1.Improvement of myocardial injury by traditional Chinese medicine:mitochondrial calcium homeostasis mediates macrophage autophagy and pyroptosis pathway
Lingyun LIU ; Guixin HE ; Weibin QIN ; Hui SONG ; Liwen ZHANG ; Weizhi TANG ; Feifei YANG ; Ziyi ZHU ; Yangbin OU
Chinese Journal of Tissue Engineering Research 2025;29(6):1276-1284
BACKGROUND:The repair process of myocardial injury involves complex cellular and molecular mechanisms,especially mitochondrial calcium homeostasis,macrophage autophagy and pyroptosis pathways.Traditional Chinese medicine(TCM)has shown significant clinical efficacy in improving myocardial injury,but its mechanism of action needs to be thoroughly investigated. OBJECTIVE:To investigate the role of mitochondrial calcium homeostasis-mediated macrophage autophagy and pyroptosis pathways in myocardial injury,and to summarize the progress of TCM in this field. METHODS:A computerized search was performed for relevant literature from the database inception to March 2024 in the Web of Science,PubMed and CNKI.The search terms were"mitochondrial calcium homeostasis,macrophage autophagy,macrophage pyroptosis,traditional Chinese medicine,myocardial injury,myocardial injury reperfusion"in Chinese and English.Through literature review,we analyzed the relationship between mitochondrial calcium homeostasis and macrophage autophagy and pyroptosis,explored the mechanism of their roles in myocardial injury,and summarized the pathways of multi-targeted,multi-pathway effects of TCM. RESULTS AND CONCLUSION:The maintenance of mitochondrial calcium homeostasis has been found to be closely related to the normal function of cardiomyocytes.Macrophages can participate in the repair process of myocardial injury through autophagy and pyroptosis pathways.Autophagy contributes to cell clearance and regulation of inflammatory response,while pyroptosis affects myocardial repair by releasing inflammatory factors.TCM regulates mitochondrial calcium homeostasis and macrophage function through multiple mechanisms.For example,astragalosid regulates calcium homeostasis by lowering mitochondrial membrane potential and inhibiting cytochrome C,and epimedium glycoside plays a role in reducing β-amyloid deposition.In addition,herbal compounds and single drugs promote myocardial repair by activating or inhibiting specific signaling pathways,such as PI3K/AKT and nuclear factor-κB signaling pathways.Future studies should focus on the interactions between mitochondrial calcium homeostasis,autophagy and pyroptosis pathways,as well as how TCM can exert therapeutic effects through these pathways to provide new strategies and drugs for the treatment of myocardial injury.
2.An excerpt of ESMO clinical practice guideline interim update on the management of biliary tract cancer in 2025
Delong QIN ; Yue TANG ; Zonglong LI ; Jialu CHEN ; Zhaohui TANG ; Zhiwei QUAN
Journal of Clinical Hepatology 2025;41(4):625-627
In January 2025, the European Society for Medical Oncology (ESMO) released the ESMO clinical practice guideline interim update on the management of biliary tract cancer as a supplementary update to Biliary tract cancer: ESMO clinical practice guideline for diagnosis, treatment and follow-up published in November 2022. This interim update mainly revises the latest evidence-based medical recommendations in the key fields of molecular diagnostics and clinical management since the release of the original guidelines, and it is not a comprehensive update of the entire document. This article summarizes and makes an excerpt of the new recommendations from this interim update.
3.Variation Tendency and Prediction of Colorectal Cancer Burden Among Chinese Population from 1990 to 2021
Tongzhou WANG ; Juanfang ZHU ; Jin ZHOU ; Pan ZHANG ; Qin TANG
Cancer Research on Prevention and Treatment 2025;52(4):319-323
Objective To examine the current status and trends of colorectal cancer (CRC) burden among Chinese residents from 1990 to 2021. Methods Data on CRC burden in China, Asia, and the global population from 1990 to 2021 were retrieved from the Global Burden of Disease database for descriptive analysis. An age-period-cohort model was employed to estimate the effects of age, period, and cohort on CRC mortality and to forecast changes in disease burden. Results In 2021, China’s age-standardized mortality rate, prevalence rate, and DALY rate for CRC were higher than global and Asian averages. The estimated annual percentage changes (EAPC) from 1990 to 2021 were −0.49% (95%CI: −0.55% to −0.43%) for mortality, 3.17% (95%CI: 3.03%−3.31%) for prevalence, and −0.62% (95%CI: −0.71% to −0.54%) for DALYs. Areas with high and medium-high sociodemographic indexes (SDIs) showed significant decreases in standardized mortality and DALY rates, but these rates remained higher compared with other regions. CRC mortality increased with age in the Chinese population, more prominently in males than in females. Using the 2002–2006 period as a reference (RR=1), the period effect on CRC mortality risk for women was higher than that for men until 2004, after which it declined considerably. With the 1957 birth cohort as a reference (RR=1), CRC mortality risk generally decreased across subsequent birth cohorts. Predictions indicate that by 2035, the standardized prevalence rate will be 267.21 per 100 000, and the standardized mortality rate will be 12.29 per 100 000. Conclusion From 1990 to 2021, China’s age-standardized CRC mortality and DALY rates have decreased, while the standardized prevalence rate has increased. These findings suggest the government to establish a comprehensive multi-level CRC prevention network.
