1.The Predictive Value of Murray's Law-based Quantitative Flow Ratio in Side Branches for Long-term Prognosis in Patients With Non-left Main Bifurcation Lesions After Simple Main Branch Stent Implantation
Yueming YAO ; Guoli ZHAO ; Qunxing LI ; Yuan CHANG ; Jie YANG ; Xianzhen PENG ; Chunyuan JIANG ; Qi CHENG ; Jiayu LIU ; Fei YE ; Delu YIN
Chinese Circulation Journal 2025;40(9):870-877
Objectives:To investigate the predictive value of Murray's law-based quantitative flow ratio(μQFR)in side branches for long-term clinical prognosis in patients with non-left main bifurcation lesions who underwent simple main branch stenting,and to provide a potential functional assessment standard for intervention decision-making on coronary bifurcation lesions.Methods:A retrospective analysis was conducted in 408 patients with non-left main bifurcation lesions who underwent simple main branch stenting at Lianyungang First People's Hospital and Nanjing First Hospital between July 2018 and January 2021.The study utilized third-generation QFR software to analyze pre-and post-procedure anatomical and functional parameters of the target lesion's main branch and key branches.The primary endpoint was target vessel failure(TVF)events during the 3-year follow-up.Patients were stratified into TVF and non-TVF groups.Baseline characteristics,procedural data,and pre-/post-procedural parameters of target vessels were compared between groups.Multivariable Cox regression was performed to identify predictors of TVF.Diagnostic efficacy of predictors was evaluated using area under the receiver operating characteristic(ROC)curve(AUC)with DeLong's method for comparison.Patients were dichotomized based on the optimal cutoffof post-procedural side branch μQFR,with TVF incidence rates compared via Cox regression and Kaplan-Meier analysis.Results:During 3-year follow-up,54 patients(13.2%)experienced TVF(TVF group),data were compared with 354 patients(86.76%)without TVF(non-TVF group).The TVF group showed higher post-procedural side branch diameter stenosis([32.93±17.80]%vs.[22.62±11.96]%,P<0.001)and lower μQFR(0.80±0.10 vs.0.89±0.07,P<0.001).Multivariate Cox regression identified higher post-procedural side branch μQFR as an independent protective factor against 3-year TVF(per 0.01 increase:HR=0.903,95%CI:0.850-0.959,P<0.001).ROC curves indicated that post-procedural side branch μQFR had moderate diagnostic efficacy for predicting 3-year TVF(AUC=0.769,95%CI:0.678-0.861,P<0.001),with a significantly higher AUC value than post-operative side branch area stenosis and minimal lumen diameter(both P<0.001),the optimal cutoffvalue was 0.84.Multivariate Cox regression and Kaplan-Meier survival analysis revealed markedly higher 3-year TVF rates in patients with μQFR≤0.84 compared to patients with μQFR>0.84(HR=4.007,95%CI:2.342-6.855,P<0.001;28.3%vs.7.9%,log-rank P<0.001).Conclusions:For patients with bifurcation lesions not involving the left main,the immediate post-procedural side branch μQFR could better predict 3-year TVF than anatomical indices.Maintaining post-stenting side branch μQFR>0.84 may optimize clinical outcomes when using a single-stent strategy.
