1.Effects of ammonia poisoning on cognitive behavior and hippocampal synaptic damage in mice
Jiuxuan ZHANG ; Jinnan ZHANG ; Xiaofan SUI ; Xiaxia PEI ; Jianhong WEI ; Qiang SU ; Tian LI
Chinese Journal of Tissue Engineering Research 2026;30(5):1122-1128
BACKGROUND:Ammonia poisoning is considered to be the main hypothesis for the pathogenesis of hepatic encephalopathy.Ammonia can lead to psychiatric and cognitive behavioral disorders,although the specific pathological molecular mechanisms remain unclear.OBJECTIVE:To investigate the effects of ammonia poisoning on cognitive behavior and hippocampal neuronal synapses in mice.METHODS:Thirty-two C57BL/6J mice were randomly divided into a normal control group and an ammonium chloride group,with 16 mice in each group.Normal saline was injected intraperitoneally in the control group,and ammonium chloride(10 mmol/kg)was injected intraperitoneally in the ammonium chloride group to construct a model of ammonia poisoning,once a day.After 7 days of ammonium chloride intervention,blood samples were collected from the hearts of six mice in each group for blood ammonia concentration detection.Behavioral experiments,including the open field test,novel object recognition test,and Y-maze test,were performed to assess mental and cognitive-behavioral changes in mice.Finally,hippocampal tissues were extracted for western blot analysis to detect the expression levels of synaptophysin and postsynaptic density protein-95 in hippocampal neurons.RESULTS AND CONCLUSION:The blood ammonia concentration was significantly elevated in the ammonium chloride group compared with the control group(P<0.05).Mice in the ammonium chloride group showed anxiety-like behavior and disinhibition phenomenon,and a significant decrease in recognition memory and working memory ability.Western blot results revealed that the expression of synaptophysin and postsynaptic density protein-95 protein in hippocampal neurons in the ammonium chloride group was lower than that in the control group(P<0.05).To conclude,ammonia poisoning can induce hippocampal neuronal synaptic damage,leading to psychiatric and cognitive behavioral abnormalities in mice.
2.Research advances in antiviral drugs for the treatment of hepatitis D virus infection
Yang LIU ; Yonghe QI ; Zhongmin ZHOU ; Jianhua SUI ; Wenhui LI
Journal of Clinical Hepatology 2026;42(2):278-285
Co-infection of hepatitis D virus (HDV) and hepatitis B virus (HBV) is the most severe form of viral hepatitis and is associated with accelerated progression of liver disease and a significant increase in the risk of liver cirrhosis and hepatocellular carcinoma. Nucleo(s)tide analogues for HBV treatment are ineffective against HDV infection, necessitating the urgent need for developing specific and effective antiviral therapies for HDV. In recent years, significant advances have been made in the research and development of specific antiviral drugs against HDV, including entry inhibitors targeting viral entry (Bulevirtide) and monoclonal antibody drugs (Libevitug), which bring ground-breaking advances in the treatment of HDV infection. This article briefly reviews the latest research advances in therapeutic drugs for HDV, introduces the mechanism of action and clinical research data of new drugs recently approved for the treatment of HDV, and discusses the challenges that need to be solved in the field of HDV treatment, in order to provide a reference for understanding the current status of hepatitis D treatment.
