1.Multimodal MRI features of cerebral small vessel disease combined with type 2 diabetes mellitus
Jing WANG ; Hang PAN ; Yan-ling ZHENG ; Zi-wen LIANG ; Yu-lin WANG ; Qiu-guo OU ; Fan-ying GUAN ; Hai-yan TAO ; Lei SONG ; Rui TANG
Journal of Regional Anatomy and Operative Surgery 2025;34(8):689-692
Objective To analyze the imaging features of cerebral small vessel disease in patients with type 2 diabetes mellitus by multimodal MRI.Methods The clinical data of 160 patients with cerebral small vessel disease admitted to our hospital from January to December 2020 were retrospectively analyzed.According to whether they were complicated with type 2 diabetes mellitus,they were divided into the diabetic group and the non-diabetic group,with 80 cases in each group.Both groups underwent multimodal MRI scans.And the severity of lacunar infarction,the severity of subcortical and periventricular white matter lesions,white matter integral and cerebral microbleeds of patients in the two groups were compared.Results The severity of lacunar infarction(χ2=34.076,P=0.001),subcortical white matter lesions(χ2=25.000,P=0.001),periventricular white matter lesions(χ2=22.895,P=0.001)and white matter integral(t=12.370,P=0.001)of patients in the diabetic group were significantly higher than those in the non-diabetic group.No cerebral microbleeds were detected in either group of patients.Conclusion Patients with cerebral small vessel disease and type 2 diabetes mellitus show characteristic multimodal MRI changes.The increase in the number of lacunar infarction lesions and the aggravation of white matter lesions can be used as the characteristic imaging basis for the diagnosis of type 2 diabetes mellitus related cerebral small vessel disease.
2.Mechanism of Colquhounia Root Tablets against diabetic kidney disease via RAGE-ROS-PI3K-AKT-NF-κB-NLRP3 signaling axis.
Ming-Zhu XU ; Zhao-Chen MA ; Zi-Qing XIAO ; Shuang-Rong GAO ; Yi-Xin YANG ; Jia-Yun SHEN ; Chu ZHANG ; Feng HUANG ; Jiang-Rui WANG ; Bei-Lei CAI ; Na LIN ; Yan-Qiong ZHANG
China Journal of Chinese Materia Medica 2025;50(7):1830-1840
This study aimed to explore the therapeutic mechanisms of Colquhounia Root Tablets(CRT) in treating diabetic kidney disease(DKD) by integrating biomolecular network mining with animal model verification. By analyzing clinical transcriptomics data, an interaction network was constructed between candidate targets of CRT and DKD-related genes. Based on the topological eigenvalues of network nodes, 101 core network targets of CRT against DKD were identified. These targets were found to be closely related to multiple pathways associated with type 2 diabetes, immune response, and metabolic reprogramming. Given that immune-inflammatory imbalance driven by metabolic reprogramming is one of the key pathogenic mechanisms of DKD, and that many core network targets of CRT are involved in this pathological process, receptor for advanced glycation end products(RAGE)-reactive oxygen species(ROS)-phosphatidylinositol 3-kinase(PI3K)-protein kinase B(AKT)-nuclear factor-κB(NF-κB)-NOD-like receptor family pyrin domain containing 3(NLRP3) signaling axis was selected as a candidate target for in-depth research. Further, a rat model of DKD induced by a high-sugar, high-fat diet and streptozotocin was established to evaluate the pharmacological effects of CRT and verify the expression of related targets. The experimental results showed that CRT could effectively correct metabolic disturbances in DKD, restore immune-inflammatory balance, and improve renal function and its pathological changes by inhibiting the activation of the RAGE-ROS-PI3K-AKT-NF-κB-NLRP3 signaling axis. In conclusion, this study reveals that CRT alleviates the progression of DKD through dual regulation of metabolic reprogramming and immune-inflammatory responses, providing strong experimental evidence for its clinical application in DKD.