2.Expression changes and selection of different internal control proteins in acute hypoxia-induced lung injury by acute high-altitude
Jia LIU ; Xiaoyu ZHANG ; Yiman ZHANG ; Fei WANG ; Baochang LAI ; Jun ZHANG ; Tana WUREN ; Xiaohui ZHENG ; Hongyan TIAN ; Qian YIN
Chinese Journal of Comparative Medicine 2025;35(3):90-99,146
Objective The pathophysiological process of acute high-altitude hypoxia-induced lung injury affects protein expression levels,which are mainly evaluated by Western blot.No systematic study has investigated changes in internal control proteins as calibration loading amounts.Methods Lung injury at an altitude of 6000 m was induced in a low-pressure,low-oxygen chamber for 8,24,and 72 h using C57BL/6J mice.Establishment of the model was confirmed by hematoxylin and eosin staining.Expression levels of various internal control proteins,including vinculin,α-tubulin,eukaryotic translation initiation factor 5(EIF5),β-actin,and glyceraldehyde 3-phosphate dehydrogenase(GAPDH)were detected by Western blot,and total protein expression was detected by Coomassie blue staining.Furthermore,the lung injury model in vitro was establised by using,Bronchial epithelial cell(BZAS-2B)andhunman umbilical vein endothelial cells(HUVECS)confirmed by TUNEL staining.Expression levels of internal control proteins were detected by Western blot,and total protein expression was detected by Coomassie Blue staining.Results Acute 8,24,and 72 h hypoxic models were successfully established in lung tissue,demonstrating consistent total protein expression and stable levels of the internal reference proteins vinculin,α-tubulin,EIF5,andβ-actin.GAPDH expression was elevated in the HH8 h,HH24 h,and HH72 h groups compared with the normoxia(Nor)group,but only the increase at HH72 h groups was significant.Similarly,8,24,and 48 h hypoxic models were successfully established in BEAS-2B cells and HUVECs,with consistent total protein expression.In BEAS-2B cells,expression levels of the internal reference proteins β-actin and GAPDH were consistent with the normoxic control(NC)group,while vinculin,α-tubulin,and EIF5 expression levels were significantly reduced under hypoxic conditions for up to 24 h.In HUVECs,vinculin and α-tubulin expression levels were also consistent with the NC group,while EIF5,β-actin,and GAPDH expression levels were significantly reduced at 8 h and increased at 48 h.Conclusions Acute hypoxia induces lung tissue injury,and protein expression levels of the internal reference proteins vinculin,α-tubulin,EIF5,and β-actin are stable,making them suitable internal references for Western blot.Additionally,Western blot detected differential expression levels of the internal reference proteins vinculin,α-tubulin,EIF5,β-actin,and GAPDH in BEAS-2B cells and HUVECs,as the most important in vitro lung tissue models of hypoxia-induced injury.
3.Expression changes and selection of different internal control proteins in acute hypoxia-induced lung injury by acute high-altitude
Jia LIU ; Xiaoyu ZHANG ; Yiman ZHANG ; Fei WANG ; Baochang LAI ; Jun ZHANG ; Tana WUREN ; Xiaohui ZHENG ; Hongyan TIAN ; Qian YIN
Chinese Journal of Comparative Medicine 2025;35(3):90-99,146
Objective The pathophysiological process of acute high-altitude hypoxia-induced lung injury affects protein expression levels,which are mainly evaluated by Western blot.No systematic study has investigated changes in internal control proteins as calibration loading amounts.Methods Lung injury at an altitude of 6000 m was induced in a low-pressure,low-oxygen chamber for 8,24,and 72 h using C57BL/6J mice.Establishment of the model was confirmed by hematoxylin and eosin staining.Expression levels of various internal control proteins,including vinculin,α-tubulin,eukaryotic translation initiation factor 5(EIF5),β-actin,and glyceraldehyde 3-phosphate dehydrogenase(GAPDH)were detected by Western blot,and total protein expression was detected by Coomassie blue staining.Furthermore,the lung injury model in vitro was establised by using,Bronchial epithelial cell(BZAS-2B)andhunman umbilical vein endothelial cells(HUVECS)confirmed by TUNEL staining.Expression levels of internal control proteins were detected by Western blot,and total protein expression was detected by Coomassie Blue staining.Results Acute 8,24,and 72 h hypoxic models were successfully established in lung tissue,demonstrating consistent total protein expression and stable levels of the internal reference proteins vinculin,α-tubulin,EIF5,andβ-actin.GAPDH expression was elevated in the HH8 h,HH24 h,and HH72 h groups compared with the normoxia(Nor)group,but only the increase at HH72 h groups was significant.Similarly,8,24,and 48 h hypoxic models were successfully established in BEAS-2B cells and HUVECs,with consistent total protein expression.In BEAS-2B cells,expression levels of the internal reference proteins β-actin and GAPDH were consistent with the normoxic control(NC)group,while vinculin,α-tubulin,and EIF5 expression levels were significantly reduced under hypoxic conditions for up to 24 h.In HUVECs,vinculin and α-tubulin expression levels were also consistent with the NC group,while EIF5,β-actin,and GAPDH expression levels were significantly reduced at 8 h and increased at 48 h.Conclusions Acute hypoxia induces lung tissue injury,and protein expression levels of the internal reference proteins vinculin,α-tubulin,EIF5,and β-actin are stable,making them suitable internal references for Western blot.Additionally,Western blot detected differential expression levels of the internal reference proteins vinculin,α-tubulin,EIF5,β-actin,and GAPDH in BEAS-2B cells and HUVECs,as the most important in vitro lung tissue models of hypoxia-induced injury.