3.Effects of Xiebai San on the Morphological Structures of Lung and Intestinal Tissues and Expression Levels of PI3K and Akt in Rats with Allergic Asthma
Jing SONG ; Zongtong YANG ; Xiaojing LI ; Zifa LI ; Fengyun SU ; Dongchuan XU ; Zaiyun SUI
Laboratory Animal and Comparative Medicine 2026;46(2):191-204
ObjectiveTo investigate the mechanism by which Xiebai San regulates respiratory tract and intestinal mucosal immunity in rats with allergic asthma. MethodsForty male SD rats were randomly divided into four groups based on body weight: control group, model group, positive control group, and Xiebai San group. The model group, positive control group, and Xiebai San group were sensitized with ovalbumin to establish a rat model of allergic asthma. From day 21 (the aerosol challenge phase), each group received daily gavage interventions simultaneously: the positive control group was administered dexamethasone (0.068 mg/kg), the Xiebai San group received Xiebai San solution (2 g/mL, 11.3 mL/kg), while the control and model groups were given an equal volume of normal saline, once daily for 14 consecutive days. After euthanasia, lung and intestinal tissues were collected. Hematoxylin and eosin staining was used to observe histopathological changes. Transmission electron microscopy was employed to examine tissue ultrastructure. Immunohistochemistry was applied to detect the positive reaction areas of phosphatidyl-inositol 3-kinase (PI3K) and protein kinase B (Akt) proteins. Total protein and total RNA were extracted from lung and intestinal tissues, then the protein and mRNA expression levels of PI3K and Akt genes were detected by Western blotting and real-time quantitative PCR, respectively. ResultsHistopathological results showed alveolar emphysema accompanied by inflammatory cell infiltration, and intestinal mucosal injury with inflammatory cell infiltration in the model group as compared with the control group; the cellular structure of lung tissues was disrupted in the model group, with reduced organelles, while the ultrastructural lesions in the intestine were relatively mild. Compared with the model group, Xiebai San group exhibited milder pathological changes in lung tissues, with occasional alveolar wall damage and a small amount of inflammatory cell infiltration; the intestinal mucosal structure was improved, glands were arranged regularly, and pathological changes such as tissue loosening and inflammatory infiltration were alleviated; the cellular structure of lung tissues was relatively intact with reduced severity of lesions, and no ultrastructural pathological changes were observed in intestinal tissues. Immunohistochemistry and Western blotting results showed that compared with the control group, the specific positive reaction areas of PI3K and Akt in lung and intestinal tissues were significantly increased in the model group (all P<0.001); meanwhile, the protein expression levels of PI3K and Akt were significantly upregulated (all P<0.05). Compared with the model group, the positive area of Akt protein in lung tissue was significantly reduced in the Xiebai San group (P<0.001), and the positive area of PI3K in intestinal tissue was also significantly decreased (P<0.000 1). Additionally, the protein expression levels of PI3K and Akt in lung and intestinal tissues were significantly downregulated (all P<0.01). Real-time quantitative PCR results showed that compared with the control group, the mRNA expression levels of PI3K and Akt genes in lung and intestinal tissues were significantly elevated in the model group (all P<0.05). Compared with the model group, the mRNA expression levels of PI3K and Akt genes in lung and intestinal tissues were significantly reduced in the Xiebai San group (all P<0.05). ConclusionXiebai San exerts protective effects on rats with allergic asthma by inhibiting the expression of key nucleic acids and proteins in the PI3K-Akt signaling pathway in lung and intestinal tissues, improving the morphological structure of lung tissue, and maintaining intestinal mucosal integrity, and regulating intestinal mucosal immune function.
4.A novel MRI radiomics-based nomogram for preoperative prediction of perineural invasion in intrahepatic cholangiocarcinoma
Huize SUI ; Zheyu ZHOU ; Shuya CAO ; Xiaoliang XU ; Guoqiang LI
Acta Universitatis Medicinalis Anhui 2026;61(4):736-742
ObjectiveTo evaluate a novel nomogram based on contrast-enhanced MRI radiomics combined with clinical variables for the preoperative prediction of perineural invasion (PNI) in intrahepatic cholangiocarcinoma (ICC). MethodsThe clinical data of 59 ICC patients were retrospectively collected. According to postoperative pathology reports, the patients were divided into the non-PNI group (n = 33) and the PNI group (n = 26). Regions of interest (ROI) were delineated from five MRI sequences. Radiomics features were then extracted and filtered to select those with the strongest discriminative power for PNI identification. These selected features were used to construct a radiomics model, which subsequently generated a quantitative radiomics score (radiomics score, Radscore). Univariate analysis was applied to identify clinical variables associated with PNI, and the glm function was subsequently used to construct clinical and combined models. Finally, the models were evaluated using receiver operating characteristic (ROC) curves, calibration curves, and decision curve analysis (DCA). The combined model was then visualized as a nomogram. ResultsThe clinical model included age, carbohydrate antigen 19-9 (CA19-9), red blood cell distribution width, and albumin, whereas the Radscore included five radiomic features. The areas under the ROC curves (AUCs) for the clinical and radiomics models were 0.717 (95%CI: 0.586-0.848) and 0.896 (95%CI: 0.820-0.973), respectively, whereas the combined model further improved its AUC to 0.917 (95% CI:0.848-0.987). The calibration curves and DCA showed that the nomogram was well calibrated and provided the greatest net clinical benefit. ConclusionThe novel nomogram may serve as a basis for preoperative prediction of PNI status, thereby assisting clinical decision-making and guiding personalized treatment.