Animals
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Diabetic Nephropathies/metabolism*
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Receptor for Advanced Glycation End Products/genetics*
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NF-kappa B/genetics*
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Signal Transduction/drug effects*
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Rats
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NLR Family, Pyrin Domain-Containing 3 Protein/genetics*
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Proto-Oncogene Proteins c-akt/genetics*
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Drugs, Chinese Herbal/administration & dosage*
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Male
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Phosphatidylinositol 3-Kinases/genetics*
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Reactive Oxygen Species/metabolism*
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Humans
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Plant Roots/chemistry*
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Rats, Sprague-Dawley
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Tablets/administration & dosage*
3.Multimodal MRI features of cerebral small vessel disease combined with type 2 diabetes mellitus
Jing WANG ; Hang PAN ; Yan-ling ZHENG ; Zi-wen LIANG ; Yu-lin WANG ; Qiu-guo OU ; Fan-ying GUAN ; Hai-yan TAO ; Lei SONG ; Rui TANG
Journal of Regional Anatomy and Operative Surgery 2025;34(8):689-692
Objective To analyze the imaging features of cerebral small vessel disease in patients with type 2 diabetes mellitus by multimodal MRI.Methods The clinical data of 160 patients with cerebral small vessel disease admitted to our hospital from January to December 2020 were retrospectively analyzed.According to whether they were complicated with type 2 diabetes mellitus,they were divided into the diabetic group and the non-diabetic group,with 80 cases in each group.Both groups underwent multimodal MRI scans.And the severity of lacunar infarction,the severity of subcortical and periventricular white matter lesions,white matter integral and cerebral microbleeds of patients in the two groups were compared.Results The severity of lacunar infarction(χ2=34.076,P=0.001),subcortical white matter lesions(χ2=25.000,P=0.001),periventricular white matter lesions(χ2=22.895,P=0.001)and white matter integral(t=12.370,P=0.001)of patients in the diabetic group were significantly higher than those in the non-diabetic group.No cerebral microbleeds were detected in either group of patients.Conclusion Patients with cerebral small vessel disease and type 2 diabetes mellitus show characteristic multimodal MRI changes.The increase in the number of lacunar infarction lesions and the aggravation of white matter lesions can be used as the characteristic imaging basis for the diagnosis of type 2 diabetes mellitus related cerebral small vessel disease.
4.Influencing factors in scale-up of extraction process for Yunpi Xiaoshi Prescription
Xin-Rong LIN ; Zi-Wei GAO ; Ya-Chun SHU ; Xia ZHAO ; Lei WU
Chinese Traditional Patent Medicine 2024;46(2):391-396
AIM To investigate the influencing factors in scale-up of extraction process for Yunpi Xiaoshi Prescription.METHODS HPLC was adopted in the content determination of catechin,ferulic acid,taxifolin,isovitexin,narirutin,atractylenolideⅡ,naringin,morin,hesperidin,luteolin,hederagenin,atractylenolideⅠ,naringenin and hesperetin,the fingerprints were established,after which the effects of container volume,optimal fire and feeding quantity on the contents of various constituents were evaluated.RESULTS Fifteen batches of samples demonstrated the similarities of more than 0.995.Fourteen constituents showed good linear relationships within their own ranges(r>0.999 0),whose average recoveries were 96.4%-103.3%with the RSDs of 0.5%-2.7%.The influencing degree of optimal fire was greater than that of container volume and feeding quantity.CONCLUSION The combination of multi-component content determination and fingerprints can provide data basis and theoretical reference for the technology of consistency evaluation in scale-up of extraction process for Yunpi Xiaoshi Prescription.
5.Cinobufotalin promotes ferroptosis of gastric cancer cells by regulating the SUMO modification of HIF1α
Zi-Ying ZHENG ; Yan ZHANG ; Wen CHEN ; Yu-Ting LIN ; Lei YE
Chinese Pharmacological Bulletin 2024;40(7):1342-1349
Aim To investigate the effect of cinobufo-talin(CB)on the small ubiquitin-like modifier(SU-MO)modification of hypoxia inducible factor 1 alpha(HIF1α)on ferroptosis of gastric cancer cells.Meth-ods Human normal gastric mucosal epithelial cells(GES-1)and gastric cancer cells(MGC803)were treated with various concentrations of CB.MTT assay was employed to determine cell viability and calculate the IC50 value of CB in gastric cancer cells.Cell inva-sion was evaluated using Transwell assay.Cancer cells were subjected to treatment with ferroptosis agonists(erastin)or inhibitors(ferrostatin-1)to assess the levels of lipid reactive oxygen species(ROS),malon-dialdehyde(MDA),cell apoptosis,intracellular total iron,and Fe2+in gastric cancer cells.Western blot a-nalysis was conducted to detect the expression of SU-MO1 and HIF1α,while immunoprecipitation(IP)was utilized to investigate the interaction between SUMO1 and HIF1 α.An allograft tumor model was established and treated with CB or erastin to assess the impact of CB on tumor growth and ferroptosis in gastric cancer cells in vivo.Results CB at concentrations below 2μmol·L-1 had no impact on the viability of GES-1 cells.Compared to the control group,CB treatment dose-dependently inhibited the viability and invasion of MGC803 cells.CB treatment increased the levels of lipid reactive oxygen species(ROS),malondialdehyde(MDA),total iron,and Fe2+in gastric cancer cells,and promoted cell apoptosis(all P<0.05),compared to the control group.The combination of CB and eras-tin enhanced ferroptosis,while ferrostatin-1 treatment suppressed CB-induced ferroptosis in gastric cancer cells.Mechanistically,CB inhibited the expression of SUMO1,reduced the SUMOylation of HIF1α,and consequently suppressed its expression.The ferroptosis induced by CB in gastric cancer cells could be reversed by overexpression of SUMO1.In vivo experiments con-firmed that CB inhibited tumor growth and induced fer-roptosis in gastric cancer cells.Conclusion CB in-duces ferroptosis in gastric cancer cells by inhibiting the SUMOylation modification of HIF1α.