4.Non-contrast CT radiomics for predicting recurrence of acute pancreatitis
Bingbing LIN ; Ping YIN ; Fei ZHENG ; Nan HONG
Chinese Journal of Medical Imaging Technology 2025;41(5):749-752
Objective To observe the value of non-contrast CT radiomics for predicting recurrence of acute pancreatitis(AP).Methods Totally 356 patients with first-episode AP were retrospectively enrolled.The patients were categorized into recurrence group(n=78)and non-recurrence group(n=278)based on whether recurrence after 3 months of complete/near disappearance of symptoms,also divided into training set(n=213)and test set(n=143)at the ratio of 6∶4.For 116 cases who underwent contrast-enhanced CT,taken portal venous phase images as references,ROI of pancreatic parenchyma was manually delineated on non-contrast CT,while SegResNet segmentation model was used for automatic segmentation on non-contrast CT images for the rest 240 cases.The optimal radiomics features were extracted and selected to construct a radiomics model based on YeoJohnson transformer and Bagging decision tree.The receiver operating characteristic curve was drawn,and the area under the curve(AUC)was calculated to evaluate the efficacy of the obtained model for predicting AP recurrence.Results Totally 2 264 radiomics features were extracted from ROI of pancreatic parenchyma,and finally 4 optimal features were screened.The AUC of radiomics model for predicting recurrence was 0.887 and 0.889 in training set and test set,respectively.Conclusion Non-contrast CT radiomics could be used to effectively predict recurrence of AP.
5.Advances in non-targeted metabolomics of intellectual disability
Baiyu CHEN ; Mengli ZHUANG ; Shimeng CHEN ; Juan XIONG ; Fei YIN ; Guanglu YANG
Journal of Chinese Physician 2025;27(3):478-480
Intellectual disability (ID) is a kind of neurodevelopmental disorder with high clinical and genetic heterogeneity, which seriously endangers the physical and mental health of children. Its etiology is complex, many genetic and environmental factors can participate in the pathogenesis, and metabolic disorders are one of the important etiology. Targeted assays such as plasma amino acids and acylcarnitine and urinary organic acids are of limited use in helping to diagnose and manage these patients. Non-targeted metabolomics has become a tool to explore changes in the metabolites of organisms and a means to study possible biomarkers of such diseases. In recent years, metabolomics technology has made some progress in the etiology and mechanism of ID, providing new ideas and methods for its early recognition, treatment and improvement of prognosis. This paper reviews the progress of non-targeted metabolomics in ID.
6.The role and research progress of m6A modification in sepsis and its induced multi-organ dysfunction disease
Lu-lu ZHANG ; Rui GONG ; Jin-yi ZHAO ; Fei MU ; Yan-ping YIN ; Wang-ting LI ; Ling-ling ZHENG ; Yu-ping TANG ; Jing-wen WANG
Chinese Pharmacological Bulletin 2025;41(3):421-427
Sepsis is a life-threatening organ dysfunction disease caused by a dysregulated host response to infection.It has com-plex pathophysiological changes,and in severe cases,it can rap-idly develop into septic shock and multiple organ dysfunction or multiple organ failure.At present,the pathological mechanism of sepsis and its induced organ dysfunction is complex and the in-fluencing factors are numerous.So far,there is still a lack of specific and effective treatment strategies.RNA modify-N6-methyladenosine(m6 A)is one of the most common post-tran-scriptional modifications on eukaryotic RNAs.It is involved in the regulation of the occurrence and development of a variety of inflammatory diseases,including sepsis,and even multiple organ dysfunction induced by sepsis by affecting the metabolism of RNAs.It includes cardiac dysfunction,acute lung injury(ALI)and acute kidney injury(AKI).Therefore,this article will dis-cuss the effect of m6A modification on the function of immune cells,and its important role in sepsis and its induced multiple or-gan dysfunction diseases by regulating inflammatory signals,py-roptosis,mitochondrial damage and ferroptosis.This will provide new therapeutic targets and strategies for the clinical prevention and treatment of sepsis and its induced multiple organ dysfunc-tion diseases.
