1.Ras Guanine Nucleotide-Releasing Protein-4 Inhibits Erythropoietin Production in Diabetic Mice with Kidney Disease by Degrading HIF2A
Junmei WANG ; Shuai HUANG ; Li ZHANG ; Yixian HE ; Xian SHAO ; A-Shan-Jiang A-NI-WAN ; Yan KONG ; Xuying MENG ; Pei YU ; Saijun ZHOU
Diabetes & Metabolism Journal 2025;49(3):421-435
Background:
In acute and chronic renal inflammatory diseases, the activation of inflammatory cells is involved in the defect of erythropoietin (EPO) production. Ras guanine nucleotide-releasing protein-4 (RasGRP4) promotes renal inflammatory injury in type 2 diabetes mellitus (T2DM). Our study aimed to investigate the role and mechanism of RasGRP4 in the production of renal EPO in diabetes.
Methods:
The degree of tissue injury was observed by pathological staining. Inflammatory cell infiltration was analyzed by immunohistochemical staining. Serum EPO levels were detected by enzyme-linked immunosorbent assay, and EPO production and renal interstitial fibrosis were analyzed by immunofluorescence. Quantitative real-time polymerase chain reaction and Western blotting were used to detect the expression of key inflammatory factors and the activation of signaling pathways. In vitro, the interaction between peripheral blood mononuclear cells (PBMCs) and C3H10T1/2 cells was investigated via cell coculture experiments.
Results:
RasGRP4 decreased the expression of hypoxia-inducible factor 2-alpha (HIF2A) via the ubiquitination–proteasome degradation pathway and promoted myofibroblastic transformation by activating critical inflammatory pathways, consequently reducing the production of EPO in T2DM mice.
Conclusion
RasGRP4 participates in the production of renal EPO in diabetic mice by affecting the secretion of proinflammatory cytokines in PBMCs, degrading HIF2A, and promoting the myofibroblastic transformation of C3H10T1/2 cells.
2.Recurrent diabetic foot ulcer: a comprehensive analysis of epidemiological features and pathophysiological mechanisms
Xuejun NI ; Xiaofen WAN ; Lu CHEN ; Biao WANG ; Xiuying SHAN
Chinese Journal of Plastic Surgery 2025;41(5):515-523
Diabetic foot ulcer (DFU) have emerged as a serious global health issue due to its high rates of occurrence, disability, and mortality. DFU exhibit an exceptionally high recurrence rate, driven by a combination of behavioral and biological factors, leading to the recognition of fully epithelialized ulcers as being in "remission" rather than cured. However, the pathogenic factors underlying recurrent DFU (RDFU) remain poorly understood. This review examines the epidemiological characteristics and pathophysiological mechanisms of RDFU. Key mechanisms include neuropathy, angiopathy, epigenetic modifications, and metabolic memory. Research demonstrates that RDFU development results from the interplay of multiple factors: hyperglycemia-induced metabolic abnormalities, chronic inflammatory responses, vascular and neurological damage, as well as dysregulated epigenetic control. These factors interact synergistically, creating a vicious cycle that increases the risk of recurrence and delays recovery. By synthesizing current knowledge, this review aims to provide a foundation for future research and clinical management of RDFU. The insights presented support the development of personalized treatment strategies and effective preventive measures to reduce recurrence and improve patient outcomes.
3.Ras Guanine Nucleotide-Releasing Protein-4 Inhibits Erythropoietin Production in Diabetic Mice with Kidney Disease by Degrading HIF2A
Junmei WANG ; Shuai HUANG ; Li ZHANG ; Yixian HE ; Xian SHAO ; A-Shan-Jiang A-NI-WAN ; Yan KONG ; Xuying MENG ; Pei YU ; Saijun ZHOU
Diabetes & Metabolism Journal 2025;49(3):421-435
Background:
In acute and chronic renal inflammatory diseases, the activation of inflammatory cells is involved in the defect of erythropoietin (EPO) production. Ras guanine nucleotide-releasing protein-4 (RasGRP4) promotes renal inflammatory injury in type 2 diabetes mellitus (T2DM). Our study aimed to investigate the role and mechanism of RasGRP4 in the production of renal EPO in diabetes.