4.Downregulation of LINC00638 contributes to the pathogenesis of rheumatoid arthritis-associated interstitial lung disease via inhibiting the Nrf2/ARE signaling pathway
Zhuojun LIAO ; Naiwang TANG ; Jiahui CHEN ; Xueying SUN ; Jiamin LU ; Qin WU ; Ronghuan YU ; Ying ZHOU
Chinese Journal of Clinical Medicine 2025;32(3):421-431
Objective To identify long non-coding RNA (lncRNA) associated with rheumatoid arthritis-associated interstitial lung disease (RA-ILD) and investigate their mechanisms. Methods Peripheral blood samples were collected from RA-ILD patients (n=3), RA patients without lung involvement (n=3), and healthy controls (n=3). Next-generation sequencing was performed to screen differentially expressed lncRNA. A human fibrotic lung cell model was established by inducing the MRC-5 cell line with transforming growth factor-β (TGF-β). Following siRNA-mediated knockdown of target genes, changes in inflammatory and oxidative stress-related genes were analyzed via real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR). Western blotting and dual-luciferase reporter (DLR) assays were used to validate protein expression, ubiquitination levels, and nuclear translocation of oxidative stress regulators, and antioxidant response element (ARE) transcriptional activity. Rescue experiments were conducted to confirm the role of target lncRNA in oxidative stress and inflammation in fibrotic lung cells. Results High-throughput sequencing revealed significant downregulation of LINC00638 in RA-ILD patients. Knockdown of LINC00638 markedly reduced transcriptional levels of interleukin (IL)-4, nuclear factor erythroid-2-related factor 2 (Nrf2), heme oxygenase-1 (HO-1), and superoxide dismutase 2 (SOD2), while increasing IL-6, IL-1β, interferon-γ (IFN-γ), and reactive oxygen species (ROS) levels. Furthermore, LINC00638 knockdown decreased Nrf2 protein expression, increased its ubiquitination, reduced nuclear translocation, and suppressed ARE transcriptional activity. In MRC-5 cells, LINC00638 knockdown combined with N-acetylcysteine treatment restored Nrf2 and HO-1 levels while reducing IL-6 expression. Conclusions LINC00638 suppresses inflammatory responses in RA-ILD by activating the Nrf2/ARE antioxidant signaling pathway, suggesting its potential as a therapeutic target for diagnosis and treatment.
5.Ameliorative effect of Xuebijing injection on acute lung injury in sepsis by interfering with cGAS/STING pathway
Xiangying QIN ; Liyuan ZHANG ; Jiahu TANG ; Meng YUE ; Junping KOU ; Yuanyuan ZHANG
Journal of China Pharmaceutical University 2025;56(3):350-357
To investigate the effect of Xuebijing injection (XBJ) on cGAS/STING pathway in alleviating sepsis-induced acute lung injury (ALI), the mouse sepsis-induced ALI model was established by cecal ligation and puncture (CLP), and the cell inflammation model was constructed by LPS stimulating RAW264.7 cells. The effects of XBJ on lung tissue injury and cGAS/STING pathway-related protein expression in septic mice were investigated by HE staining, ELISA, and Western blot. The results showed that XBJ intervention could alleviate lung tissue injury, reduce serum IL-6, TNF-α, IFN-β, IL-1-β levels, and the expression of cGAS, STING, p-TBK1, and p-IRF3 proteins in lung tissue in vivo, and reduce the mRNA level of related inflammatory factors in RAW264.7 cells and the expression of cGAS/STING pathway proteins in vitro. The results showed that XBJ could play a role in the prevention and treatment of sepsis-induced ALI by inhibiting the inflammatory response via inhibition of the activation of cGAS/STING pathway. This study provides a new molecular mechanism for the clinical prevention and treatment of sepsis-induced acute lung injury with XBJ.