7.Predictive value of CHE and sST2 for short-term death in patients with myocardial infarction and heart failure
Peng-fei ZHOU ; Fan CAO ; Cheng-long YIN
Chinese Journal of cardiovascular Rehabilitation Medicine 2025;34(4):492-497
Objective:To investigate the predictive value of serum cholinesterase(CHE)and soluble growth stimula-tion gene 2 protein(sST2)for short-term death in patients with myocardial infarction and heart failure.Methods:A total of 100 patients with myocardial infarction and heart failure admitted in Nanjing Benq Hospital between March 2021 and March 2023 were screened.After 6-month follow-up,patients were grouped according to pres-ence of death.Multivariate Cox regression was used to analyze the factors associated with death during 6-month follow-up in patients with myocardial infarction and heart failure.The predictive value of CHE,sST2 and their combined detection for short-term death in patients with myocardial infarction and heart failure was analyzed by receiver operating characteristic(ROC)curve.Kaplan-Meier survival curve was used to compare short-term sur-vival rate between myocardial infarction and heart failure patients with different CHE and sST2 levels.Results:During 6-month follow-up,46 cases died.Compared to those in survival group,patients in death group had sig-nificant higher heart rate(HR)[(82.20±8.09)beats/min vs.(71.54±6.97)beats/min],mean arterial pressure(MAP)[(126.58±5.38)mmHg vs.(104.79±4.94)mmHg]and sST2[(76.48±4.82)ng/ml vs.(40.62±4.96)ng/ml],and significant lower CHE[(3.47±0.26)IU/L vs.(5.07±0.80)IU/L](P<0.001 all).Multivariate Cox regression showed that HR(HR 1.046,95%CI 1.002~1.092,P=0.040),MAP(HR 1.988,95%CI 1.298~2.455,P<0.001),and sST2(HR 1.068,95%CI 1.014~1.125,P=0.013)were independent risk factors for short-term death in patients with myocardial infarction and heart failure,while CHE was its independent protec-tive factor(HR=0.252,95%CI 0.145~0.561,P=0.023).ROC curve analysis indicated that the area under the curve(AUC)of CHE,sST2 and their combination for diagnosing short-term death in patients with myocardial in-farction and heart failure was 0.609(95%0.504~0.707),0.630(95%0.525~0.726)and 0.939(95%0.871~0.977)respectively,and the diagnostic efficacy of combined detection was significantly higher than CHE and sST2 alone(Z=5.814,5.524,P<0.001 all).Kaplan-Meier survival curve showed that the survival rate of patients with low CHE level was significantly lower than that of patients with high CHE level,and the survival rate of pa-tients with high sST2 level was significantly lower than that of patients with low sST2 level(Log-rank x2=2.415,2.354,P<0.001 all).Conclusion:CHE and sST2 were independent influencing factors for death during 6-month follow-up in patients with myocardial infarction and heart failure;their combined detection had good predictive value for short-term death in these patients.
