1.Long-chain acylcarnitine deficiency promotes hepatocarcinogenesis.
Kaifeng WANG ; Zhixian LAN ; Heqi ZHOU ; Rong FAN ; Huiyi CHEN ; Hongyan LIANG ; Qiuhong YOU ; Xieer LIANG ; Ge ZENG ; Rui DENG ; Yu LAN ; Sheng SHEN ; Peng CHEN ; Jinlin HOU ; Pengcheng BU ; Jian SUN
Acta Pharmaceutica Sinica B 2025;15(3):1383-1396
Despite therapy with potent antiviral agents, chronic hepatitis B (CHB) patients remain at high risk of hepatocellular carcinoma (HCC). While metabolites have been rediscovered as active drivers of biological processes including carcinogenesis, the specific metabolites modulating HCC risk in CHB patients are largely unknown. Here, we demonstrate that baseline plasma from CHB patients who later developed HCC during follow-up exhibits growth-promoting properties in a case-control design nested within a large-scale, prospective cohort. Metabolomics analysis reveals a reduction in long-chain acylcarnitines (LCACs) in the baseline plasma of patients with HCC development. LCACs preferentially inhibit the proliferation of HCC cells in vitro at a physiological concentration and prevent the occurrence of HCC in vivo without hepatorenal toxicity. Uptake and metabolism of circulating LCACs increase the intracellular level of acetyl coenzyme A, which upregulates histone H3 Lys14 acetylation at the promoter region of KLF6 gene and thereby activates KLF6/p21 pathway. Indeed, blocking LCAC metabolism attenuates the difference in KLF6/p21 expression induced by baseline plasma of HCC/non-HCC patients. The deficiency of circulating LCACs represents a driver of HCC in CHB patients with viral control. These insights provide a promising direction for developing therapeutic strategies to reduce HCC risk further in the antiviral era.
2.Identification of a JAK-STAT-miR155HG positive feedback loop in regulating natural killer (NK) cells proliferation and effector functions.
Songyang LI ; Yongjie LIU ; Xiaofeng YIN ; Yao YANG ; Xinjia LIU ; Jiaxing QIU ; Qinglan YANG ; Yana LI ; Zhiguo TAN ; Hongyan PENG ; Peiwen XIONG ; Shuting WU ; Lanlan HUANG ; Xiangyu WANG ; Sulai LIU ; Yuxing GONG ; Yuan GAO ; Lingling ZHANG ; Junping WANG ; Yafei DENG ; Zhaoyang ZHONG ; Youcai DENG
Acta Pharmaceutica Sinica B 2025;15(4):1922-1937
The Janus kinase/signal transducers and activators of transcription (JAK-STAT) control natural killer (NK) cells development and cytotoxic functions, however, whether long non-coding RNAs (lncRNAs) are involved in this pathway remains unknown. We found that miR155HG was elevated in activated NK cells and promoted their proliferation and effector functions in both NK92 and induced-pluripotent stem cells (iPSCs)-derived NK (iPSC-NK) cells, without reliance on its derived miR-155 and micropeptide P155. Mechanistically, miR155HG bound to miR-6756 and relieved its repression of JAK3 expression, thereby promoting the JAK-STAT pathway and enhancing NK cell proliferation and function. Further investigations disclosed that upon cytokine stimulation, STAT3 directly interacts with miR155HG promoter and induces miR155HG transcription. Collectively, we identify a miR155HG-mediated positive feedback loop of the JAK-STAT signaling. Our study will also provide a power target regarding miR155HG for improving NK cell generation and effector function in the field of NK cell adoptive transfer therapy against cancer, especially iPSC-derived NK cells.
