1.Tanshinone Ⅰ Alleviates Sepsis Associated Acute Kidney Injury in Rats by Regulating Wnt/β-catenin Signaling Pathway
Jingyu REN ; Xingpeng JIANG ; Zhengchao LI ; Shiyuan WEN ; Sha ZHU ; Jin RU
Journal of Kunming Medical University 2025;46(6):29-37
Objective To investigate the effect of Tan Ⅰ on SA-AKI in rats by mediating Wnt/β-catenin signaling pathway.Methods Sprague-Dawley rats were randomly divided into the following groups(n=8 per group,including 2 reserve animals per group):Sham,SA-AKI,SA-AKI+5 mg/kg Tan I,SA-AKI+10 mg/kg Tan I,SA-AKI+15 mg/kg Tan I(SA-AKI+Tan I),SA-AKI+salinomycin sodium(SS,Wnt signal inhibitor,SA-AKI+SS),SA-AKI+SS+Tan I,SA-AKI+laduviglusib(LG,Wnt signal activator,SA-AKI+LG),and SA-AKI+LG+Tan I.Rat SA-AKI model was induced by cecal ligation and puncture(CLP),with Tan I,SS,and LG administered via intraperitoneal injection.Hematoxylin-eosin and TUNEL staining were used to observe renal tissue pathological damage.Enzyme-linked immunosorbent assay was used to detect serum concentrations of neutrophil gelatinase-associated lipocalin(NGAL),IL-1β,IL-8,IL-6,and TNF-α.Creatinine(Cre)and blood urea nitrogen(BUN)kit were used to detect serum Cre and BUN concentrations.Western blot and immunofluorescence staining were used to detect the expression and fluorescence intensity of Wnt1,GSK3β,and β-catenin.Results Administration of Tan I at doses of 10 mg/kg and 15 mg/kg significantly attenuated renal injury in rats with SA-AKI(P<0.05),suppressed the levels of SA-AKI biomarkers NGAL,Cre,and BUN and pro-inflammatory cytokines(P<0.05),reduced apoptosis,and downregulated Wnt1 and GSK3β while upregulating β-catenin expression(P<0.05).Although Tan I at 5 mg/kg exhibited a modest protective effect against SA-AKI in rats,no statistically significant difference was observed compared to the sham group(P>0.05).SS weakened CLP-induced kidney injury and the production of inflammatory cytokines in rats(P<0.05),and LG further aggravated CLP-induced kidney injury in rats(P<0.05).Tan Ⅰ reversed the promoting effect of LG on kidney injury in SA-AKI rats(P<0.05).Conclusion Tan Ⅰ provides a protective effect on CLP-induced SA-AKI rat by inhibiting Wnt/β-catenin signaling pathway.
2.Research progress on the etiology and epidemiology of monkeypox
LIU Shan ; ZHANG Jingsong ; ZHANG Wenli ; WANG He ; ZHU Wenye ; SHA Kun
Journal of Preventive Medicine 2025;37(8):789-793,798
Monkeypox is a zoonotic disease caused by the monkeypox virus, which was previously limited to epidemics in Africa. Since 2022, monkeypox has rapidly spread worldwide, affecting 130 countries and regions. The World Health Organization declared it a public health emergency of international concern, in 2022 and 2024, respectively. The monkeypox virus has exhibited accelerated mutation rates, with diverse circulating strains. Children and men who have sex with men have emerged as the primary high-risk group. Additionally, the increase in asymptomatic infections and atypical mild rashes has complicated differential diagnosis, posing entirely challenges to the diagnosis, treatment, and prevention and control of monkeypox. This article reviews the research progress on the etiological characteristics, epidemiological features, clinical manifestations, and prevention and treatment strategies of monkeypox by retrieving the literature on monkeypox from January 1958 to January 2025, so as to provide the basis for the prevention and treatment of monkeypox.
3.Precise Magnetic Stimulation of the Paraventricular Nucleus Improves Sociability in a Mouse Model of ASD.