5.Effects of ammonia poisoning on cognitive behavior and hippocampal synaptic damage in mice
Jiuxuan ZHANG ; Jinnan ZHANG ; Xiaofan SUI ; Xiaxia PEI ; Jianhong WEI ; Qiang SU ; Tian LI
Chinese Journal of Tissue Engineering Research 2026;30(5):1122-1128
BACKGROUND:Ammonia poisoning is considered to be the main hypothesis for the pathogenesis of hepatic encephalopathy.Ammonia can lead to psychiatric and cognitive behavioral disorders,although the specific pathological molecular mechanisms remain unclear.OBJECTIVE:To investigate the effects of ammonia poisoning on cognitive behavior and hippocampal neuronal synapses in mice.METHODS:Thirty-two C57BL/6J mice were randomly divided into a normal control group and an ammonium chloride group,with 16 mice in each group.Normal saline was injected intraperitoneally in the control group,and ammonium chloride(10 mmol/kg)was injected intraperitoneally in the ammonium chloride group to construct a model of ammonia poisoning,once a day.After 7 days of ammonium chloride intervention,blood samples were collected from the hearts of six mice in each group for blood ammonia concentration detection.Behavioral experiments,including the open field test,novel object recognition test,and Y-maze test,were performed to assess mental and cognitive-behavioral changes in mice.Finally,hippocampal tissues were extracted for western blot analysis to detect the expression levels of synaptophysin and postsynaptic density protein-95 in hippocampal neurons.RESULTS AND CONCLUSION:The blood ammonia concentration was significantly elevated in the ammonium chloride group compared with the control group(P<0.05).Mice in the ammonium chloride group showed anxiety-like behavior and disinhibition phenomenon,and a significant decrease in recognition memory and working memory ability.Western blot results revealed that the expression of synaptophysin and postsynaptic density protein-95 protein in hippocampal neurons in the ammonium chloride group was lower than that in the control group(P<0.05).To conclude,ammonia poisoning can induce hippocampal neuronal synaptic damage,leading to psychiatric and cognitive behavioral abnormalities in mice.
6.Identification of the MYB transcription factor family involved in response to salt stress in Picea mongolica.
Mingming SUI ; Fuman ZHANG ; Tian TIAN ; Yanqiu YAN ; Le GENG ; Hui LI ; Yu'e BAI
Chinese Journal of Biotechnology 2025;41(2):825-844
Picea mongolica, known for its remarkable tolerance to cold, drought, and salinity, is a key species for ecological restoration and urban greening in the "Three Norths" region of China. MYB transcription factors are involved in plant responses to abiotic stress and synthesis of secondary metabolites. However, studies are limited regarding the MYB transcription factors in P. mongolica and their roles in salt stress tolerance. In this study, 196 MYBs were identified based on the genome of Picea abies and the transcriptome of P. mongolica. Phylogenetic analysis classified the MYB transcription factors into seven subclasses. The R2R3-MYB subclass contained the maximum number of genes (84.77%), while the R-R and R1R2R3 subclasses each represented the smallest proportion, at about 0.51%. The MYB transcription factors within the same subclass were highly conserved, exhibiting similar motifs and gene structures. Experiments with varying salt stress gradients revealed that P. mongolica could tolerate the salt concentration up to 1 000 mmol/L. From the transcriptome data of P. mongolica exposed to salt stress (1 000 mmol/L) for 0, 3, 6, 12, and 24 h, a total of 34 differentially expressed MYBs were identified, which suggested that these MYBs played a key role in regulating the response to salt stress. The proteins encoded by these differentially expressed genes varied in length from 89 aa to 731 aa, with molecular weights ranging from 10.19 kDa to 79.73 kDa, isoelectric points between 4.80 and 9.91, and instability coefficients from 41.20 to 70.99. Subcellular localization analysis indicated that most proteins were localized in the nucleus, while three were found in the chloroplasts. Twelve MYBs were selected for quantitative real-time PCR (qRT-PCR), which showed that their expression patterns were consistent with the RNA-seq data. This study provides valuable data for further investigation into the functions and mechanisms of MYB family members in response to salt stress in P. mongolica.