Methods:
The degree of tissue injury was observed by pathological staining. Inflammatory cell infiltration was analyzed by immunohistochemical staining. Serum EPO levels were detected by enzyme-linked immunosorbent assay, and EPO production and renal interstitial fibrosis were analyzed by immunofluorescence. Quantitative real-time polymerase chain reaction and Western blotting were used to detect the expression of key inflammatory factors and the activation of signaling pathways. In vitro, the interaction between peripheral blood mononuclear cells (PBMCs) and C3H10T1/2 cells was investigated via cell coculture experiments.
Results:
RasGRP4 decreased the expression of hypoxia-inducible factor 2-alpha (HIF2A) via the ubiquitination–proteasome degradation pathway and promoted myofibroblastic transformation by activating critical inflammatory pathways, consequently reducing the production of EPO in T2DM mice.
Conclusion
RasGRP4 participates in the production of renal EPO in diabetic mice by affecting the secretion of proinflammatory cytokines in PBMCs, degrading HIF2A, and promoting the myofibroblastic transformation of C3H10T1/2 cells.
4.Ras Guanine Nucleotide-Releasing Protein-4 Inhibits Erythropoietin Production in Diabetic Mice with Kidney Disease by Degrading HIF2A
Junmei WANG ; Shuai HUANG ; Li ZHANG ; Yixian HE ; Xian SHAO ; A-Shan-Jiang A-NI-WAN ; Yan KONG ; Xuying MENG ; Pei YU ; Saijun ZHOU
Diabetes & Metabolism Journal 2025;49(3):421-435
Background:
In acute and chronic renal inflammatory diseases, the activation of inflammatory cells is involved in the defect of erythropoietin (EPO) production. Ras guanine nucleotide-releasing protein-4 (RasGRP4) promotes renal inflammatory injury in type 2 diabetes mellitus (T2DM). Our study aimed to investigate the role and mechanism of RasGRP4 in the production of renal EPO in diabetes.
Methods:
The degree of tissue injury was observed by pathological staining. Inflammatory cell infiltration was analyzed by immunohistochemical staining. Serum EPO levels were detected by enzyme-linked immunosorbent assay, and EPO production and renal interstitial fibrosis were analyzed by immunofluorescence. Quantitative real-time polymerase chain reaction and Western blotting were used to detect the expression of key inflammatory factors and the activation of signaling pathways. In vitro, the interaction between peripheral blood mononuclear cells (PBMCs) and C3H10T1/2 cells was investigated via cell coculture experiments.
Results:
RasGRP4 decreased the expression of hypoxia-inducible factor 2-alpha (HIF2A) via the ubiquitination–proteasome degradation pathway and promoted myofibroblastic transformation by activating critical inflammatory pathways, consequently reducing the production of EPO in T2DM mice.
Conclusion
RasGRP4 participates in the production of renal EPO in diabetic mice by affecting the secretion of proinflammatory cytokines in PBMCs, degrading HIF2A, and promoting the myofibroblastic transformation of C3H10T1/2 cells.
5.Ras Guanine Nucleotide-Releasing Protein-4 Inhibits Erythropoietin Production in Diabetic Mice with Kidney Disease by Degrading HIF2A
Junmei WANG ; Shuai HUANG ; Li ZHANG ; Yixian HE ; Xian SHAO ; A-Shan-Jiang A-NI-WAN ; Yan KONG ; Xuying MENG ; Pei YU ; Saijun ZHOU
Diabetes & Metabolism Journal 2025;49(3):421-435
Background:
In acute and chronic renal inflammatory diseases, the activation of inflammatory cells is involved in the defect of erythropoietin (EPO) production. Ras guanine nucleotide-releasing protein-4 (RasGRP4) promotes renal inflammatory injury in type 2 diabetes mellitus (T2DM). Our study aimed to investigate the role and mechanism of RasGRP4 in the production of renal EPO in diabetes.