6.Clinical features of anti-leucine rich glioma inactivated 1 antibody autoimmune encephalitis
Yongfang LI ; Yi TANG ; Qi QIN
Journal of Apoplexy and Nervous Diseases 2025;42(6):512-516
Objective To investigate the clinical manifestations and prognosis of patients with anti-leucine rich glioma inactivated 1(LGI1)antibody encephalitis. Methods A retrospective analysis was performed for the data of patients with anti-LGI1 antibody encephalitis who were hospitalized in Department of Neurology,Xuanwu Hospital,Capital Medical University,from September 2019 to December 2023,including clinical features,treatment,and prognosis. Results A total of 80 patients were enrolled,including 48 male patients and 32 female patients. Of all 80 patients,51(63.8%)had the initial symptom of epilepsy,13(16.3%)had the initial symptom of faciobrachial dystonic seizures,26(32.5%)had the initial symptom of cognitive impairment,and 12(15%)had the initial symptom of mental and behavioral disorders. As for comorbidities,there were 28 patients(35%)with hyponatremia,22(27.5%)with Hashimoto's thyroiditis,and 5(6.25%)with tumor. All 80 patients tested positive for serum LGI1 antibody,and 69(86.3%)tested positive for LGI1 antibody in cerebrospinal fluid. Among the 80 patients,37(46.25%)had abnormalities on magnetic resonance imaging,and 30 had abnormalities on 18F-FDG PET/CT. There were 50 patients with abnormalities on video electroencephalography. A total of 77 patients received first-line immunotherapy,and after follow-up for 1 year,19.4% of the patients had the sequela of seizure,59.7% of the patients had deterioration of the memory,and 48.6% of the patients had mental and behavioral disorders. Conclusion Epilepsy,cognitive impairment,and mental and behavior disorders are the most common manifestations of anti-LGI1 antibody encephalitis. There is generally a good prognosis after immunotherapy,with the sequelae of cognitive impairment and mental and behavioral disorders.
7.Study on component analysis,fingerprint establishment and anti-inflammatory spectrum-effect relationship of Yao ethnic medicine Pittosporum pauciflorum
Dan QIN ; Peng FU ; Jiajie CAO ; Qingchen TANG ; Jie GAO
China Pharmacy 2025;36(18):2244-2249
OBJECTIVE To analyze chemical components of Yao ethnic medicine Pittosporum pauciflorum, establish its fingerprint and investigate the spectrum-effect relationship of its anti-inflammatory effect. METHODS UHPLC-Q-Orbitrap-MS technology was used to analyze the chemical components of P. pauciflorum (batch S6). The fingerprints for 10 batches of P. pauciflorum from different producing areas in Guangxi Province (batches S1-S10) were established by HPLC, and similarity assessment and chemometric pattern recognition analysis were conducted. RAW264.7 inflammatory cell model was induced by lipopolysaccharide, and the anti-inflammatory activity of P. pauciflorum was investigated. Using inhibition rates of nitric oxide (NO), tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6) and IL-1β as efficacy indicators, grey relational analysis and partial least squares regression analysis were adopted to evaluate the spectrum-effect relationship of the anti-inflammatory effect of P. pauciflorum. RESULTS There were 60 chemical components, including flavonoids, phenolic acids, lipids, etc., identified in P. pauciflorum. The fingerprints for 10 batches of P. pauciflorum showed 14 common peaks,with similarity values ranging from 0.883 to 0.991. Three common peaks were assigned neochlorogenic acid (peak 5), chlorogenic acid (peak 7), and syringaldehyde (peak 10). The classification results of the systematic clustering analysis and the principal component analysis were basically consistent. Batches S1 to S10 of P. pauciflorum significantly reduced the levels of NO, TNF-α, IL-6 (except for batch S5) and IL-1β in the cell supernatant (P<0.05 or P<0.01). Inhibition rates of above inflammatory indexes were 10.26%-39.96%, 14.96%-31.36%, 1.38%-21.27%, 18.54%-28.00%, respectively. The contents of neochlorogenic acid, syringaldehyde, as well as the components corresponding to peaks 1, 3, 9, 12 and 14,exhibited a strong correlation with the anti-inflammatory effects of P. pauciflorum. CONCLUSIONS The present study has analyzed the chemical components of P. pauciflorum and established HPLC fingerprints for 10 batches of P. pauciflorum. Each batch of medicinal herbs demonstrates certain anti- inflammatory activities, among which neochlorogenic acid, syringaldehyde, and the components corresponding to peaks 1, 3, 9, 12 and 14 are likely to be the active anti-inflammatory components.