3.Regulation of KLF4 protein by USP10 and its effect on hepatocellular carcinoma invasion
Lu LU ; Dongming LI ; Xueguo WANG ; Bo RAN ; Taicheng WANG ; Hongyan ZHAO ; Peng LI
Acta Universitatis Medicinalis Anhui 2024;59(7):1181-1187
Objective To investigate the regulatory role of ubiquitin-specific protease 10(USP10)on the protein expression of Krüppel-like factor 4(KLF4)and its impact on the proliferation and invasion ability of hepatocellular carcinoma(HCC)cells.Methods The protein expression differences of USP10 and KLF4 in normal liver cell line L02 and HCC cell lines,including HepG2,HUH7,HCCLM3 were detected by immunoblotting(Western blot)methods.HCCLM3 and HUH7 cells were selected,and lentiviral particles overexpressing or silencing USP10(oe-USP10 or sh-USP10)was transfected into the cells,and they were designated as the oe-USP10 group and oe-NC group,respectively.Immunoprecipitation(Co-IP)experiments were conducted to examine whether USP10 could di-rectly interact with KLF4 in HCCLM3 or HUH7 cells.The Co-IP assay was repeated in HCC cells transfected with oe-USP10 or sh-USP10,with the addition of the proteasome inhibitor MG132,which used to detect the ubiquitina-tion level of KLF4 protein in the transfected HCC cells.The pcDNA3.1 vector containing overexpressed KLF4 or its negative control plasmid(pc-KLF4 or pc-NC)was co-transfected into cells of the sh-USP10 group or sh-NC group.These cells were designated as the sh-NC+pc-NC group,sh-USP10+pc-NC group,sh-NC+pc-KLF4 group,and sh-USP10+pc-KLF4 group.The cell proliferation activity of each group was measured using the CCK-8 assay,and the cell invasion ability was assessed using the Transwell assay.Results Compared to L02 cells,the protein expres-sion of USP10 and KLF4 significantly decreased in HepG2,HUH7,HCCLM3,and other cells(P<0.05).In HC-CLM3 and HUH7 cells,USP10 protein directly interacted with KLF4.Furthermore,treatment with MG132 resulted in a time-dependent increase in KLF4 protein expression in HCCLM3 and HUH7 cells.Silencing USP10 increased the ubiquitination of KLF4 in HCCLM3 or HUH7 cells,while overexpressing USP10 decreased the ubiquitination level of KLF4 in cells.Compared to the sh-NC+pc-NC group,both the proliferation activity and invasion ability of HCCLM3 and HUH7 cells significantly increased in the sh-USP10+pc-NC group(P<0.01),while they signifi-cantly decreased in the sh-NC+pc-KLF4 group and sh-USP10+pc-KLF4 group(P<0.05).Compared to the sh-USP10+pc-NC group,the proliferation activity and invasion ability of cells significantly decreased in the sh-USP10+pc-KLF4 group(P<0.05).Conclusion USP10 can promote the stability of KLF4 protein through deubiquiti-nation in HCC cell lines,thereby inhibiting the proliferation and invasion of tumor cells.
4.Pathogenic bacteria distribution,clinical features and risk factors of urinary tract infection in patients with isch-emic stroke
Pei TIAN ; Rongfu FAN ; Hongyan WANG ; Mingli PENG
Chinese Journal of Rehabilitation Theory and Practice 2024;30(10):1179-1186
Objective To investigate the pathogenic bacteria distribution,clinical features and risk factors of urinary tract infection in patients with ischemic stroke. Methods A retrospective study was conducted on 634 patients with ischemic stroke in Beijing Bo'ai Hospital from Janu-ary,2020 to December,2023.They were divided into control group(n=551,without urinary tract infection)and observation group(n=83,with urinary tract infection)according to whether they developed urinary tract infec-tion.The incidence of urinary tract infection,the distribution of pathogenic bacteria and the resistance of main pathogenic bacteria to different antibacterial drugs were analyzed.The clinical characteristics of the two groups were compared and analyzed.The independent risk factors of urinary tract infection in patients with ischemic stroke were analyzed with multivariate Logistic regression. Results A total of 83 cases of 634 patients with ischemic stroke developed urinary tract infection,and incidence was 13.09%.A total of 127 strains of pathogenic bacteria were isolated from the urine samples of the observation group,of which Gram-negative bacteria accounted for 62.99%(80/127),Gram-positive bacteria accounted for 20.47%(26/127)and strains of fungi accounted for 16.54%(21/127).The main Gram-negative pathogens were Escherichia coli and Klebsiella pneumoniae,which were high resistant to second-generation and third-generation cephalosporins,co-trimoxazole,and levofloxacin;moderately resistant to carbapenems,β-lactamase inhibitor compound preparation and aminoglycosides,etc.;and highly sensitive to tigecycline and polymyxin,etc.The main Gram-positive pathogens were Enterococcus faecalis and Enterococcus faecalis,which were a high resistant to erythromycin and gentamicin,and highly sensitive to linezolid,daptomycin,teicoplanin and vancomycin.The pathogenic fungi detected were not obviously resistant to common antifungal drugs.The proportion of female,di-abetes,indwelling catheter and neurogenic bladder were significantly higher in the observation group than in the control group(χ2>5.043,P<0.05).The female,diabetes,indwelling catheter and neurogenic bladder were inde-pendent risk factors for urinary tract infection in patients with ischemic stroke(P<0.05). Conclusion The pathogenic bacteria of patients with ischemic stroke with urinary tract infection are mainly Gram-nega-tive bacteria,followed by Gram-positive bacteria and fungi.The Gram-negative bacteria showed multiple drug re-sistance.Meanwhile,female,diabetes,indentured catheter and neurogenic bladder are the independent risk fac-tors for urinary tract infection.