Picea/physiology*
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Transcription Factors/classification*
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Salt Stress/genetics*
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Phylogeny
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Plant Proteins/genetics*
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Salt Tolerance/genetics*
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Gene Expression Regulation, Plant
7.Value of DWI combined with DCE-MRI quantitative parameters in predicting the efficacy of neoadjuvant chemotherapy for locally advanced breast cancer
Yuan SUI ; Bei DONG ; Xinglong WANG ; Wei SHAN ; Kunpeng FENG ; Wenqi HUANG ; Yiming LI
Chinese Journal of Endocrine Surgery 2025;19(2):193-197
Objective:To explore the value of quantitative parameters of diffusion weighted imaging (DWI) combined with dynamic enhanced magnetic resonance imaging (DCE-MRI) in predicting the efficacy of neoadjuvant chemotherapy for locally advanced breast cancer (LABC) .Methods:A total of 97 patients with LABC admitted to the hospital from Mar. 2020 to Mar. 2023 were studied and received neoadjuvant chemotherapy to evaluate the therapeutic effect, and DWI and DCE-MRI scans were performed before and after treatment. The difference of DWI and DCE-MRI quantitative parameters before treatment in patients with different therapeutic effects was compared, and the correlation between the difference of DWI and DCE-MRI quantitative parameters and therapeutic effect was analyzed. The predictive value of quantitative parameters of DWI and DCE-MRI before treatment was analyzed. The quantitative parameters of DWI and DCE-MRI in patients with different pathological reactions were compared before treatment, and the quantitative parameters of DWI and DCE-MRI were compared before and after treatment.Results:The apparent diffusion coefficient (ADC) of patients with effective chemotherapy before treatment was higher, but transport constant (Ktrans) , extracellular space volume percentage (Ve) and rate constant (Kep) were lower ( t=5.0, 3.27, 3.55, 3.89, P < 0.05) ; Spearman correlation analysis showed that ADC was positively correlated with chemotherapy efficacy before treatment (r=0.66; P < 0.05) , while Kep, Ve, Ktrans were negatively correlated with it (r=-0.58, -0.47, -0.60; P < 0.05) ; ROC curves showed that the area under the curve (AUC) values of ADC, Kep, Ve and Ktrans in predicting chemotherapy efficacy before treatment were 0.771, 0.797, 0.664 and 0.715, respectively, while the combined AUC value of each indicator was 0.832; Compared with patients with non-significant pathological response, ADC before treatment was higher in patients with significant pathological response, Kep, Ve and Ktrans were lower ( t=4.46, 3.32, 3.60, 3.95, P < 0.05) ; Compared with before treatment, ADC value increased after treatment, while Kep, Ve and Ktrans decreased ( t=8.77, 6.22, 9.34, 10.26, P < 0.05) . Conclusion:Quantitative parameters of DWI and DCE-MRI can reflect the changes in the condition of patients with locally advanced neoadjuvant chemotherapy, and the combination of the two can help to improve the predictive value of chemotherapy efficacy in patients.
