1.Causal relationship between intestinal flora and esophageal cancer: A Mendelian randomization analysis
Mengmeng WANG ; Mingjun GAO ; Siding ZHOU ; Shuyu TIAN ; Yusheng SHU ; Xiaolin WANG
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2026;33(03):397-405
Objective To explore whether there is a causal relationship between intestinal flora and esophageal cancer. Methods Summary statistics of intestinal flora and esophageal cancer were obtained from the Genome-wide Association Studies (GWAS) database. Five methods, including inverse variance weighted (IVW), weighted median estimation, Mendelian randomization (MR)-Egger regression, single mode, and weighted mode, were used for analysis, with IVW as the main analysis method. Sensitivity analysis was used to evaluate the reliability of MR results. Results In the IVW method, Oxalobacteraceae [OR=1.001, 95%CI (1.000, 1.002), P=0.023], Faecalibacterium [OR=1.001, 95%CI (1.000, 1.002), P=0.028], Senegalimassilia [OR=1.002, 95%CI (1.000, 1.003), P=0.006] and Veillonella [OR=1.001, 95%CI (1.000, 1.002), P=0.018] were positively correlated with esophageal cancer, while Burkholderiales [OR=0.999, 95%CI (0.998, 1.000), P=0.002], Eubacterium oxidoreducens [OR=0.998, 95%CI (0.997, 0.999), P=0.038], Romboutsia [OR=0.999, 95%CI (0.998, 1.000), P=0.048] and Turicibacter [OR=0.998, 95%CI (0.997, 0.999), P=0.013] were negatively correlated with esophageal cancer. Sensitivity analysis showed no evidence of heterogeneity, horizontal pleiotropy and reverse causality. Conclusion Oxalobacteraceae, Faecalibacterium, Senegalimassilia and Veillonella increase the risk of esophageal cancer, while Burkholderiales, Eubacterium oxidoreducens, Romboutsia and Turicibacter decrease the risk of esophageal cancer. Further studies are needed to explore how these bacteria affect the progression of esophageal cancer.
2.Comparison and Behavioral Observation of Two Female Mice Models of Ulcerative Colitis
Juan WANG ; Jiahui XU ; Yunyuan TIAN ; Mengmeng ZHANG ; Min LI ; Siwang WANG ; Yao LI
Laboratory Animal and Comparative Medicine 2026;46(3):332-343
ObjectiveTo compare female C57BL/6J and BALB/c mice models of ulcerative colitis (UC) induced by dextran sulfate sodium salt (DSS), providing a reference for selecting female animal models in studies of innovative drugs for UC treatment. MethodsA total of 48 female mice aged 6–8 weeks, including 24 C57BL/6J and 24 BALB/c mice, were divided into four groups: control group, UC-3d group (2.5% DSS drinking for 3 days), UC-7d group (2.5% DSS drinking for 7 days), and UC-withdrawal group (2.5% DSS drinking for 7 days followed by 3 days of pure water replacement), with 6 mice in each group. Body weight, fecal occult blood, and stool characteristics were recorded daily, and disease activity index (DAI) scores were calculated. At the end of DSS induction, mice were gavaged with fluorescein isothiocyanate (FITC)-labeled dextran solution before tissue collection. Four hours later, under deep anesthesia induced by inhalation of 4% isoflurane, blood samples were collected from the retro-orbital venous plexus, and euthanasia was performed by cervical dislocation. The colon was then separated immediately, and its length from the anus to the ileocecal junction was measured. Colon tissues were fixed, embedded, and sectioned, and they were evaluated using hematoxylin-eosin (HE) staining and alcian blue-periodic acid-Schiff (AB-PAS) staining to comprehensively assess the degree of colonic inflammation. The spleen was also collected and weighed, and the spleen coefficient was calculated. Serum FITC fluorescence intensity and D-lactic acid concentration were measured to evaluate intestinal permeability and barrier injury. The grooming duration, the number of buried marbles, the time spent in the center of the open field, and the total distance traveled were measured to evaluate anxiety/depression-like behaviors in mice. ResultsFecal occult blood appeared in both C57BL/6J and BALB/c mice after 3 days of ad libitum access to DSS. Compared with the control group, there was no significant change in the weight loss rate of female BALB/c mice in the UC-7d and UC-withdrawal groups (P > 0.05), but the DAI score increased (P < 0.01). Conversely, both the weight loss rate and DAI score increased for female C57BL/6J mice in the UC-7d and UC-withdrawal groups (P < 0.01). In female C57BL/6J mice, both the UC-7d and UC-withdrawal groups had higher spleen coefficients than the control group (P < 0.05). Additionally, in these groups, colon length was significantly reduced (P < 0.01), FITC fluorescence intensity in serum was markedly increased (P < 0.01), obvious inflammatory reaction areas appeared in the colon, and the goblet cells and acidic mucus layer were damaged. In contrast, in female BALB/c mice, no significant differences were observed in colon length, serum FITC fluorescence intensity, or D-lactic acid concentration between the UC-7d and UC-withdrawal groups compared with the control group (P > 0.05). Only a few inflammatory cells and damaged goblet cells were observed in the colonic mucosal layer, and no other obvious pathological changes were detected. In addition, female C57BL/6J mice in the UC-7d group showed a significantly reduced total distance in the open field and fewer buried marbles (P < 0.05), indicating depression-like behavior, as well as prolonged grooming duration (P < 0.05), indicating anxiety-like behavior. ConclusionFemale BALB/c mice are not sensitive to 2.5% DSS and do not show typical colonic pathological changes of UC. In contrast, ad libitum access to 2.5% DSS for 7 days successfully induces typical UC pathological symptoms and colonic pathological changes in female C57BL/6J mice. These changes persist for 3 days after DSS withdrawal, and the mice also exhibit symptoms of anxiety/depression. The results suggest that this model can be used for research on the pathogenesis and therapeutic drugs of UC.
