quality Development of Public Hospitals under the Background of DRG
Haoyu WANG ; Dian ZHOU ; Anyong WANG
Chinese Hospital Management 2025;45(1):1-5
Objective The relationship between the coupling coordination degree of DRG capacity,medical quality and medical cost and the high-quality development level of hospitals under the background of DRG was quantitatively analyzed,and the linear correlation between the efficient collaboration of multiple factors and the high-quality development of hospitals was verified.Methods The relevant indicators of sample hospitals from January 2021 to June 2023 were selected to construct a multi-dimensional evaluation index system of DRG capacity,medical quality and medical cost,and the Delphi method and entropy weight method were used to carry out subjective and objective comprehensive weighting to evaluate the high-quality development level of hospitals.The coupling coordination degree model was used to measure the coordinated development level of DRG capacity,medical quality and medical cost,and then the correlation between the coupling coordination degree and high-quality development of the three was obtained through Pearson correlation.Results The monthly variation of high-quality development represented by the DRG capacity,medical quality and comprehensive medical cost capacity level of the sample hospitals is quite different,and the coupling coordination degree is the highest 0.916 and the lowest is 0.173,showing a preliminary coordination pattern as a whole.The Pearson correlation coefficient between the coupling coordination degree and high-quality development of the three is 0.731,and there is a significant positive correlation.Conclusion The coupling and coordination level of DRG capacity,medical quality and medical cost of the hospital can represent the high-quality development level of the hospital,and the synergy of elements should be paid attention to to help the overall development.
5.Adaptability and Strategic Configuration of Performance Appraisal Tools in Public Hospitals under the Annual Salary System
Yuting WANG ; Dian ZHOU ; Shinu YANG
Chinese Hospital Management 2025;45(6):31-36
Objective To explore the suitability of performance appraisal tools in the annual salary system reform of public hospitals,and to propose a differentiated configuration plan to optimize the effectiveness of the compensation system.Methods Through the formula deduction and deductive method,it systematically assesses the suitability and conflict points of the three tools of KPI,RBRVS and 360-degree appraisal under the framework of the annual salary system,and the comparative research method,and propose a differentiated configuration scheme based on multi-dimensional scenarios.Results KPI is suitable for short-term efficiency goals but needs to prevent quantitative bias,RBRVS embodies technical value in technology-driven departments but there is a risk of profit-seeking,and 360-degree assessment strengthens long-term development but the implementation cost is high.It needs to be dynamically adjusted in combination with the regional economic level,hospital scale and departmental functions,and implemented with the technical support of information technology.Conclusion Public hospitals should differentiate the selection of performance appraisal tools according to the specific context and establish a dynamic adjustment mechanism to realize the benign interaction between the appraisal tools and the annual salary system reform,and to promote the sustainable development of hospitals and the enhancement of the value of medical services.
6.Deep learning image reconstruction algorithm in brain CT perfusion imaging with low tube voltage and reduced contrast agent dosage
Mengyuan ZHANG ; Luotong WANG ; Dian YUAN ; Yicun ZHANG ; Ke QI ; Weiting ZHANG ; Jiong ZHANG ; Songwei YUE ; Jianbo GAO ; Jie LIU
Chinese Journal of Medical Imaging Technology 2025;41(5):799-805
Objective To observe the value of deep learning image reconstruction(DLIR)algorithm in brain CT perfusion(CTP)using a protocol of 70 kVp and 40 ml contrast agent dose.Methods Totally 105 patients with suspected acute ischemic stroke(AIS)were prospectively enrolled and randomly divided into 3 groups,who underwent standard dose CTP scanning with 80 kVp and 150 mA combined with reconstruction as adaptive statistic iterative reconstruction V(ASIR-V)at 50%level(CN group,n=35),low dose(LD)scanning with 70 kVp and 100 mA combined with DLIR reconstruction at the highest level(DLIR-H)(LD group,n=35),or ultra-low dose(ULD)scanning with 70 kVp and 70 mA combined with DLIR-H reconstruction(ULD group,n=35).Radiation doses were compared among 3 groups.CT values and standard deviations(SDCT)of ROI of gray matter and white matter in the frontal,parietal and temporal lobes were measured.Signal-to-noise ratio(SNR)and