5.Mineralization regulation of MAGE-D1 on bone marrowmesenchymal stem cells in knockout mice
Mingjie LU ; Hongyan YUAN ; Dan XU ; Xuelian PENG ; Xuqiang ZOU ; Bo XIE ; Jingwen MAO ; Xiujie WEN
Journal of Army Medical University 2024;46(18):2069-2080
Objective To investigate the effect of melanoma associated antigen D1 (Mage-D1)on mouse femoral bone mass and mineralization ability of mouse bone marrow mesenchymal cells (BMSCs)and its potential molecular mechanism.Methods Female Mage-D1 gene knockout heterozygous mice and male wild-type (WT)mice were subjected as parent mice to breed Mage-D1 gene knockout homozygous (Mage-D1 KO)mice.PCR and agarose gel electrophoresis were used to identify male Mage-D1 knockout (Mage-D1 KO)mice and littermate male wild-type (WT)mice.Micro-CT scanning was performed to observe mouse femoral bone mass,and ELISA and chemical assay were employed to detect serum levels of calcium,phosphorus,calcitonin,and parathyroid hormone in mice.After primary cultured BMSCs were identified with flow cytometry,immunofluorescence staining was utilized to detect the expression of Mage-D1 in BMSCs.BMSCs were infected by Mage-D1 silencing lentivirus,and then the cells were divided into negative control group (sh-NC)and silencing group (sh-Mage-D1).Cell scratch assay was conducted to detect the migration ability of BMSCs,and flow cytometry and CCK-8 assay were conducted to detect the cycle change and proliferation ability of BMSCs.After mineralization induction,alkaline phosphatase (ALP) staining and alizarin red staining were performed;RT-qPCR and Western blotting were used to measure the expression levels of ALP,Runx2 and Col1.RT-qPCR was used to detect mineralization-related genes p75NTR and Msx1.Results Compared with the WT mice,the femoral cortical bone thickness,cortical bone mineral content,cancellous bone mineral content,trabecular number,and cancellous bone surface density were decreased,and trabecular separation was increased in the Mage-D1 knockout homozygous mice (P<0.05).There were no significant changes in the serum levels of calcium,phosphorus,calcitonin and parathyroid hormone in mice after Mage-D1 knockout.Mage-D1 was expressed in the whole BMSCs and was highly expressed in the nucleus and perinuclear regions.Compared with the sh-NC BMSCs,the sh-Mage-D1 group had decreased proliferation ability (P<0.01),enhanced migration ability (P<0.01),and decreased expression of ALP,Runx2 and Col1 genes (P<0.05)and protein (P<0.01)after mineralization induction,milder ALP and alizarin red stain,and lower expression levels of p75NTR and Msx1.Conclusion Mage-D1 knockout can significantly reduce femur bone mass in mice.It can promote the proliferation and inhibit migration of BMSCs,and positively regulate their mineralization in vitro,and the p75NTR-Dlx1/Msx1 signaling axis may be involved in the regulation of bone metabolism by Mage-D1.
6.Characteristics of the third round of medical education curriculum reforms and enlightenment
Shouhua ZHANG ; Yutong QIN ; Chunji HUANG ; Hongyan ZHANG ; Yuanxu XU ; Fangfang WANG ; Peng SUN ; Juan SHEN ; Geng NI ; Rongyu SHANG
Chinese Journal of Medical Education Research 2024;23(4):438-442
To implement the strategy of healthy China and promote the construction of "new medicine science", it is urgent to focus on new needs and challenges to advance the reform of medical education curricula in China. Using literature research methods, we summarize the process of modern medical education curriculum reforms in the United States, and discuss the main features of the third-round reforms—introducing the concept of value-based medicine, offering health systems science courses, and promoting the curriculum system reform from the perspectives of learning time, curriculum integration, and learning methods. Based on these features, we put forward the enlightenment for the reform of medical education curricula in China.