3.Engineered Escherichia coli Nissle 1917 targeted delivery of extracellular PD-L1-mFc fragment for treating inflammatory bowel disease.
Yuhong WANG ; Lin HU ; Lei WANG ; Chonghai ZHANG ; Wenhao SHEN ; Hongli YANG ; Min LI ; Xin ZHANG ; Mengmeng XU ; Muxing ZHANG ; Kai YANG ; Xiaopeng TIAN
Acta Pharmaceutica Sinica B 2025;15(11):6019-6033
Inflammatory bowel disease (IBD) is an autoimmune disorder involving complex immune regulation, where balancing localized and systemic immunosuppression is a key challenge. This study aimed to enhance the therapeutic efficacy by engineering the probiotic Escherichia coli Nissle 1917 (EcN). We removed endogenous plasmids pMUT1 and pMUT2 from wild-type EcN and expressed the mPD-L1 (19‒238 aa)-mFc fusion protein on the bacterial surface using a cytolysin A (ClyA) fragment. This modification stabilized mPD-L1 (19‒238 aa) protein expression and promoted its recruitment to outer membrane vesicles (OMVs). The engineered strain, EcNΔpMUT1/2-ClyA-mPD-L1-mFc (EcN-ePD-L1-mFc), features conditional ePD-L1-mFc expression under the araBAD promoter, enhancing gut-targeted release and reducing systemic side effects. This strain improved treatment targeting and efficiency by enabling direct ePD-L1-mFc interaction with immune cells at inflammation sites. OMVs from this strain induced Treg proliferation, inhibited effector T cell proliferation in vitro, and significantly improved intestinal inflammation and colonic epithelial barrier repair in vivo. Additionally, the bacterium restored intestinal microbiota balance, increasing Lactobacillaceae and reducing Bacteroides. This study highlights the engineered bacterium's potential for targeted intestinal immune modulation and offers a novel local IBD treatment approach with promising clinical prospects.
4.Permeable polydimethylsiloxane microneedles for the delivery of traditional Chinese medicine elemene.
Qingchang TIAN ; Mengmeng LIU ; Yiqiu WANG ; Zhaoming LI ; Daizhou ZHANG ; Tian XIE ; Shuling WANG
Journal of Pharmaceutical Analysis 2025;15(2):101094-101094
Image 1.
5.Study on bacterial endotoxin limit value and the detection methodological investigation for the active pharmaceutical ingredient of pentetic acid
Juan SHEN ; Ying TIAN ; Ming NI ; Ju LIU ; Mengmeng YU
Journal of Pharmaceutical Practice and Service 2025;43(12):607-609
Objective To explore and establish the bacterial endotoxin limit value and testing method of the active pharmaceutical ingredient (API) of pentetic acid, and conduct methodological investigation. Methods Three batches of pentetic acid were used to establish the method for the determination of bacterial endotoxin, and interference test was conducted simultaneously. The sample was dissolved with commercially available alkaline regulator to a concentration of 4 mg/ml or lower, and then diluted with water for bacterial endotoxin test. Limulus reagent with sensitivity of 0.125 EU/ml or higher was selected and redissolved with commercially available magnesium ion buffer solution. And the endotoxin test was performed by gel method. Results The endotoxin limit of API of pentetic acid was determined as: less than 0.125 EU/mg. Conclusion The method established could be used for the control of bacterial endotoxin in API of pentetic acid.