6.Association between Mitochondrial DNA Methylation and Hypertension Risk: A Cross-sectional Study in Chinese Northern Population.
Lei ZHAO ; Ya Ning JIA ; Qi Si Jing LIU ; Zi Quan LIU ; Hui Shu LIN ; Xin Ying SHUI ; Li Qiong GUO ; Shi Ke HOU
Biomedical and Environmental Sciences 2023;36(10):972-978
7.Establishment of HPLC fingerprints and determination of eleven constituents for Qiangxin Mixture
Zi-Wei GAO ; Lei WU ; Xin-Rong LIN ; Xiao-Hu CHEN ; Wei-Ya PU
Chinese Traditional Patent Medicine 2023;45(12):3895-3901
AIM To establish the HPLC fingerprints for Qiangxin Mixture,and to determine the contents of quercetin-3-O-β-D glucose 7-O-β-D gentil disglycoside(QGG),sinarin thiocyanate,erucinic acid,macrocetin,calycosin-7-glucoside,plananthine D,calycosin,baicalin,pilonidin,atracolactone Ⅲ and methylophiopogon dihydrogen isoflavone B.METHODS The analysis of methanol extract of this drug was performed on a 40℃thermostatic Agilent Eclipse XDB-C18 column(4.6 mm×250 mm,5 μm),with the mobile phase comprising of acetonitrile-0.01 mol/L phosphoric acid flowing at 1.0 mL/min in a gradient elution manner,and the detection wavelength was set at 230 nm.RESULTS There were twenty common peaks in the fingerprints for fifteen batches of samples with the similarities of more than 0.930.Eleven constituents showed good linear relationships within their own ranges(r≥0.999 1),whose average recoveries were 98.47%-102.85%with the RSDs of 0.76%-1.74%.CONCLUSION This accurate and stable method can be used for the quality control of Qiangxin Mixture.
8. Effect of estradiol regulating sortilin-related receptor A expression on hippocampal spine density and synaptic protein expression via estrogen receptor of mouse
Yi-Zhou ZHANG ; Sha LI ; Shi-Xiong MI ; Hong-Chun ZUO ; Hui-Xian CUI ; Yi-Zhou ZHANG ; Sha LI ; Shi-Xiong MI ; Hong-Chun ZUO ; Hui-Xian CUI ; Yi-Zhou ZHANG ; Sha LI ; Shi-Xiong MI ; Hui-Xian CUI ; Qian-Qian ZHANG ; Han-Lin LI ; Zi-Han LEI ; Dong-Ze ZHANG
Acta Anatomica Sinica 2023;54(3):261-268
Objective To study the effect and mechanism of estradiol (E
9.Effect of nanoparticles of different stiffness combined with menthol/curcumol on mechanical properties of bEnd.3 cells.
