1.Electroacupuncture Ameliorates NLRP3-mediated Pyroptosis in Spinal Cord Injury Rats by Reshaping The Gut Microbiota
Yin-Jie CUI ; Hong-Ru LI ; Jing-Yi LIU ; Hai-Lin DU ; Shu-Wen LIU ; Yuan YANG ; Chen-Guang ZHENG ; Jian-Qin XIANG ; Xiao-Juan SONG
Progress in Biochemistry and Biophysics 2026;53(5):1132-1153
ObjectiveSpinal cord injury (SCI) directly impairs the regulatory function of the autonomic nervous system, induces intestinal dysfunction, and significantly reduces patients’ quality of life. Preclinical studies have shown that electroacupuncture (EA) therapy can regulate the brain-gut axis and is used to treat central nervous system diseases such as major depressive disorder, Alzheimer’s disease and Parkinson’s disease. Recent research has established that fecal microbiota transplantation (FMT) from EA-treated SCI rats restored intestinal motility and colonic morphology. However, it remains unclear whether the regulation of gut microbiota by EA therapy directly contributes to neural repair after SCI. This study aims to explore whether gut microbiota mediates the neuroprotective effect of EA in the treatment of SCI and its possible mechanism. MethodsThe study employed RNA transcriptome analysis of spinal cord tissue to characterize gene expression profiles and to identify key signaling pathways following EA treatment for SCI. Hematoxylin-Eosin (HE) staining and Nissl staining were used to observe the morphological changes in spinal cord tissue. Western blot (WB) and enzyme-linked immunosorbent assay (ELISA) were applied to detect the effects of EA on the expression of proteins related to nucleotide-binding domain leucine-rich repeat and pyrin domain-containing receptor 3 (NLRP3) -dependent pyroptosis. Using 16S rDNA sequencing, the study observed alterations in gut microbiota diversity and community composition in SCI rats. Prior to establishing SCI models, rats were pretreated with an antibiotic cocktail to induce gut dysbiosis, and the effects on intestinal function and spinal cord neural repair were evaluated. FMT was performed to investigate the regulatory effects of post-EA FMT on motor function, general status, liver and spleen indices, and NLRP3-mediated pyroptosis in SCI rats. ResultsEA improved motor function and reduced regulated neuronal cell death in SCI rats. Transcriptomic analysis demonstrated the activation of immune- and inflammation-related pathways post-SCI, including NOD-like receptors, nuclear factor-kappa B(NF-κB), and Toll-like receptor (TLR) pathways. EA primarily influenced intestinal inflammation and autoimmune functions. 16S rDNA sequencing illustrated that EA did not alter the diversity of gut microbiota. However, EA altered the gut microbiota composition in SCI rats, increasing Lactobacillus and Akkermansia genera while rebalancing the Firmicutes/Bacteroidetes ratio. Furthermore, depletion of gut microbiota by antibiotics disrupted the intestinal barrier, reduced the expression of intestinal barrier proteins Zonula Occludens-1 (ZO-1) and Occludin, elevated serum lipopolysaccharide-binding protein (LBP) levels, exacerbated spinal cord tissue damage, and hindered motor function recovery in SCI rats. FMT from donors treated with EA reduced LBP levels in the intestine, blood, and spinal cord of rats, inhibited the TLR4 myeloid differentiation primary response protein 88 (MyD88)-NF‑κB pathway and NLRP3-dependent pyroptosis, and improved motor function. On the other hand, FMT treatment resulted in decreased body weight and food intake, whereas FMT using EA-treated donors effectively alleviated these alterations. ConclusionEA effectively alleviated neuroinflammatory responses in rats with SCI, primarily through regulating the gut microbiota and suppressing the NLRP3-dependent pyroptosis signaling pathway.