Sha LIU ; Quyang YANG ; Pengfei ZHU ; Xuan LIU ; Qingbo LU ; Jie YANG ; Jingyao GAO ; Hongbin HAN ; Zhijun ZHANG ; Ning GU ; Tao TAN ; Jianfei SUN
Neuroscience Bulletin 2025;41(10):1711-1728
Magnetic stimulation has made significant strides in the treatment of psychiatric disorders. Nonetheless, current magnetic stimulation techniques lack the precision to accurately modulate specific nuclei and cannot realize deep brain magnetic stimulation. To address this, we utilized superparamagnetic iron oxide nanoparticles as mediators to achieve precise targeting and penetration. We investigated the effects of magnetic fields with varying frequencies on neuronal activity and compared the activation effects on neurons using a 10-Hz precise magneto-stimulation system (pMSS) with repetitive transcranial magnetic stimulation in mice. Oxytocin levels, dendritic morphology and density, and mouse behavior were measured before and after pMSS intervention. Our findings suggest that pMSS can activate oxytocinergic neurons, leading to upregulation of oxytocin secretion and neurite outgrowth. As a result, sociability was rapidly improved after a one-week pMSS treatment regimen. These results demonstrate a promising magneto-stimulation method for regulating neuronal activity in deep brain nuclei and provide a promising therapeutic approach for autism spectrum disorder.
Animals
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Autism Spectrum Disorder/physiopathology*
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Paraventricular Hypothalamic Nucleus/physiology*
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Disease Models, Animal
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Transcranial Magnetic Stimulation/methods*
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Male
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Social Behavior
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Mice
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Oxytocin/metabolism*
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Mice, Inbred C57BL
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Neurons/physiology*
5.USP29 alleviates the progression of MASLD by stabilizing ACSL5 through K48 deubiquitination
Sha HU ; Zhouxiang WANG ; Kun ZHU ; Hongjie SHI ; Fang QIN ; Tuo ZHANG ; Song TIAN ; Yanxiao JI ; Jianqing ZHANG ; Juanjuan QIN ; Zhigang SHE ; Xiaojing ZHANG ; Peng ZHANG ; Hongliang LI
Clinical and Molecular Hepatology 2025;31(1):147-165
Background/Aims:
Metabolic dysfunction–associated steatotic liver disease (MASLD) is a chronic liver disease characterized by hepatic steatosis. Ubiquitin-specific protease 29 (USP29) plays pivotal roles in hepatic ischemiareperfusion injury and hepatocellular carcinoma, but its role in MASLD remains unexplored. Therefore, the aim of this study was to reveal the effects and underlying mechanisms of USP29 in MASLD progression.
Methods:
USP29 expression was assessed in liver samples from MASLD patients and mice. The role and molecular mechanism of USP29 in MASLD were assessed in high-fat diet-fed and high-fat/high-cholesterol diet-fed mice and palmitic acid and oleic acid treated hepatocytes.
Results:
USP29 protein levels were significantly reduced in mice and humans with MASLD. Hepatic steatosis, inflammation and fibrosis were significantly exacerbated by USP29 deletion and relieved by USP29 overexpression. Mechanistically, USP29 significantly activated the expression of genes related to fatty acid β-oxidation (FAO) under metabolic stimulation, directly interacted with long-chain acyl-CoA synthase 5 (ACSL5) and repressed ACSL5 degradation by increasing ACSL5 K48-linked deubiquitination. Moreover, the effect of USP29 on hepatocyte lipid accumulation and MASLD was dependent on ACSL5.
Conclusions
USP29 functions as a novel negative regulator of MASLD by stabilizing ACSL5 to promote FAO. The activation of the USP29-ACSL5 axis may represent a potential therapeutic strategy for MASLD.
6.Association between modelling cycle and antioxidant pathways in rat models of non-alcoholic fatty liver disease
Guoguo ZHI ; Bingjie SHAO ; Yiyuan FENG ; Sha ZHU ; Jie MU ; Dong WANG
Chinese Journal of Immunology 2025;41(2):257-262
Objective:To construct a rat model of non-alcoholic fatty liver disease(NAFLD)by choline-deficient high fat diet(CDHFD),and to observe the association between feeding cycle and antioxidant pathway.Methods:The study lasted 16 weeks and was divided into 4 cycles.Detection of pathological changes and expression of antioxidant enzymes in rats liver in different cycles.Results:The early stage of liver steatosis and inflammation in model rats was 2~4 weeks,non-alcoholic steatohepatitis(NASH)stage was 4~8 weeks,and liver fibrosis progression was 8~16 weeks.Mechanistic studies had shown that the expressions of antioxidant enzymes Nrf2,SOD and GSH-Px in the liver of NAFLD rats gradually decreased with the extension of the feeding cycle.Conclusion:Different modeling cycles can successfully induce the pathological changes of steatosis,inflammation and liver fibrosis in rat liver,and the pathological changes are time-dependent with the expressions of antioxidant enzymes.