7.Investigating Interventional Mechanism of Bufei Yishen Formula for Inhibiting Macrophage Inflammatory Response Based on Gene Set Enrichment Analysis
Qingzhou GUAN ; Peng ZHAO ; Yange TIAN ; Kangchen LI ; Yan PENG ; Hongyan GUO ; Jiansheng LI
World Science and Technology-Modernization of Traditional Chinese Medicine 2024;26(6):1490-1496
Objective To explore the interventional mechanism of Bufei Yishen formula on chronic obstructive pulmonary disease from pathway level.Methods Macrophage inflammatory model was established by LPS stimulation.Based on gene set enrichment analysis(GSEA)method,macrophage inflammation related pathways were screened,and normalized enrichment score(NES)was used to identify pathways that were reversed by traditional Chinese medicine treatment,revealing the interventional mechanism of Bufei Yishen formula and its compatibility.Results The NES of Bufei Yishen formula was-1377.23,among which the NES of Bushen compatibility was-485.07,that of Huoxue was-351.86,Huatan was-303.71,and Yiqi was-236.59.There were 213 significantly disturbed pathways reversed after the intervention of Bufei Yishen formula,among which there were 184 reversed pathways for Huoxue compatibility,147 reversed pathways for Bushen,134 reversed pathways for Huatan,133 reversed pathways for Yiqi,and the reversal rate was 75.41%,60.25%,54.92%,54.51%,respectively.90 pathways,including TGF-β production,were significantly reversed in the four compatibilities.Positive regulation of cytokine production involved in inflammatory response etc were specifically reversed pathways for compatibility.Conclusion The intensity of Bufei Yishen formula that reversed macrophage-inflammatory related pathways was in order of Bushen,Huoxue,Huatan and Yiqi compatibility.And the number of pathways that could be reversed by the compatibility of Bufei Yishen formula was Huoxue,Bushen,Huatan and Yiqi.Bufei Yishen formula could regulate the common and specific reversal pathways of the compatibilities to intervene the inflammatory response.
8.Periconceptional maternal homocysteine and birth weight outcomes in offspring: a prospective cohort study
Yi ZHANG ; Xiaotian CHEN ; Qinyu YAO ; Hongyan CHEN ; Mengru LI ; Dingmei WANG ; Yalan DOU ; Yuanzhou PENG ; Xiaoyan GU ; Weili YAN ; Guoying HUANG
Chinese Journal of Pediatrics 2024;62(2):120-128
Objective:To quantify the associations between periconceptional maternal homocysteine (HCY) and offspring′s birth weight and risk of small for gestational age (SGA) infant.Methods:The 19 984 mother-child pairs in this prospective cohort study were recruited from the Shanghai preconception cohort; the infants were delivered from 1 st September 2016 to 11 th November 2022. A standardized questionnaire was used to collect the mothers′ demographic information, medical history, dietary supplement use, and maternal complications during pregnancy, and their serum samples were collected. Serum HCY, folate, and vitamin B 12 were measured using chemiluminescent microparticle immunoassay based on serum sample drawn at enrollment. Birth weight data were obtained from medical records. Multiple imputation methods were applied to handle missing data in key variables. Multivariable linear regression and Poisson regression models were used to analyze the relationship between maternal HCY concentration during the periconceptional period and the birth weight and SGA risk of the offspring. Results:A total of 9 452 pairs were enrolled preconceptionally and the remaining 10 532 pairs were enrolled in early pregnancy. The proportion of mothers whose pregnancy age was greater than 35 years was 9.2% (1 832/19 984), the proportion of primiparous women was 76.5% (15 283/19 984), the proportion of pre-pregnancy overweight and obesity was 14.0% (2 804/19 984), the proportion of using folic acid supplements before pregnancy was 21.4% (4 272/19 984), and the proportion of those who supplemented with folic acid during early pregnancy was 85.2% (8 976/10 532); gestational diabetes mellitus was in 6.2% (1 245/19 984), gestational hypertensive syndrome in 3.6% (711/19 984). The birth weight of the offspring was (3 297±468) g, and there were 1 962 SGA children (9.8%). The HCY concentration in the overall population in appropriate for gestational age during the periconceptional period was (7.9±3.2) μmol/L, with (8.3±3.7) μmol/L in the preconception subgroup and (7.3±2.4) μmol/L in the early pregnancy subgroup. After adjustment for the covariates of perinatal demographic information, adverse pregnancy outcomes, serum folate and vitamin B 12, increased maternal periconceptional HCY was significantly associated with lower offspring birth weight ( β=-2.30, 95% CI -4.43--0.16, P=0.035). Only the early pregnancy subgroup was significantly associated with lower offspring birth weight ( β=-7.39, 95% CI-11.50--3.21, P<0.001). No association was found between peripregnancy HCY and offspring SGA risk. However, elevated HCY in early pregnancy was associated with an increased risk of SGA in the offspring ( RR=1.05, 95% CI 1.01-1.08, P=0.002). Periconceptional vitamin B 12 was a mediator of the association between HCY and offspring birth weight, accounting for 16.5%, 41.2% and 5.4% of its total effect in the overall periconceptional population, the pre-pregnancy subgroup and the early pregnancy subgroup, respectively. Conclusions:Maternal periconceptional HCY level is associated with lower birth weight in offspring, but not with the risk of SGA. Elevated maternal HCY in early pregnancy subgroup may be associated with increased risk of SGA in offspring.