Methods:
The degree of tissue injury was observed by pathological staining. Inflammatory cell infiltration was analyzed by immunohistochemical staining. Serum EPO levels were detected by enzyme-linked immunosorbent assay, and EPO production and renal interstitial fibrosis were analyzed by immunofluorescence. Quantitative real-time polymerase chain reaction and Western blotting were used to detect the expression of key inflammatory factors and the activation of signaling pathways. In vitro, the interaction between peripheral blood mononuclear cells (PBMCs) and C3H10T1/2 cells was investigated via cell coculture experiments.
Results:
RasGRP4 decreased the expression of hypoxia-inducible factor 2-alpha (HIF2A) via the ubiquitination–proteasome degradation pathway and promoted myofibroblastic transformation by activating critical inflammatory pathways, consequently reducing the production of EPO in T2DM mice.
Conclusion
RasGRP4 participates in the production of renal EPO in diabetic mice by affecting the secretion of proinflammatory cytokines in PBMCs, degrading HIF2A, and promoting the myofibroblastic transformation of C3H10T1/2 cells.
6.Exploring the role and mechanism of Saussurea involucrata injection in alleviating rheumatoid arthritis by inhibiting M1 macrophage polarization based on the Toll-like receptor 4/nuclear factor-kappaBp65 pathway
Shan CONG ; SaiMire Maimaiti TUERSUN ; Xue ZHAO ; Jiao SUN ; Rong WAN ; Peng JI
Chinese Journal of Rheumatology 2025;29(10):863-870
Objective:To investigate the efficacy of Saussurea involucrata injection (SII) in alleviating rheumatoid arthritis (RA) and to explore the mechanism of action of SII in alleviating RA through the Toll-like receptor 4 (TLR4)/nuclear factor-kappaBp65 (NF-κBp65) pathway-mediated M1 macrophage polarization.Methods:In vivo experiments were conducted using a collagen-induced arthritis (CIA) rat model. After successful modeling, the CIA rats were randomly assigned into five groups ( n=10 per group): CIA control group, MTX group, low-dose SII (L-SII) group, medium-dose SII (M-SII) group, and high-dose SII (H-SII) group. The efficacy of SII in alleviating RA was evaluated using arthritis index scores, histopathology, and ELISA to measure serum levels of nitric oxide (NO), interleukin 1β (IL-1β), IL-6, and tumor necrosis factor α (TNF-α). Subsequently, Western blot analysis was used to detect the expression of inducible nitric oxide synthase (iNOS) and CD86 proteins in synovial tissue. In vitro experiments involved first isolating and inducing rat bone marrow-derived macrophages (BMDMs). Then, BMDMs were polarized toward the M1 phenotype using lipopolysaccharide (LPS) combined with interferon-γ (IFN-γ). Concurrently, cells were treated with SII and the TLR4 inhibitor TAK242. Subsequently, ELISA was used to detect NO, IL-1β, TNF-α levels in the cell culture supernatant via ELISA. RT-qPCR was used to detect the expression of IL-1b, IL-6, and TNF-α genes in each group of cells. Western blot analysis was performed to detect the expression of iNOS, CD86, TLR4, myeloid differentiation primary response 88 (MyD88), and p-NF-κBp65/NF-κBp65 proteins in the cells. Data analysis between multiple groups was performed using one-way analysis of variance, and between pairs using LSD- t-tests. Results:In vivo experimental results showed that compared with the CIA group(7.90 ± 0.70), MTX and SII both improved the pathological symptoms of rats and reduced the ankle joint pathological score [MTX (4.40 ± 0.92), L-SII (7.00 ± 0.89), M-SII (5.10 ± 1.30), H-SII (4.90 ± 0.94), t=33.86, P<0.001; t=9.10, P<0.001; t=2.38, P=0.029; t=5.69, P<0.001; t=7.66, P<0.001], while downregulating serum levels of NO, IL-1β, IL-6, and TNF-α levels in serum, as well as iNOS [ t=30.01, P<0.001; t=6.17, P=0.003; t=10.86, P<0.001; t=28.95, P<0.001; t=19.03, P<0.001] and CD86 [ t=65.61, P<0.001; t=8.76, P<0.001; t=13.18, P<0.001; t=13.22, P<0.001; t=18.91, P<0.001] expression. In vitro experimental results showed that compared with BMDMs treated with LPS and IFN-γ, SII and TAK242 treatment reduced the levels of NO, IL-1β, IL-6, and TNF-α in the supernatant and decreased the expression of IL-1b, IL-6, and TNF-α genes. Additionally, SII and TAK242 treatment downregulated the expression of iNOS and CD86 proteins in cells, and simultaneously downregulated TLR4, MYD88, and p-NF-κBp65/NF-κBp65 expression ( t=35.84, P<0.001; t=15.69, P<0.001; t=21.99, P<0.001; t=23.64, P<0.001; t=22.50, P<0.001). Additionally, compared with the TAK242 group alone, TAK242 + H-SII showed no significant differences in the modulation of M1 macrophage polarization and TLR4/NF-κBp65 pathway-related indicators. Conclusion:SII exerts anti-inflammatory and anti-RA effects by inhibiting TLR4/NF-κBp65-mediated M1 macrophage polarization.