Zi-Shuo GUO ; Yi ZHANG ; Kai-Li YANG ; Di-Lei WANG ; Wan-Ling CHEN ; Xiao-Jing WANG ; Lin-Ying ZHONG ; Peng-Yue LI ; Shou-Ying DU
China Journal of Chinese Materia Medica 2023;48(2):390-398
This study aimed to investigate the effects of nanoparticles PLGA-NPs and mesoporous silicon nanoparticles(MSNs) of different stiffness before and after combination with menthol or curcumol on the mechanical properties of bEnd.3 cells. The particle size distributions of PLGA-NPs and MSNs were measured by Malvern particle size analyzer, and the stiffness of the two nanoparticles was quantified by atomic force microscopy(AFM). The bEnd.3 cells were cultured in vitro, and the cell surface morphology, roughness, and Young's modulus were examined to characterize the roughness and stiffness of the cell surface. The changes in the mechanical properties of the cells were observed by AFM, and the structure and expression of cytoskeletal F-actin were observed by a laser-scanning confocal microscope. The results showed that both nanoparticles had good dispersion. The particle size of PLGA-NPs was(98.77±2.04) nm, the PDI was(0.140±0.030), and Young's modulus value was(104.717±8.475) MPa. The particle size of MSNs was(97.47±3.92) nm, the PDI was(0.380±0.016), and Young's modulus value was(306.019±8.822) MPa. The stiffness of PLGA-NPs was significantly lower than that of MSNs. After bEnd.3 cells were treated by PLGA-NPs and MSNs separately, the cells showed fine pores on the cell surface, increased roughness, decreased Young's modulus, blurred and broken F-actin bands, and reduced mean gray value. Compared with PLGA-NPs alone, PLGA-NPs combined with menthol or curcumol could allow deepened and densely distributed surface pores of bEnd.3 cells, increase roughness, reduce Young's modulus, aggravate F-actin band breakage, and diminish mean gray value. Compared with MSNs alone, MSNs combined with menthol could allow deepened and densely distributed surface pores of bEnd.3 cells, increase roughness, reduce Young's modulus, aggravate F-actin band breakage, and diminish mean gray value, while no significant difference was observed in combination with curcumol. Therefore, it is inferred that the aromatic components can increase the intracellular uptake and transport of nanoparticles by altering the biomechanical properties of bEnd.3 cells.
Animals
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Mice
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Menthol/pharmacology*
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Actins/metabolism*
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Endothelial Cells/metabolism*
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Nanoparticles/chemistry*
10.The coronary heart disease of phlegm-stasis cementation syndrome in mini-swine based on platelet proteomics
Ying LI ; Lei LI ; Hong-xu MENG ; Ao-ao WANG ; Zi-yan WANG ; Guo-yuan ZHANG ; Yue SHI ; Yan-lei MA ; Li LIN ; Jian-xun LIU
Acta Pharmaceutica Sinica 2023;58(7):1904-1912
Based on the technology of platelet proteomics, the key regulatory proteins and pathogenesis of coronary heart disease with phlegm and blood stasis syndrome were explored and analyzed. Based on the previous laboratory research, the model of coronary heart disease in mini-swine with phlegm-stasis cementation syndrome was duplicated. The model was judged by the changes in blood lipid and myocardial tissue characteristics. Furthermore, the platelet proteins were studied by quantitative proteomics, and the differentially expressed proteins were screened. The critical regulatory proteins and biological pathways of coronary heart disease with phlegm-stasis cementation syndrome were analyzed by bioinformatics. After ten weeks of modeling, the levels of total cholesterol (TC), low-density lipoprotein cholesterol (LDL-C), very low density lipoprotein (VLDL-C), triglyceride (TG), creatine kinase (CK) and creatine kinase-MB (CK-MB) in the model group were significantly increased, reflecting the pathological changes such as increased blood lipid, abnormal coagulation function and myocardial ischemia in the model group. In addition, compared with the sham group, there were 26 up-regulated proteins and 8 down-regulated proteins in the platelets of the model group. Combined with bioinformatics analysis, it was found that differential proteins mainly involved in glycolysis/gluconeogenesis, pyruvate metabolism, lipid and atherosclerosis, Ras protein signal transduction. Among them, lactate dehydrogenase B (LDHB), alcohol dehydrogenase 5 (ADH5), neuroblastoma ratsarcoma viral oncogene homolog (NRAS) and Kirsten ratsarcoma viral oncogene homolog (KRAS) play a central role when interacting with other proteins and simultaneously participate in multiple action pathways. The results showed that LDHB, ADH5, NRAS, and KRAS may be the marker proteins in CHD with phlegm-stasis cementation syndrome by regulating glycolysis/gluconeogenesis, pyruvate metabolism, lipid and atherosclerosis, Ras protein signal transduction and other biological processes.

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