7.Application of"six combinations"principles for designation of ideological and political cases of Medical Immunology
Xiaotao JIANG ; Yanjun LIU ; Wei ZHU ; Xiaorui HOU ; Xiao YU ; Yuhui QIU ; Yumei HE ; Sha WU
Chinese Journal of Immunology 2025;41(11):2741-2743
Designation of ideological and political teaching of Medical Immunology courses focuses on"cultivate talent for Party and the State",and adheres to goal of"build morality and cultivate people".From perspective of big ideology and politics,with basic foundation of"major guiding,disciplines supporting and curriculum shaping",principle of"six combinations"is applied to con-struct ideological and political cases of Medical Immunology courses,to create an infiltrating teaching pattern,which simultaneously cultivate talent for the Party and the State,and forms a synergistic effect of professional course learning and ideological and political learning.
8.Development of a method for measuring complement C1s protein on platelet surface and its preliminary application
Jun YE ; Huimin LU ; Jianfeng ZHU ; Huilian HUA ; Xin XU ; Yili YANG ; Chao MENG ; Min SHA
Chinese Journal of Clinical Laboratory Science 2025;43(11):830-835
Objective To establish a flow cytometry method for detecting C1s protein on platelet surface and preliminarily explore its potential application value in the auxiliary diagnosis of primary immune thrombocytopenia(ITP).Methods C1s-conjugated 2 μm car-boxylated magnetic beads(C1s beads)were prepared and used as quality control particles.Fluorescein isothiocyanate(FITC)-labeled anti-C1s antibody was employed as the detection antibody to develop a flow cytometric assay for detecting C1s protein expression on platelets.The intra-assay and inter-assay precision,as well as the dilution linearity of the method,were evaluated.Subsequently,the expression levels of C1 s protein on the surface of platelets were compared among the ITP group,the non-ITP thrombocytopenia group,and the healthy control group.Results Light microscopy showed that both unconjugated carboxylated magnetic beads(blank beads)and C1s-conjugated beads were uniformly dispersed without aggregation.Under fluorescence microscopy,C1s beads exhibited strong yellow-green fluorescence,whereas the blank beads showed no fluorescence signal.The established flow cytometry assay exhibited ac-ceptable precision,with intra-assay coefficient of variation(CV)values of 7.02%,7.12%,and 3.91%for low,medium,and high con-centrations of C1s beads,respectively,and inter-assay CV values of 13.49%,6.15%,and 0.78%,respectively.The dilution linearity was satisfactory,coefficient of determination(R2)=0.998 8.Clinical sample testing revealed that the proportion of C1s-positive plate-lets in ITP group(2.56±0.79)%was significantly higher than that in healthy control group(0.23±0.18)%and the non-ITP thrombo-cytopenia control group(0.22±0.10)%,with statistically significant differences(both P<0.05).Conclusion This study successfully established a stable and reliable flow-cytometry method for quantifying C1s expression on platelet surface and preliminarily demonstrated that C1s expression is significantly elevated on platelets of ITP patients,suggesting that C1s could serve as a potential auxiliary diag-nostic marker for ITP.
9.Concordance and pathogenicity of copy number variants detected by non-invasive prenatal screening in 38,611 pregnant women without fetal structural abnormalities.
Yunyun LIU ; Jing WANG ; Ling WANG ; Lin CHEN ; Dan XIE ; Li WANG ; Sha LIU ; Jianlong LIU ; Ting BAI ; Xiaosha JING ; Cechuan DENG ; Tianyu XIA ; Jing CHENG ; Lingling XING ; Xiang WEI ; Yuan LUO ; Quanfang ZHOU ; Ling LIU ; Qian ZHU ; Hongqian LIU
Chinese Medical Journal 2025;138(4):499-501
10.Alzheimer's disease diagnosis among dementia patients via blood biomarker measurement based on the AT(N) system.
Tianyi WANG ; Li SHANG ; Chenhui MAO ; Longze SHA ; Liling DONG ; Caiyan LIU ; Dan LEI ; Jie LI ; Jie WANG ; Xinying HUANG ; Shanshan CHU ; Wei JIN ; Zhaohui ZHU ; Huimin SUI ; Bo HOU ; Feng FENG ; Bin PENG ; Liying CUI ; Jianyong WANG ; Qi XU ; Jing GAO
Chinese Medical Journal 2025;138(12):1505-1507


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