8.Clinical and genetic characteristics of 14 children with sodium taurocholate co-transporting polypeptide deficiency
Rui-Xue MA ; Wen-Hai LUO ; Yi-Lin DAI ; Gui-Xian LI ; Fei WANG ; Ou JIANG ; Yin-Hong ZHANG ; Yun-Fen TIAN
Chinese Journal of Contemporary Pediatrics 2025;27(12):1514-1519
Objective To summarize the clinical and genetic characteristics of children with sodium taurocholate co-transporting polypeptide(NTCP)deficiency.Methods Clinical data of children with NTCP deficiency diagnosed and treated at the First People's Hospital of Yunnan Province from July 2022 to March 2025 were retrospectively analyzed.Results A total of 14 children were included(6 males,8 females),all with normal growth and development.Reasons for initial consultation included elevated serum bile acids in 7 cases,jaundice in 4 cases,cholestatic hepatitis in 1 case,and one case each of pneumonia and cow's milk protein allergy.At the first visit,all patients had elevated serum total bile acids beyond the normal range,with a mean of 152.5 μmol/L.Elevated alanine aminotransferase was observed in 1 case,elevated aspartate aminotransferase in 2 cases,and elevated total bilirubin in 10 cases.Genetic sequencing revealed that all children carried the homozygous SLC10A1 variant c.800C>T(p.Ser267Phe),classified as likely pathogenic.Conclusions NTCP deficiency often lacks obvious clinical symptoms and signs.Some children present with transient hyperbilirubinemia,cholestasis,or other liver function abnormalities.Persistent isolated elevation of serum bile acids warrants suspicion for this disease.Biallelic pathogenic variants in SLC10A1 constitute the basis for definitive diagnosis.There is no specific treatment for this disease,and management is mainly symptomatic.
9.A case of Harel-Yoon syndrome with seizures caused by an ATAD3A variant
Qian YANG ; Zou PAN ; Chen CHEN ; Fei YIN ; Jing PENG
Chinese Journal of Contemporary Pediatrics 2025;27(12):1540-1543
A 3-year-10-month-old boy was admitted with a history of intermittent seizures for over one year.Global developmental delay,facial dysmorphism,and axial hypotonia were observed,with multiple seizure types including epileptic spasms and myoclonic seizures.Severe developmental delay was indicated by the Gesell Developmental Schedule,and electroencephalography showed generalized spikes and spike-and-slow-wave discharges.A de novo heterozygous missense variant in ATAD3A,c.1582C>T(p.Arg528Trp),was identified and classified as pathogenic,and a diagnosis of Harel-Yoon syndrome was made.After administration of antiseizure medications,seizures were controlled and motor development improved compared with baseline.To our knowledge,this seizure phenotype is the first report in the Chinese literature of Harel-Yoon syndrome due to a heterozygous ATAD3A variant.This case expands the clinical phenotypic spectrum of ATAD3A and provides a reference for diagnosis and management.
10.Philosophical exploration of laboratory animal welfare
Chinese Journal of Comparative Medicine 2025;35(10):59-68
This study systematically traces the philosophical discourse on animal status from ancient Western civilizations through the Enlightenment,with particular emphasis on analyzing the three dominant contemporary animal ethics theories of utilitarianism,animal rights theory,and the differentiated treatment model,alongside the core tenets of the"3R principles"(Replacement,Reduction,Refinement)and the"Five Freedoms".It reveals substantial divergences among philosophical frameworks in defining animals'moral status,evaluating the legitimacy of experimentation,and assessing institutional feasibility.Utilitarianism prioritizes cost-benefit analysis to maximize aggregate welfare,while animal rights theory advocates for the absolute prohibition of instrumental animal use.In contrast,the differentiated treatment model proposes a balanced approach that reconciles ethical obligations with scientific advancement.Empirical evidence demonstrates that implementation of the 3R principles has effectively reduced the scale of laboratory animal utilization,while the Five Freedoms framework has substantially mitigated animal suffering in experimental contexts.We further address emerging ethical challenges posed by novel technologies,arguing that future advancements in laboratory animal welfare must harmonize scientific progress with ethical imperatives.This requires formal recognition of animals'sentient capacities and human moral responsibilities,supported by iterative improvements in alternative technologies and optimized experimental protocols.By integrating meta-ethical analyses with practical regulatory frameworks,this research establishes a normative foundation for resolving tensions between biomedical innovation and interspecies justice.

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