6.Relationship between CT renal imaging parameters and glomerular filtration rate measured by 99mTc-DTPA renal dynamic imaging
Mengmeng ZHENG ; Yichen ZHU ; Ye TIAN
International Journal of Surgery 2025;52(3):181-188
Objective:To explore the relationship between CT renal imaging parameters measured by 3D-slicer software and glomerular filtration rate (GFR) measured by 99mTc-DTPA renal dynamic imaging. Methods:A retrospective analysis was conducted on the clinical data of 177 patients (65 renal transplant donors, 60 patients with obstructive nephropathy, and 52 patients with renal tumors) admitted to Beijing Friendship Hospital, Capital Medical University from January 2015 to August 2021. GFR was measured for all patients. After three-dimensional imaging reconstruction of the urinary system enhanced CT using the 3D-slicer software platform, renal cortical volume, parenchymal volume, and average CT values were measured. A total of 189 kidneys (65 healthy kidneys, 72 hydronephrotic kidneys, and 52 tumor kidneys) were analyzed for the above parameters. The statistical analysis methods used independent sample t-test, one-way analysis of variance (ANOVA), Pearson correlation analysis, and receiver operating characteristics (ROC) curve analysis. Results:Compared with healthy kidneys, renal cortex volume and parenchyma volume in hydronephrotic and tumor kidneys were significantly reduced ( P<0.001), and GFR was significantly lower ( P<0.001). Among the 189 renal parameters, except for renal medulla volume ( r=0.146, P=0.531), renal cortex volume ( r=0.784, P<0.001) and renal parenchyma volume ( r=0.698, P<0.001) were significantly correlated with GFR. The results of one-way ANOVA showed significant differences between the groups in terms of renal cortex volume ( F=142.62, P<0.001), renal parenchyma volume ( F=92.92, P<0.001), average CT value of the renal cortex ( F=12.68, P<0.001), average CT value of the renal parenchyma ( F=19.68, P<0.001), and renal medulla volume ( F=3.26, P=0.041). Significant differences were observed between the subgroups for both renal cortex and parenchyma volumes ( P<0.001). Compared with other parameters, renal cortex volume showed higher diagnostic performance in distinguishing different levels of renal function. When the renal cortex volume was set to 77.91 mL and 45.46 mL, respectively, the diagnostic performance for distinguishing normal renal function from mild renal impairment ( AUC=0.830, 95% CI: 0.761-0.889, P<0.001) and mild renal impairment from severe renal impairment ( AUC=0.894, 95% CI: 0.787-0.952, P<0.001) showed high sensitivity and specificity. Conclusions:The measurement of renal imaging parameters using 3D-slicer software has clinical value in evaluating renal function in patients. Renal cortex volume demonstrates good diagnostic performance in distinguishing different levels of renal function, and is worthy of clinical promotion and application.
7.Mechanism study of FEM1C promoting breast cancer progression via the ELAVL1/OPA1 axis-mediated mitochondrial fusion
Fan YAN ; Li SU ; Tian TIAN ; Yang MENGMENG ; Zhang LULU ; Zhao SUZHEN
Chinese Journal of Clinical Oncology 2025;52(10):487-493
Objective:To investigate the role of Fem-1 homolog C(FEM1C)in breast cancer progression and elucidate its underlying regulat-ory mechanism.Methods:The expression of FEM1C in breast cancer tissues and cells were detected with qPCR.The binding of FEM1C to ELAVL1 protein was predicted with an online database and validated by CoIP analysis;and the binding of ELAVL1 protein to OPA1 mRNA was predicted by using the starBase database and validated by RIP analysis.Next,breast cancer cell MDA-MB-231 was transfected with FEM1C shRNA(sh-FEM1C)or overexpression vector(FEM1C)or/and ELAVL1 overexpression vector(ELAVL1)or/and OPA1 overexpression vector(OPA1),or treated with 100 μM Mdivi-1,an DRP1 inhibitor,or MYLS22,an OPA1 inhibitor.Finally,nude mice were injected with sh-FEM1C lentiviral vectors to construct xenograft tumor models,and tumor growth was monitored.Results:The expression of FEM1C was upregu-lated in breast cancer tissues(P<0.01).Silencing FEM1C inhibited the proliferation,induced apoptosis,promoted the expression of auto-phagy protein LC3 Ⅱ/Ⅰ,inhibited p62 protein expression,upregulated the protein level of PINK1 in mitochondrial,promoted the expres-sion of mitochondrial fission proteins DRP1 and MIEF2,and inhibited the expression of fusion proteins OPA1 and MFN1 in MDA-MB-231 cells(P<0.01).Mdivi-1 treatment inhibited DRP1 expression(P<0.01),but had no effect on cell viability(P>0.05);MYLS22 treatment inhibited OPA1 expression and counteracted the effect of FEM1C overexpression on MDA-MB-231 cells(P<0.01).Mechanistic studies revealed that FEM1C binds to ELAVL1 protein and promotes its expression(P<0.01);ELAVL1 protein stabilizes OPA1 mRNA by binding to it and upregu-lates OPA1 protein levels(P<0.01).Overexpression of OPA1 reversed the effect of FEM1C silencing on MDA-MB-231 cells(P<0.01).In vivo results showed that knockdown of FEM1C inhibited tumor growth in vivo(P<0.01).Conclusions:FEM1C promotes the stability of OPA1 mRNA by upregulation of ELAVL1 protein to promote mitochondrial fusion and inhibit autophagy,thereby promoting breast cancer progression.