9.Oncolytic spore eruption virus encoding IL-7 enhances killing activity of liver cancer by activating CD8+T cells
Dongming LI ; Peng LI ; Lu LU ; Xueguo WANG ; Taicheng WANG ; Hongyan ZHAO
Chinese Journal of Immunology 2024;40(1):122-126
Objective:To investigate whether IL-7-secreting oncolytic herpes simplex virus(HSV)could activate CD8+T cells and inhibit the growth of hepatocellular carcinoma.Methods:The expression of IL-7 was detected by Western blot.The in vitro cleavage of tumor cells by tumor oncolytic virus HSV and HSV-IL-7 were detected by crystal violet staining.The tumor inhibition ability of HSV-IL-7 and HSV were detected in subcutaneous transplanted tumor model.Levels of IL-7,IFN-γ and TNF-α in serum and tumor tissues were determined by ELISA.The infiltration of CD8+T cells in tumor tissues was detected by immunohistochemistry.Flow cytometry was used to detect Granzyme B secretion in CD8+T cells infiltrated by tumor.Results:Tumor cells infected with HSV-IL-7 expressed high level of IL-7.Both HSV and HSV-IL-7 can effectively lyse B16-F10,CT-26 and H22 tumor cell lines in a dose-dependent manner in vitro.HSV-IL-7 could significantly inhibit the growth of H22 hepatoma cells in vivo(P<0.01)and prolong the survival time of tumor-bearing mice(P<0.001).HSV-IL-7 could significantly increase the IL-7 content in tumor sites(P<0.000 1),and effectively increase the number of tumor infiltrating CD8+T cells(P<0.001).HSV-IL-7 significantly enhanced Granzyme B secretion of tumor-infiltrating CD8+T cells and IFN-γ and TNF-α in tumor tissues(P<0.000 1).Conclusion:HSV-IL-7 has well tumor inhibition activity in vivo and in vitro.It also can activate the anti-tumor activity of CD8+T cells in vivo by secreting IL-7,inhibit tumor growth and prolong the survival time of tumor-bearing mice.
10.Salidroside improves intestinal mucosal immune status of rats under compound stress of hypoxia and training via inhibiting TLR4/NF-κB signaling pathway.
Qin XU ; Hongyan PENG ; Yongmei ZHAO ; Tuolihanayi TUOLIKEN ; Wendong BAI
Chinese Journal of Cellular and Molecular Immunology 2023;39(9):801-806
Objective To investigate the effect of salidroside on intestinal mucosal immune status in rats under compound stress of hypoxia and training (HTCS) and the mechanism. Methods SD rats were randomly divided into HTCS model group (model), placebo group (placebo) and salidroside group (salidro). Model group received no intervention, and placebo and salidro group received intraperitoneal injection of normal saline and salidroside, respectively. Then, ileum tissue of rats were collected and the intestinal damage was assayed by HE staining and Chiu scores. Intestinal permeability indices, including serum D-diamine oxidase (DAO), D-lactic acid (DLA) and endotoxin (END) and secretory immunoglobulin A (sIgA) of intestinal tissue were detected by ELISA. T lymphocyte subsets of intestinal tissue were detected by flow cytometry. Expression of tight junction molecules, including ZO-1, Claudin-3, occluding, were detected by PCR and western blot. Activation of TLR4/NF-κB signaling pathway was detected by Western blot analysis. Results Compared with model group and placebo group, salidro group had the decreased intestinal mucosal injury and low Chiu score, and the level of intestinal permeability indices including serum DAO, DLA and END fell off. CD4+ T cell percentage, CD4+/CD8+ ratio and sIgA level were went up, while CD8+ T cell percentage was went down. mRNA and the level of protein expressions of ZO-1, claudin-3 and occludin increased, while activation of TLR4/NF-κB signaling pathway was inhibited. Conclusion Salidroside can alleviate the intestinal barrier injury and improve intestinal mucosal immune status of rats under compound stress of hypoxia and training via inhibiting TLR4/NF-κB signalling pathway.
Animals
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Rats
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Rats, Sprague-Dawley
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NF-kappa B
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Toll-Like Receptor 4/genetics*
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Claudin-3
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Hypoxia
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Immunoglobulin A, Secretory
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Signal Transduction


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