8.Value of material separation technique based on energy spectrum CT in predicting recurrence of osteoporotic vertebral fractures after operation
Yuan SUI ; Bei DONG ; Yiming LI ; Yuzhou LI ; Yinshi ZHENG
Chinese Journal of Endocrine Surgery 2025;19(1):96-100
Objective:To explore the value of material separation technique based on energy spectrum CT in predicting the recurrence of osteoporotic vertebral fractures after operation, in order to provide reference for the evaluation of postoperative recurrence of fractures.Methods:A total of 80 cases with percutaneous vertebroplasty (PVP) treated in the First People’s Hospital of Shangqiu, Henan Province from Jan. 2020 to Dec. 2021 were selected for pre-operative CT material separation examination and postoperative follow-up for at least 2 years. The patients were divided into recurrence group and no recurrence group according to the recurrence of fracture. The clinical data and the results of material separation technique by energy spectrum CT were compared. The relevant factors for fracture recurrence was assessed by Logistic regression analysis, and ROC curve was used to evaluate the predictive value of material separation technique based on energy spectrum CT in the recurrence of fracture.Results:After a follow-up of at least 2 years, 26 of the 80 patients had a recurrence of the fracture. The age, calcium water and hydroxyapatite (HAP) -water values in recurrent group were higher than those in no recurrent group, and the proportion of bone cement leakage was higher ( t/ Fisher=2.57, 5.40, 3.96, - P = 0.012 < 0.001, < 0.001, 0.033) . Logistic regression analysis showed that calcium-water ( OR=2.321, 95%CI: 1.464-3.679) and HAP-water ( OR=1.784, 95%CI: 1.246-2.554) values were the factors for postoperative fracture recurrence in osteoporotic fractures ( P<0.001) . ROC curve showed that AUC, sensitivity and specificity of combined calcium-water and HAP-water values in predicting postoperative fracture recurrence were 0.868, 88.46% and 79.63%, respectively ( P<0.001) . Conclusions:The material separation technique based on energy spectrum CT in predicting the recurrence of osteoporotic vertebral fractures after operation has high clinical application value, and provides a new idea for the clinical evaluation of postoperative recurrence of fractures.
9.Analysis of the clinical value of spectral CT in diagnosing the nature of thyroid nodules
Yuzhou LI ; Hongrui JIN ; Yuan SUI ; Guangyao LIN
Chinese Journal of Endocrine Surgery 2025;19(5):709-714
Objective:To analyze the relationship between CT characteristics and related quantitative parameters of spectral CT in diagnosing the nature of thyroid nodules and lymph node metastasis in patients.Methods:This retrospective analysis included 198 patients with thyroid nodules who visited Shangqiu First People’s Hospital between Jun. 2019 and Dec. 2024. The patients included 53 males and 145 females, aged (50.96 ± 5.36) years. A total of 105 patients were classified as benign nodules and 93 patients as malignant nodules (45 with metastasis and 48 without metastasis). All patients underwent spectral CT scans to analyze the efficacy of spectral CT in diagnosing the nature of thyroid nodules and lymph node metastasis in malignant nodules. Continuous data were expressed as ±s, and intergroup comparisons were performed using independent sample t-tests. Enumeration data were expressed as [n (%) ] and tested using the chi-squared test. Receiver-operating characteristic (ROC) curves were constructed to determine the diagnostic efficacy of various CT features and related quantitative parameters in diagnosing thyroid nodules and cervical lymph node metastasis. Results:The AUCs of capsule, edge and shape for diagnosing malignant nodules were 0.706, 0.701 and 0.735, respectively. The AUCs of IC, NIC and slope of energy spectrum curve in arterial phase and IC, NIC and slope of energy spectrum curve in venous phase for diagnosing malignant thyroid nodules were 0.967, 0.992, 0.966, 0.819, 0.991 and 0.986, respectively. The AUCs of nodule number, capsule, edge, shape and long diameter of nodule for diagnosing cervical lymph node metastasis in patients with malignant thyroid nodules were 0.642, 0.617, 0.643, 0.619 and 0.651, respectively. The AUCs of IC, NIC and slope of energy spectrum curve in arterial phase and IC, NIC and slope of energy spectrum curve in venous phase were 0.941, 0.941, 0.955, 0.786, 0.881 and 0.824, respectively. Multivariate analysis showed that multiple nodules, absence of capsule, blurred margins, irregular shape, nodule long diameter >10 mm, IC, NIC in the arterial and venous phases, and increased slope of the energy spectrum curve were independent risk factors for cervical lymph node metastasis in patients with malignant thyroid nodules ( OR=2.631, 1.854, 2.694, 1.936, 2.657, 2.064, 2.314, 2.525, 2.342, 2.712, 2.986, P<0.05) . Conclusions:In spectral CT examinations of patients with thyroid nodules, malignant nodules often show characteristics such as no capsule and blurred edges, accompanied by changes in relevant quantitative parameters. These CT characteristics and quantitative parameters have good diagnostic efficacy for the nature of thyroid nodules and cervical lymph node metastasis in patients with malignant nodules, and have high clinical application value.