2.Electroacupuncture Ameliorates NLRP3-mediated Pyroptosis in Spinal Cord Injury Rats by Reshaping The Gut Microbiota
Yin-Jie CUI ; Hong-Ru LI ; Jing-Yi LIU ; Hai-Lin DU ; Shu-Wen LIU ; Yuan YANG ; Chen-Guang ZHENG ; Jian-Qin XIANG ; Xiao-Juan SONG
Progress in Biochemistry and Biophysics 2026;53(5):1132-1153
ObjectiveSpinal cord injury (SCI) directly impairs the regulatory function of the autonomic nervous system, induces intestinal dysfunction, and significantly reduces patients’ quality of life. Preclinical studies have shown that electroacupuncture (EA) therapy can regulate the brain-gut axis and is used to treat central nervous system diseases such as major depressive disorder, Alzheimer’s disease and Parkinson’s disease. Recent research has established that fecal microbiota transplantation (FMT) from EA-treated SCI rats restored intestinal motility and colonic morphology. However, it remains unclear whether the regulation of gut microbiota by EA therapy directly contributes to neural repair after SCI. This study aims to explore whether gut microbiota mediates the neuroprotective effect of EA in the treatment of SCI and its possible mechanism. MethodsThe study employed RNA transcriptome analysis of spinal cord tissue to characterize gene expression profiles and to identify key signaling pathways following EA treatment for SCI. Hematoxylin-Eosin (HE) staining and Nissl staining were used to observe the morphological changes in spinal cord tissue. Western blot (WB) and enzyme-linked immunosorbent assay (ELISA) were applied to detect the effects of EA on the expression of proteins related to nucleotide-binding domain leucine-rich repeat and pyrin domain-containing receptor 3 (NLRP3) -dependent pyroptosis. Using 16S rDNA sequencing, the study observed alterations in gut microbiota diversity and community composition in SCI rats. Prior to establishing SCI models, rats were pretreated with an antibiotic cocktail to induce gut dysbiosis, and the effects on intestinal function and spinal cord neural repair were evaluated. FMT was performed to investigate the regulatory effects of post-EA FMT on motor function, general status, liver and spleen indices, and NLRP3-mediated pyroptosis in SCI rats. ResultsEA improved motor function and reduced regulated neuronal cell death in SCI rats. Transcriptomic analysis demonstrated the activation of immune- and inflammation-related pathways post-SCI, including NOD-like receptors, nuclear factor-kappa B(NF-κB), and Toll-like receptor (TLR) pathways. EA primarily influenced intestinal inflammation and autoimmune functions. 16S rDNA sequencing illustrated that EA did not alter the diversity of gut microbiota. However, EA altered the gut microbiota composition in SCI rats, increasing Lactobacillus and Akkermansia genera while rebalancing the Firmicutes/Bacteroidetes ratio. Furthermore, depletion of gut microbiota by antibiotics disrupted the intestinal barrier, reduced the expression of intestinal barrier proteins Zonula Occludens-1 (ZO-1) and Occludin, elevated serum lipopolysaccharide-binding protein (LBP) levels, exacerbated spinal cord tissue damage, and hindered motor function recovery in SCI rats. FMT from donors treated with EA reduced LBP levels in the intestine, blood, and spinal cord of rats, inhibited the TLR4 myeloid differentiation primary response protein 88 (MyD88)-NF‑κB pathway and NLRP3-dependent pyroptosis, and improved motor function. On the other hand, FMT treatment resulted in decreased body weight and food intake, whereas FMT using EA-treated donors effectively alleviated these alterations. ConclusionEA effectively alleviated neuroinflammatory responses in rats with SCI, primarily through regulating the gut microbiota and suppressing the NLRP3-dependent pyroptosis signaling pathway.
3.Association of Genetically Predicted Obesity and Stool Frequency: Evidence From an Observational and Mendelian Randomization Study
Ke HAN ; Xiangyao WANG ; Shimin CHEN ; Xiaotong NIU ; Yan WANG ; Jingyuan XIANG ; Nan RU ; Miao LIU ; Ningli CHAI ; Enqiang LINGHU
Journal of Neurogastroenterology and Motility 2025;31(2):267-275
Background/Aims:
Obesity is associated with several gastrointestinal (GI) disorders and has been identified as a potential risk factor for various GI symptoms. Bowel frequency is an important indicator of bowel function. However, the causal link between obesity and gastrointestinal motility remains uncertain. This study aims to determine the causal effect of overall and central obesity on stool frequency.