7.Guideline for Adult Weight Management in China
Weiqing WANG ; Qin WAN ; Jianhua MA ; Guang WANG ; Yufan WANG ; Guixia WANG ; Yongquan SHI ; Tingjun YE ; Xiaoguang SHI ; Jian KUANG ; Bo FENG ; Xiuyan FENG ; Guang NING ; Yiming MU ; Hongyu KUANG ; Xiaoping XING ; Chunli PIAO ; Xingbo CHENG ; Zhifeng CHENG ; Yufang BI ; Yan BI ; Wenshan LYU ; Dalong ZHU ; Cuiyan ZHU ; Wei ZHU ; Fei HUA ; Fei XIANG ; Shuang YAN ; Zilin SUN ; Yadong SUN ; Liqin SUN ; Luying SUN ; Li YAN ; Yanbing LI ; Hong LI ; Shu LI ; Ling LI ; Yiming LI ; Chenzhong LI ; Hua YANG ; Jinkui YANG ; Ling YANG ; Ying YANG ; Tao YANG ; Xiao YANG ; Xinhua XIAO ; Dan WU ; Jinsong KUANG ; Lanjie HE ; Wei GU ; Jie SHEN ; Yongfeng SONG ; Qiao ZHANG ; Hong ZHANG ; Yuwei ZHANG ; Junqing ZHANG ; Xianfeng ZHANG ; Miao ZHANG ; Yifei ZHANG ; Yingli LU ; Hong CHEN ; Li CHEN ; Bing CHEN ; Shihong CHEN ; Guiyan CHEN ; Haibing CHEN ; Lei CHEN ; Yanyan CHEN ; Genben CHEN ; Yikun ZHOU ; Xianghai ZHOU ; Qiang ZHOU ; Jiaqiang ZHOU ; Hongting ZHENG ; Zhongyan SHAN ; Jiajun ZHAO ; Dong ZHAO ; Ji HU ; Jiang HU ; Xinguo HOU ; Bimin SHI ; Tianpei HONG ; Mingxia YUAN ; Weibo XIA ; Xuejiang GU ; Yong XU ; Shuguang PANG ; Tianshu GAO ; Zuhua GAO ; Xiaohui GUO ; Hongyi CAO ; Mingfeng CAO ; Xiaopei CAO ; Jing MA ; Bin LU ; Zhen LIANG ; Jun LIANG ; Min LONG ; Yongde PENG ; Jin LU ; Hongyun LU ; Yan LU ; Chunping ZENG ; Binhong WEN ; Xueyong LOU ; Qingbo GUAN ; Lin LIAO ; Xin LIAO ; Ping XIONG ; Yaoming XUE
Chinese Journal of Endocrinology and Metabolism 2025;41(11):891-907
Body weight abnormalities, including overweight, obesity, and underweight, have become a dual public health challenge in Chinese adults: overweight and obesity lead to a variety of chronic complications, while underweight increases the risks of malnutrition, sarcopenia, and organ dysfunction. To systematically address these issues, multidisciplinary experts in endocrinology, sports science, nutrition, and psychiatry from various regions have held multiple weight management seminars. Based on the latest epidemiological data and clinical evidence, they expanded the guideline to include assessment and intervention strategies for underweight, in addition to the core content of obesity management. This guideline outlines the etiological mechanisms, evaluation methods, and multidimensional management strategies for overweight and obesity, covering key areas such as diagnosis and assessment, medical nutrition therapy, exercise prescription, pharmacological intervention, and psychological support. It is intended to provide a scientific and standardized approach to weight management across the adult population, aiming to curb the rising prevalence of obesity, mitigate complications associated with abnormal body weight, and improve nutritional status and overall quality of life.