8.Diagnosis and operation coding for tumor radiotherapy
Mengmeng CHEN ; Hongtao WANG ; Tian ZHANG ; Li'na GAO
Modern Hospital 2025;25(2):206-208
This study summarizes the disease diagnosis and operation coding for tumor radiotherapy.The designated di-agnosis code is Z51.0,and the operation codes range from 92.2 to 92.4.By analyzing a typical case from a tertiary cancer hospi-tal,the practical application of these codes is elucidated.Furthermore,strategies to improve coding quality are proposed,aiming to improve the accuracy,completeness,and standardization of radiotherapy diagnosis and operation coding.These measures are expected to facilitate standardized and refined management of medical services with radiotherapy.
9.Diagnosis and operation coding for tumor radiotherapy
Mengmeng CHEN ; Hongtao WANG ; Tian ZHANG ; Li'na GAO
Modern Hospital 2025;25(2):206-208
This study summarizes the disease diagnosis and operation coding for tumor radiotherapy.The designated di-agnosis code is Z51.0,and the operation codes range from 92.2 to 92.4.By analyzing a typical case from a tertiary cancer hospi-tal,the practical application of these codes is elucidated.Furthermore,strategies to improve coding quality are proposed,aiming to improve the accuracy,completeness,and standardization of radiotherapy diagnosis and operation coding.These measures are expected to facilitate standardized and refined management of medical services with radiotherapy.
10.Mechanism study of FEM1C promoting breast cancer progression via the ELAVL1/OPA1 axis-mediated mitochondrial fusion
Fan YAN ; Li SU ; Tian TIAN ; Yang MENGMENG ; Zhang LULU ; Zhao SUZHEN
Chinese Journal of Clinical Oncology 2025;52(10):487-493
Objective:To investigate the role of Fem-1 homolog C(FEM1C)in breast cancer progression and elucidate its underlying regulat-ory mechanism.Methods:The expression of FEM1C in breast cancer tissues and cells were detected with qPCR.The binding of FEM1C to ELAVL1 protein was predicted with an online database and validated by CoIP analysis;and the binding of ELAVL1 protein to OPA1 mRNA was predicted by using the starBase database and validated by RIP analysis.Next,breast cancer cell MDA-MB-231 was transfected with FEM1C shRNA(sh-FEM1C)or overexpression vector(FEM1C)or/and ELAVL1 overexpression vector(ELAVL1)or/and OPA1 overexpression vector(OPA1),or treated with 100 μM Mdivi-1,an DRP1 inhibitor,or MYLS22,an OPA1 inhibitor.Finally,nude mice were injected with sh-FEM1C lentiviral vectors to construct xenograft tumor models,and tumor growth was monitored.Results:The expression of FEM1C was upregu-lated in breast cancer tissues(P<0.01).Silencing FEM1C inhibited the proliferation,induced apoptosis,promoted the expression of auto-phagy protein LC3 Ⅱ/Ⅰ,inhibited p62 protein expression,upregulated the protein level of PINK1 in mitochondrial,promoted the expres-sion of mitochondrial fission proteins DRP1 and MIEF2,and inhibited the expression of fusion proteins OPA1 and MFN1 in MDA-MB-231 cells(P<0.01).Mdivi-1 treatment inhibited DRP1 expression(P<0.01),but had no effect on cell viability(P>0.05);MYLS22 treatment inhibited OPA1 expression and counteracted the effect of FEM1C overexpression on MDA-MB-231 cells(P<0.01).Mechanistic studies revealed that FEM1C binds to ELAVL1 protein and promotes its expression(P<0.01);ELAVL1 protein stabilizes OPA1 mRNA by binding to it and upregu-lates OPA1 protein levels(P<0.01).Overexpression of OPA1 reversed the effect of FEM1C silencing on MDA-MB-231 cells(P<0.01).In vivo results showed that knockdown of FEM1C inhibited tumor growth in vivo(P<0.01).Conclusions:FEM1C promotes the stability of OPA1 mRNA by upregulation of ELAVL1 protein to promote mitochondrial fusion and inhibit autophagy,thereby promoting breast cancer progression.

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