Methods:
Four obesity-related anthropometric indicators–body mass index, body fat percentage, waist circumference (WC), and waist-tohip ratio (WHR)–were investigated. Individual-level baseline information from the UK Biobank was used to explore observational associations between obesity and stool frequency. Additionally, summary-level data from published genome-wide association studies were subjected to two-sample Mendelian randomization (MR) analyses to examine causal associations.
Results:
For all 4 indicators of obesity, higher levels of obesity were associated with more frequent bowel movements after adjusting for demographic characteristics, lifestyle, and dietary factors. After rigorous screening, 482 body mass index single nucleotide polymorphisms (SNPs), 7 body fat percentage SNPs, 48 WC SNPs, and 287 WHR SNPs were identified as instrument variables for MR analysis. The MR results were generally consistent with observational findings, proving that the associations observed in the overall obesity indicators were causal. For central obesity, the association between WHR and stool frequency remained consistent in both analysis phases, whereas WC showed a multidirectional association.
Conclusions
Obesity-related anthropometric indicators were causally associated with increased stool frequency in the overall and central obesity groups. Weight loss could be a potential approach to improve gastrointestinal regularity in individuals with obesity.
4.Discriminating Tumor Deposits From Metastatic Lymph Nodes in Rectal Cancer: A Pilot Study Utilizing Dynamic Contrast-Enhanced MRI
Xue-han WU ; Yu-tao QUE ; Xin-yue YANG ; Zi-qiang WEN ; Yu-ru MA ; Zhi-wen ZHANG ; Quan-meng LIU ; Wen-jie FAN ; Li DING ; Yue-jiao LANG ; Yun-zhu WU ; Jian-peng YUAN ; Shen-ping YU ; Yi-yan LIU ; Yan CHEN
Korean Journal of Radiology 2025;26(5):400-410
Objective:
To evaluate the feasibility of dynamic contrast-enhanced MRI (DCE-MRI) in differentiating tumor deposits (TDs) from metastatic lymph nodes (MLNs) in rectal cancer.
Materials and Methods:
A retrospective analysis was conducted on 70 patients with rectal cancer, including 168 lesions (70 TDs and 98 MLNs confirmed by histopathology), who underwent pretreatment MRI and subsequent surgery between March 2019 and December 2022. The morphological characteristics of TDs and MLNs, along with quantitative parameters derived from DCE-MRI (K trans , kep, and v e) and DWI (ADCmin, ADCmax, and ADCmean), were analyzed and compared between the two groups.Multivariable binary logistic regression and receiver operating characteristic (ROC) curve analyses were performed to assess the diagnostic performance of significant individual quantitative parameters and combined parameters in distinguishing TDs from MLNs.
Results:
All morphological features, including size, shape, border, and signal intensity, as well as all DCE-MRI parameters showed significant differences between TDs and MLNs (all P < 0.05). However, ADC values did not demonstrate significant differences (all P > 0.05). Among the single quantitative parameters, v e had the highest diagnostic accuracy, with an area under the ROC curve (AUC) of 0.772 for distinguishing TDs from MLNs. A multivariable logistic regression model incorporating short axis, border, v e, and ADC mean improved diagnostic performance, achieving an AUC of 0.833 (P = 0.027).
Conclusion
The combination of morphological features, DCE-MRI parameters, and ADC values can effectively aid in the preoperative differentiation of TDs from MLNs in rectal cancer.