8.Relationship between Peripheral Blood MiR-21 and Very Early Relapse after Chemotherapy in Children with Acute Lymphoblas-tic Leukemia
Le CHEN ; Yan WANG ; Cheng-Jiao HUANG ; Wan-Long YIN ; Shan GAO
Journal of Experimental Hematology 2025;33(6):1592-1598
Objective:To analyze the relationship between microRNA-21(miR-21)expression and the risk of very early relapse post-induction chemotherapy in children with acute lymphoblastic leukemia(ALL).Methods:A total of 110 newly diagnosed children with ALL admitted to Huanggang Central Hospital from March 2020 to September 2022 were included.All patients received induction chemotherapy according to the CCLG-2008 protocol.The patients who achieved complete response(CR)after induction chemotherapy were followed up for 18 months,with very early relapse as the endpoint event.Then the patients were divided into a relapse group and a non-relapse group.Cox regression was used to analyze the influencing factors of very early relapse after induction chemotherapy in children with ALL.ROC curve and decision curve were used to evaluate the predictive value of peripheral blood miR-21 for very early relapse after induction chemotherapy in children with ALL.Restricted cubic splines were used to analyze the dose-response relationship between peripheral blood miR-21 and very early relapse after induction chemotherapy in children with ALL.Results:A total of 102 children with ALL achieved CR after induction chemotherapy,among whom 24 cases(23.53%)experienced very early relapse,with a median relapse time of 14 months.The proportions of patients with high-risk stratification at initial diagnosis,extramedullary infiltration,and minimal residual disease(MRD)positivity were significantly higher in the relapse group than those in the non-relapse group;The absolute lymphocyte count(ALC)in peripheral blood was significantly lower,while the expression levels of miR-21 and lactate dehydrogenase(LDH)were significantly higher in the relapse group compared with the non-relapse group(all P<0.05).Cox regression analysis showed that very early relapse after induction chemotherapy in children with ALL was associated with medium risk and high risk at initial diagnosis,extramedullary infiltration,decreased ALC in peripheral blood,MRD positivity,as well as high expression levels of miR-21 and LDH(all P<0.05).ROC curve analysis indicated that the area under the curve(AUC)of peripheral blood miR-21 for predicting very early relapse after induction chemotherapy in children with ALL was 0.800,with an optimal cutoff value of 4.830.Restricted cubic spline analysis revealed that there was a non-linear dose-response relationship between peripheral blood miR-21 and the risk of very early relapse after induction chemotherapy in children with ALL.When the expression level of peripheral blood miR-21 exceeded 4.830,the risk of very early relapse increased with the elevation of miR-21 expression.Decision curve analysis demonstrated that combining peripheral blood miR-21 with other risk factors enhanced the predictive performance for the risk of very early relapse after induction chemotherapy in children with ALL.Conclusion:Very early relapse after induction chemotherapy in children with ALL is associated with elevated expression of miR-21 in peripheral blood,and high expression of miR-21 may increase the risk of very early relapse.Detecting miR-21 before induction chemotherapy has predictive significance for very early relapse in children with ALL,and combining it with other risk factors can improve the predictive efficacy.