contrast-to-noise ratio(CNR)between gray and white matter were calculated and compared among groups.Then pseudo-color images of cerebral blood volume(CBV),cerebral blood flow(CBF),mean transit time(MTT)and time to maximum of the tissue residual function(Tmax)were generated.The imaging quality of CTP pseudo-color images was evaluated,and the compatibility of the subjective scores within every kind of CTP pseudo-color images were assessed using Kappa test.Quantitative perfusion parameters were measured and compared among groups.Results Compared with CN group,both LD and ULD groups demonstrated significantly reduced volume CT dose index(CTDIvol),dose-length product(DLP)and effective dose(ED)(all adjusted P<0.05).In ULD group,SDCT of white matter in frontal,parietal and temporal lobes were higher than those in CN group,and SDCT of white matter in parietal lobe was also higher than that in LD group(all adjusted P<0.05).No significant difference of SDCT of gray matter was observed among groups(all P>0.05).SNR of white matter in parietal and temporal lobes in both LD and ULD groups were lower than those in CN group(all P<0.05),while no significant difference of SNR of white matter in frontal lobe,nor of gray matter in frontal,parietal and temporal lobes was found among groups(all P>0.05).CNR of gray and white matter in the frontal,parietal and temporal lobes were not significantly different among groups(all P>0.05).High consistency of inter-observer subjective scores of CBV maps,CBF maps and Tmax maps(Kappa of 0.623,0.644 and 0.638,respectively)were noticed,which of MTT maps had moderate consistency(Kappa=0.560).No significant difference of intra-obsever subjective scores of CTP pseudo-color images was found among groups(all P>0.05).CBV,CBF,MTT and Tmax values of gray and white matter in frontal,parietal and temporal lobes were not significantly different among groups(all P>0.05).Conclusion DLIR algorithm applicated in low radiation dose and reduced contrast agent dosage might ensure imaging quality.
7.Predictive value of color Doppler ultrasound combined with electrocardiogram for right heart dys func-tion in patients with pulmonary heart disease
Wan-wan WU ; Hai-bo SHEN ; Chun-lian MA ; Dian-dong HUANG ; Fang-hong WANG ; Hui-qin WANG ; Li KAN ; Jian SUN ; Ji-wen SHEN ; Meng HUANG
Chinese Journal of cardiovascular Rehabilitation Medicine 2025;34(3):332-337
Objective:To investigate the predictive value of color Doppler ultrasound combined with electrocardio-gram for right heart dys function in patients with pulmonary heart disease(PHD).Methods:A total of 100 PHD patients admitted in Dongcheng Branch of First Affiliated Hospital of Anhui Medical University between January 2020 and December 2023 were retrospectively analyzed.According to results of 6min walking test(6MWT),pa-tients were divided into good right heart function group(n=64,≥350m)and right heart dysfunction group(n=36,<350m).The indexes of cardiac color ultrasound[isovolumic relaxation time(IVRT),isovolumetric contraction time(IVCT)and right ventricular Tei index],ECG[24h mean R-R interval standard deviation(SDNN),normal R-R interval standard deviation per 5min(SDANN)and the ratio of low frequency components to high frequency components(LF/HF)]were compared between two groups.Receiver operating characteristic(ROC)curve was drawn to analyze the diagnostic value of color Doppler ultrasound,ECG and their combination for right heart dys-function in PHD patients.Spearman correlation coefficient was used to analyze the association of color Doppler ul-trasound,ECG and their combination with right heart dysfunction in PHD patients.Results:Compared with those in good right heart function group,patients in right heart dysfunction group had significant higher IVRT[(120.64±14.08)ms vs.(97.87±10.93)ms],IVCT[(84.28±12.33)ms vs.(71.92±10.61)ms]and Tei index[(0.85±0.11)vs.(0.63±0.07)](P<0.001 all),and significant lower SDNN[(75.52±12.58)ms vs.(85.58±11.75)ms],SDANN[(63.86±10.92)ms vs.(76.75±11.71)ms]and LF/HF[(1.33±0.19)vs.(1.84±0.27)](P<0.001 all).ROC curve indicated that the AUC of color Doppler ultrasound combined ECG in diagnosing right heart dysfunction in PHD patients was 0.911(95%CI 0.838~0.959),which was significantly higher than those of color Doppler ultrasound[0.775(95%CI 0.681~0.853),Z=2.404,P=0.016]and ECG[0.688(95%CI 0.588~0.777),Z=3.968,P=0.001]alone.Spearman correlation analysis indicated that there was a significant positive correlation of color Doppler ultrasound(r=0.547),ECG(r=0.375)and their combination(r=0.810)with right heart dysfunction in PHD patients(P<0.001 all),and the correlation between combined detection and right heart dysfunction in PHD patients was significantly higher.Conclusion:Color Doppler ultrasound combined with ECG possesses high diagnostic performance for right heart dysfunction in PHD patients.