5.Integrated Optical and Magnetic Navigation for Simplified Percutaneous Transforaminal Endoscopic Lumbar Discectomy: A Novel Approach
Xing-Chen YAO ; Jun-Peng LIU ; Xin-Ru DU ; Li GUAN ; Yong HAI ; Jincai YANG ; Aixing PAN
Neurospine 2025;22(1):297-307
Objective:
This study aims to evaluate the clinical benefits of the integrated optical and magnetic surgical navigation system in assisting transforaminal endoscopic lumbar discectomy (TELD) for the treatment of lumbar disc herniation (LDH).
Methods:
A retrospective analysis was conducted on patients who underwent TELD for LDH at Beijing Chaoyang Hospital, Capital Medical University from November 2022 to December 2023. Patients treated with the integrated optical and magnetic surgical navigation system were defined as the navigation-guided TELD (Ng-TELD) group (30 cases), while those treated with the conventional x-ray fluoroscopy method were defined as the control group (31 cases). Record and compare baseline characteristics, surgical parameters, efficacy indicators, and adverse events between the 2 patient groups.
Results:
The average follow-up duration for the 61 patients was 11.8 months. Postoperatively, both groups exhibited significant relief from back and leg pain, which continued to improve over time. At the final follow-up, patients’ lumbar function and quality of life had significantly improved compared to preoperative levels (p < 0.05). The Ng-TELD group had significantly shorter total operation time (58.43 ± 12.37 minutes vs. 83.23 ± 25.90 minutes), catheter placement time (5.83 ± 1.09 minutes vs. 15.94 ± 3.00 minutes), decompression time (47.17 ± 11.98 minutes vs. 67.29 ± 24.23 minutes), and fewer intraoperative fluoroscopies (3.20 ± 1.45 vs. 16.58 ± 4.25) compared to the control group (p < 0.05). There were no significant differences between the groups in terms of efficacy evaluation indicators and hospital stay. At the final follow-up, the excellent and good rate of surgical outcomes assessed by the MacNab criteria was 98.4%, and the overall adverse event rate was 8.2%, with no statistically significant differences between the groups (p > 0.05).
Conclusion
This study demonstrates that the integrated optical and magnetic surgical navigation system can reduce the complexity of TELD, shorten operation time, and minimize radiation exposure for the surgeon, highlighting its promising clinical potential.
6.A new mouse model of facioscapulohumeral muscular dystrophy
Hao CHEN ; Ru MENG ; Lingdong JIANG ; Wenwen LIU ; Jun AN ; Sihui WU ; Qinxin ZHANG ; Jun ZHANG ; Ping HU
Acta Laboratorium Animalis Scientia Sinica 2025;33(7):968-979
Objective To establish a transgenic mouse model of facioscapulohumeral muscular dystrophy(FSHD)using tamoxifen induction and Myf6-CreERT2 and FLExDUX4 mice.Methods Dual transgenic(M6D4/+)mice were generated by crossbreeding Myf6-CreERT2 hemizygous and FLExDUX4 hemizygous mice.Full-length DUX4(DUX4-fl)expression was induced by tamoxifen starting at 3 weeks old.The disease model was evaluated at 9 weeks old by assessing changes in body mass,four-limb strength,inverted screen test,skeletal muscle weight ratio,hematoxylin/eosin,Picrosirius Red,and immunofluorescent staining of skeletal muscle paraffin sections,quantitative real-time polymerase chain reaction(RT-PCR),and RNA-sequencing(RNA-seq)of skeletal muscle.Results Dual transgenic heterozygous mice(M6D4/+)were successfully obtained.These mice exhibited significant physiological and pathological changes at 9 weeks,including delayed weight gain,reduced four-limb strength and endurance,decreased skeletal muscle weight ratio,and increases in centrally nucleated muscle fibers and fibrosis.Expression levels of DUX4 and its targeted genes were significantly up-regulated in skeletal muscle,as demonstrated by RT-PCR.RNA-seq revealed up-regulation of immune regulation-,interleukin-6,and tumor necrosis factor-related genes and down-regulation of skeletal muscle development-and differentiation-related genes.Conclusions M6D4/+mice effectively simulated the skeletal muscle phenotype of FSHD and thus provide a good animal model for research into the pathogenesis,intervention,and treatment of FSHD.