10.Value of dual-energy CT quantitative measurement of lumbar spine combined with serum BALP,BGP, β-CTx in predicting osteoporotic fractures
Bing SUN ; Yinshi ZHENG ; Yiming LI ; Yuan SUI ; Xinglong WANG ; Wenqi HUANG
Chinese Journal of Endocrine Surgery 2025;19(5):740-744
Objective:To explore the predictive value of dual-energy CT lumbar quantitative measurement combined with serum bone alkaline phosphatase (BALP), osteocalcin (BGP), and β-type I collagen carboxy-terminal peptide ( β-CTx) for the risk of fractures in patients with osteoporosis. Methods:A total of 90 patients with osteoporosis who underwent dual-energy CT lumbar quantitative detection at the First People’s Hospital of Shangqiu from Jan. 2020 to Jan. 2023 were selected as the research subjects. According to the occurrence of fractures within one year of follow-up, the patients were divided into the fracture group ( n=36) and the non-fracture group ( n=54). The clinical data, dual-energy CT lumbar quantitative parameters, and serum BALP, BGP, and β-CTx levels of the two groups were compared. Logistic multivariate regression analysis was used to analyze the risk factors for fractures in patients with osteoporosis, and the receiver operating characteristic (ROC) curve was used to analyze the predictive value of dual-energy CT lumbar quantitative parameters combined with serum BALP, BGP, and β-CTx for fractures in patients with osteoporosis. Results:There were no statistically significant differences in gender, age, body mass index (BMI), smoking history, drinking history, or bone marrow CT value parameters between the fracture group and the non-fracture group ( χ2=0.66, t=1.86, t=1.59, χ2=0.19, χ2=0.98, t=0.40, all P > 0.05). However, there were statistically significant differences in the history of fragility fractures, regular calcium supplementation, lumbar bone mineral density (BMD), calcium CT value, mixed energy image CT value, calcium concentration, fat fraction, BALP, BGP, and β-CTx ( χ2=9.73, χ2=4.17, t=3.14, t=7.06, t=7.92, t=6.50, t=3.26, t=8.12, t=12.66, t=11.37, all P < 0.05). Logistic multivariate regression analysis showed that the history of fragility fractures ( OR=1.863, P=0.023), regular calcium supplementation ( OR=1.728, P=0.031), fat fraction ( OR=1.685, P=0.009), BALP ( OR=1.815, P=0.002), BGP ( OR=1.605, P=0.003), and β-CTx ( OR=1.636, P < 0.001) were risk factors for fractures in patients with osteoporosis, while lumbar bone BMD ( OR=0.456, P=0.025), calcium CT value ( OR=0.486, P=0.005), mixed energy image CT value ( OR=0.490, P < 0.001), and calcium concentration ( OR=0.509, P=0.010) were protective factors. The ROC curve showed that the sensitivity of dual-energy CT lumbar quantitative measurement parameters combined with serum BALP, BGP, and β-CTx in predicting fractures in patients with osteoporosis was 94.68%, the specificity was 92.16%, the Youden index was 0.868, the area under the curve (AUC) was 0.947, and the 95% confidence interval ( CI) was 0.905 to 0.982. Conclusion:Dual-energy CT lumbar quantitative parameters and serum BALP, BGP, and β-CTx levels have certain predictive value for the risk of fractures in patients with osteoporosis, and the combined prediction value is higher.

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