9.Isoorientin inhibits development of oral squamous cell carcinoma through cGAS-STING signaling pathway mediated immune response
Bing WAN ; Shan ZHANG ; Wenchao YANG ; Xu YANG ; Xinbo WANG ; Yuan LIANG
Chinese Journal of Immunology 2025;41(4):828-833
Objective:To investigate the effect of Isoorientin(Iso)on development of oral squamous cell carcinoma(OSCC)and the regulation on immune response mediated by cGAS-STING signaling pathway.Methods:CAL 27 cells were divided into control group,low,medium and high concentration Iso groups and high concentration Iso+cGAS inhibitor group(high concentration Iso+RU.521 group).Proliferation activity of CAL 27 cells was detected by MTT;TUNEL method was applied to detect apoptosis of CAL 27 cells;Transwell chamber test was applied to detect migration and invasion of CAL 27 cells;Western blot was applied to detect expressions of cGAS-STING pathway related proteins in CAL 27 cells;the tumor transplantation model of mice was prepared,and the tumor inhibi-tion rate was calculated.At the same time,peripheral blood was taken to detect the differentiation of T lymphocyte subsets in peripheral blood of mice in each group by flow cytometry.Results:Compared with control group,proliferation activity,numbers of migration and invasive cells in Iso treated groups were decreased,apoptosis rate,expressions of cGAS,STING protein,and phosphorylation expres-sions of TBK1,IRF3,tumor inhibition rate of mice,and percentages of CD4+T,CD8+T cells in peripheral blood were increased(P<0.05);further use of cGAS inhibitors reversed the inhibitory effect of Iso on development of OSCC and the promotion on cGAS-STING signaling pathway(P<0.05).Conclusion:Iso can inhibit the development of OSCC by activating the immune response mediated by cGAS-STING signaling pathway.
10.Hesperidin Suppressed Colorectal Cancer through Inhibition of Glycolysis.
Ke-Xiang SUN ; Wei-Shan TAN ; Hao-Yue WANG ; Jia-Min GAO ; Shu-Yun WANG ; Man-Li XIE ; Wan-Li DENG
Chinese journal of integrative medicine 2025;31(6):529-540
OBJECTIVE:
To explore the role of the natural compound hesperidin in glycolysis, the key ratelimiting enzyme, in colorectal cancer (CRC) cell lines.
METHODS:
In vitro, HCT116 and SW620 were treated with different doses of hesperidin (0-500 µmol/L), cell counting kit-8 and colone formation assays were utilized to detected inhibition effect of hesperidin on CRC cell lines. Transwell and wound healing assays were performed to detect the ability of hesperidin (0, 25, 50 and 75 µmol/L) to migrate CRC cells. To confirm the apoptotic-inducing effect of hesperidin, apoptosis and cycle assays were employed. Western blot, glucose uptake, and lactate production determination measurements were applied to determine inhibitory effects of hesperidin (0, 25 and 50 µmol/L) on glycolysis. In vivo, according to the random number table method, nude mice with successful tumor loading were randomly divided into vehicle, low-dose hesperidin (20 mg/kg) and high-dose hesperidin (60 mg/kg) groups, with 6 mice in each group. The body weights and tumor volumes of mice were recorded during 4-week treatment. The expression of key glycolysis rate-limiting enzymes was determined using Western blot, and glucose uptake and lactate production were assessed. Finally, protein interactions were probed with DirectDIA Quantitative Proteomics, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses.
RESULTS:
Hesperidin could inhibit CRC cell line growth (P<0.05 or P<0.01). Moreover, hesperidin presented an inhibitory effect on the migrating abilities of CRC cells. Hesperidin also promoted apoptosis and cell cycle alterations (P<0.05). The immunoblotting results manifested that hesperidin decreased the levels of hexokinase 2, glucose transporter protein 1 (GLUT1), GLUT3, L-lactate dehydrogenase A, 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 2 (PFKFB2), PFKFB3, and pyruvate kinase isozymes M2 (P<0.01). It remarkably suppressed tumor xenograft growth in nude mice. GO and KEGG analyses showed that hesperidin treatment altered metabolic function.
CONCLUSION
Hesperidin inhibits glycolysis and is a potential therapeutic choice for CRC treatment.
Hesperidin/therapeutic use*
;
Colorectal Neoplasms/metabolism*
;
Glycolysis/drug effects*
;
Animals
;
Humans
;
Apoptosis/drug effects*
;
Mice, Nude
;
Cell Movement/drug effects*
;
Cell Line, Tumor
;
Cell Proliferation/drug effects*
;
Glucose/metabolism*
;
Cell Cycle/drug effects*
;
Mice, Inbred BALB C
;
Mice
;
HCT116 Cells
;
Lactic Acid

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