8.Research progress of Calpain in fibrotic diseases
Fudan University Journal of Medical Sciences 2025;52(6):897-902
Calpain-mediated fibrosis,a physiological tissue repair process that almost occurs in most of tissues and organs,is closely related to multiple cellular pathways and is widely involved in the progression of diseases.It is believed that the pro-and anti-fibrotic systems are dynamic regulated in vivo,so pathological organ fibrosis still may be controlled and even reversed.This review summarizes the latest researches on the role of Calpain family in different organ fibrosis and the intervention of Calpain inhibitor in fibrosis progression,aiming to providing a reference for the research of Calpain family in fibrotic diseases context.
9.Molecular Mechanisms and Research Progress of Hepatic Injury Induced by Hypercholesterolemia
Xing-tong LAN ; Yi-fan WANG ; Meng-yuan LIU ; Zi-yi GUO ; Jin-bo ZHANG ; Qi-hang WANG ; Yu-dian ZHANG
Progress in Modern Biomedicine 2025;25(17):2865-2874
Hypercholesterolemia is pathologically characterized by abnormal accumulation of low-density lipoprotein cholesterol,which is closely associated with metabolic dysfunction-associated fatty liver disease and increased cardiovascular risks.Hepatocytes maintain cholesterol homeostasis through LDL receptor-mediated uptake and esterification storage mechanisms.However,chronic cholesterol overload induces mitochondrial dysfunction,reactive oxygen species accumulation,and endoplasmic reticulum stress,leading to hepatocyte injury.Moreover,systemic hypercholesterolemia disrupts gut microbiota balance and impairs short-chain fatty acid and ketone metabolism,exacerbating metabolic disturbances and aggravating hepatic injury through enhanced metabolic stress.In this article,we review the advance of studies on hypercholesterolemia in recent years and summary its association with hepatic injury,which can provide theoretical support for further research.
10.Study on the characteristics and mechanisms of skin damage in mice after high-voltage electric shock based on metabolomics
Xiao YANG ; Ping DENG ; Si-yu CHEN ; Jing-dian LI ; Hui WANG ; Yang YUE ; Zheng-ping YU ; Peng GAO ; Hui-feng PI
Journal of Regional Anatomy and Operative Surgery 2025;34(5):379-385
Objective To study the damage effect of high-voltage electric shock on skin based on metabolomics,analyze its metabolic differences,and explore its injury mechanism.Methods A total of 16 SPF C57BL/6J male mice were divided into the electric shock group(head skin received electric shock treatment)and control group(head skin received electric shock acoustic-optical stimulation),and the skin appearance after treatment of mice in the two groups was observed.The histopathological changes caused by electric shock were analyzed by HE staining,EVG staining and Masson staining.GC-MS and LC-MS metabonomics were used to analyze the changes of skin metabolism spectrum and tissue metabolites after electric shock exposure,and the differential metabolites were analyzed.The obtained differential metabolites were combined and KEGG enrichment analysis was conducted.Results After high-voltage electric shock,the skin of mice could be damaged to the dermis,and the epidermis was partially thickened,lifted and separated.The structure of skin appendages in the dermis was destroyed,with a large number of inflammatory cells infiltrating and obvious swelling,accompanied by congestion,which led to severe skin inflammatory reaction and impaired skin barrier function.Metabonomics analysis suggested that the metabolites changed after electric shock exposure.KEGG enrichment analysis showed that electric shock significantly affected the central carbon metabolism pathway of cancer,pentose phosphate pathway,purine metabolism,glycine,serine and threonine metabolism processes,amino acid tRNA biosynthesis mechanism,glycerophospholipid metabolism pathway,pyrimidine metabolism pattern,glycolysis/gluconeogenesis,alanine metabolism process,glucagon signal pathway and so on.Conclusion High voltage electric shock can cause deep skin damage,disturb its energy metabolism and amino acid metabolism,and seriously interfere with its antioxidant and DNA repair system functions.

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