7.Estimation of Ground Reaction Force and Center of Pressure During Walking Based on Neural Network Model
Journal of Medical Biomechanics 2025;40(1):140-147
Objective Two neural network algorithm models were constructed to estimate the three-dimensional(3D)ground reaction force(GRF)and center of pressure(COP)during walking,and the estimation results of two algorithm models were compared,so as to provide a solution for the acquisition of gait dynamics data without force plate.Methods A total of 1 384 gait data were selected.Multi-layer perceptron(MLP)and convolutional neural network(CNN)were applid to construct models for estimating GRF and COP components based on the 3D trajectories of whole-body markers.100 samples were randomly selected as the test set,and the estimation performance was evaluated by the correlation coefficient(r),relative root mean square error(rRMSE).Paired-sample t-tests were used to compare the estimation performance of the two neural network models.Results The r values of each components of GRF estimated by MLP were 0.954-0.993,and the rRMSEs were 4.36%-9.83%.The rvalues of each component of GRF estimated by CNN were 0.979-0.994,and the rRMSEs were 3.06%-6.69%.The rvalues of each component of COP estimated by MLP were 0.888-0.992,and the rRMSEs were 4.78%-16.63%.The rvalues of each component of COP estimated by CNN were 0.944-0.995,and rRMSEs were 3.06%-10.85%.The RMSEs of CNN in estimating the medio-lateral component of GRF,the medio-lateral and antero-posterior components of COP during right stance phase,as well as the medio-lateral and antero-posterior components of COP during left stance phase were all lower than those of MLP(P<0.01).The RMSEs of MLP in estimating the anterior-posterior component of GRF during right stance phase,as well as the anterior-posterior component of COP and the vertical direction of GRF during left stance phase were lower than those of CNN(P<0.01).Conclusions Both MLP and CNN achieved good estimation accuracy in estimating GRF and COP during walking based on the trajectories of whole-body markers.The estimation accuracy of MLP in estimating the anterior-posterior components and vertical component of GRF was better than that of CNN,while the estimation accuracy of CNN in estimating the medio-lateral component of GRF,the anterior-posterior and medio-lateral components of COP were better than that of MLP.
8.Prenatal ultrasound diagnosis of fetal hypoplastic left heart syndrome with left ventricular enlargement:a case report
Chen ZHU ; Fan-gui ZHAO ; Ying-liu YAN ; Cai-xia LEI ; Ting YU ; Chen-yan ZHAO ; Ru LIN ; Yun-yun REN
Fudan University Journal of Medical Sciences 2025;52(1):143-146
The pregnant woman was 30 years old,G2P0.This singleton pregnancy at 22 weeks of gestation was screened for second-trimester ultrasound malformations,suggesting fetal aortic valve atresia,aortic stenosis with reverse blood flow,mitral valve atresia,and markedly enlarged left ventricle,which was considered for the diagnosis of hypoplastic left heart syndrome(HLHS).The pregnancy was terminated at our hospital and subsequently underwent genetic testing with results of heterozygous variants in the NOTCH1 gene,which can cause aortic valve disease type 1.The findings of the fetal autopsy were aortic valve atresia,mitral valve widening and thickening,and left ventricular enlargement with myocardial infarction.This report focuses on the ultrasound characteristics of HLHS with left ventricular enlargement and its hemodynamic changes in order to improve clinicians'understanding of the progressive changes in the disease phenotype of HLHS.
9.Observation of the Application Effect of Hyperbaric Oxygen Combined with Task OrientedTraining in Hemiplegic Patients after Cerebral Infarction
Ya-ling ZHOU ; Lan-hua ZHANG ; Qing-hua CHEN ; Xiao-hui GAO ; Ru-ping LIU
Progress in Modern Biomedicine 2025;25(19):3172-3178,3200
Objective:To observe the application effect of hyperbaric oxygen combined with task oriented training in hemiplegic patients after cerebral infarction.Methods:106 hemiplegic patients after cerebral infarction admitted to Xinglin Hospital of Xiamen from March 2022 to June 2024 were prospectively selected and randomly divided into control group(received task oriented training,n=53)and observation group(received hyperbaric oxygen combined with task oriented training,n=53).Berg balance scale(BBS),clinical spasticity index(CSI),national institute of health stroke Scale(NIHSS),motor function[fugl-meyer motor function assessment scale(FMA),motor assessment scale(MAS)],walking ability[functional ambulation category(FAC),6-minute walking distance(6MWD)],quality of life and self-care ability[quality of life scale for stroke(SS-QOL),activity of daily living(ADL)]before intervention and 8 weeks after intervention were compared between the two groups.Result:Compared with control group 8 weeks after intervention,the observation group had higher BBS,FMA,MAS,FAC,SS-QOL,ADL scores,and 6MWD,while had lower NIHSS and CSI scores(P<0.05).Conclusion:Hyperbaric oxygen combined with task oriented training in hemiplegic patients after cerebral infarction,can effectively improve patients' motor function,balance ability,and self-care ability,enhance their quality of life,and reduce neurological damage.
10.Correlation between the expression level of miRNA-4319 and miRNA-4262 in early gastric carcinoma tissue and recurrence after endoscopic submucosal dissection
Hui ZHANG ; Xiaoyang LI ; Qing'e LIU ; Ru JIAO ; Jian CHANG ; Lijuan YAN ; Chen YANG ; Limin CHENG
China Journal of Endoscopy 2025;31(9):69-75
Objective To investigate the correlation between the expression of microRNA-4319(miRNA-4319)and microRNA-4262(miRNA-4262)in early gastric carcinoma tissue and postoperative recurrence after endoscopic submucosal dissection(ESD).Methods From May 2018 to March 2020,396 patients with early gastric carcinoma who underwent ESD were regarded as the disease group,meantime,98 patients with normal gastric mucosa gastritis confirmed by pathological examination were as the control group.Quantitative reverse transcription polymerase chain reaction(qRT-PCR)method was applied to detect the relative expression levels of miRNA-4319 and miRNA-4262 in tissues;follow up on postoperative recurrence of early gastric carcinoma patients,and the expression levels and clinical pathological characteristics of miRNA-4319 and miRNA-4262 were compared between recurrent and non recurrent patients.Multivariate Logistic regression analysis was applied to analyze the influencing factors of recurrence in early gastric carcinoma patients after ESD;receiver operating characteristic curve(ROC curve)was applied to analyze the predictive value of miRNA-4319 and miRNA-4262 in early gastric carcinoma tissue for recurrence after ESD.Results The expression levels of miRNA-4319 and miRNA-4262 in the disease group were lower than those in the control group,the differences were statistically significant(P<0.05);The expression levels of miRNA-4319 and miRNA-4262 in the recurrence group were decreased,and the proportion of submucosal invasion was increased,the differences were statistically significant(P<0.05).The depth of invasion to the submucosal level(OR=3.158,95%CI:1.395~7.151)was a risk factor for recurrence after ESD in patients with early gastric carcinoma(P<0.05),and miRNA-4262 ≥ 0.76(OR=0.561,95%CI:0.370~0.852)and miRNA-4319 ≥ 0.69(OR=0.482,95%CI:0.255~0.911)were protective factors for recurrence after ESD in patients with early gastric carcinoma(P<0.05);The area under the curve(AUC)of miRNA-4319,miRNA-4262 and their combination for predicting recurrence after ESD in patients with early gastric carcinoma was 0.889(95%CI:0.854~0.918),0.914(95%CI:0.882~0.940)and 0.964(95%CI:0.940~0.980),respectively,which was superior to the individual predictions of miRNA-4319 and miRNA-4262 respectively(P<0.05).Conclusion MiRNA-4319 and miRNA-4262 are low expressed in tissues of early gastric carcinoma patients,they are closely related to postoperative recurrence after ESD.

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