8.Comparative analysis of characteristics and functions of exosomes from human induced pluripotent stem cell-derived platelets and apheresis platelets
Weihua HUANG ; Yan ZANG ; Aihua QIN ; Ziyang FENG ; Heshan TANG ; Fei GUO ; Chuyan WU ; Qiu SHEN ; Baohua QIAN ; Haihui GU ; Zhanshan CHA
Chinese Journal of Blood Transfusion 2025;38(9):1154-1161
Objective: To compare the biological characteristics of human induced pluripotent stem cell-derived platelet exosomes (hiPSC-Plt-Exos) with those of conventional apheresis platelet exosomes (Plt-Exos), specifically focusing on their differential abilities to enhance the proliferation and migration of human umbilical cord mesenchymal stem cells (hUC-MSCs). Methods: Exosomes were isolated from hiPSC-derived Plt and apheresis Plt concentrate using size exclusion chromatography. These exosomes were then characterized through nanoparticle tracking analysis (NTA), transmission electron microscopy (TEM), and Western blotting. Co-culture experiments into hUC-MSCs were conducted with hiPSC-Plt-Exos and apheresis Plt-Exos, respectively. Their effects on the proliferation and migration of hUC-MSCs were assessed via cell proliferation assays and scratch tests. Results: hiPSC-Plt-Exos and apheresis Plt-Exos exhibited comparable particle sizes, morphological features (such as the characteristic cup-shaped structure), and surface markers (including CD9 and HSP70). Notably, hiPSC-Plt-Exos demonstrated a significantly greater ability to enhance the proliferation and migration of hUC-MSCs compared to apheresis Plt-Exos (P<0.05). These differences provide critical comparative data for their application in various clinical contexts. Conclusion: This study establishes a theoretical foundation for developing precise therapeutic strategies based on hiPSC-Plt-Exos. Furthermore, it underscores the necessity of selecting the appropriate type of exosomes according to the specific disease microenvironment to achieve optimal therapeutic outcomes.
9. Influence of quercetin on aging of bone marrow mesenchymal stem cells induced by microgravity
Yu-Tian YANG ; Ying-Ying XUAN ; Yu-Tian YANG ; Ying-Ying XUAN ; Yu-Hai GAO ; Long-Fei WANG ; Han-Qin TANG ; Zhi-Hui MA ; Liang LI ; Yi WU ; Ke-Ming CHEN ; Yu-Tian YANG ; Ying-Ying XUAN ; Yu-Hai GAO ; Long-Fei WANG ; Han-Qin TANG ; Zhi-Hui MA ; Liang LI ; Yi WU ; Ke-Ming CHEN
Chinese Pharmacological Bulletin 2024;40(1):38-45
Aim To investigate the effect of quercetin on the aging model of bone marrow mesenchymal stem cells established under microgravity. Methods Using 3D gyroscope, a aging model of bone marrow mesenchymal stem cells was constructed, and after receiving quercetin and microgravity treatment, the anti-aging effect of the quercetin was evaluated by detecting related proteins and oxidation indexes. Results Compared to the control group, the expressions of age-related proteins p21, pi6, p53 and RB in the microgravity group significantly increased, while the expressions of cyclin D1 and lamin B1 significantly decreased, with statistical significance (P<0.05). In the microgravity group, mitochondrial membrane potential significantly decreased (P<0.05), ROS accumulation significantly increased (P <0.05), SOD content significantly decreased and MDA content significantly increased (P<0.05). Compared to the microgravity group, the expressions of age-related proteins p21, pi6, p53 and RB in the quercetin group significantly decreased, while the expressions of cyclin D1 and lamin B1 significantly increased, with statistical significance (P<0.05). In the quercetin group, mitochondrial membrane potential significantly increased (P<0.05), ROS accumulation significantly decreased (P<0.05), SOD content significantly increased and MDA content significantly decreased (P<0.05). Conclusions Quercetin can resist oxidation, protect mitochondrial function and normal cell cycle, thus delaying the aging of bone marrow mesenchymal stem cells induced by microgravity.
10.Toluene diisocyanate exposure induces oxidative stress injury in rat lung
Baofeng LIU ; Xudong LI ; Runan QIN ; Huijing TANG ; Qiang ZENG
Journal of Public Health and Preventive Medicine 2024;35(1):34-38
Objective To investigate the effect of subchronic inhalation of toluene diisocyanate (TDI) on oxidative stress damage in rat lung tissue. Methods SPF-grade Sprague-Dawley male rats were randomly divided into 4 groups,the rats were placed in a HOPE-MED 8050A movable poison cabinet in a cage.To observe the ultrastructural and histopathology changes of lung tissue in rats.The levels of reduced glutathione (GSH), glutathione peroxidase (GSH-Px), malondialdehyde (MDA), superoxide dismutase (SOD), and catalase (CAT) in lung tissue were detected. The ultrastructural and histopathological changes were examined. The expression levels of HO-1 mRNA and protein were detected by Real-time PCR and Western Blot, respectively. Results The body mass, lung tissue mass, and lung organ coefficient of rats in each dose group were lower than those in the control group (P<0.05), and the body mass of rats in each group increased with the increase of exposure time (P<0.05); The results of lung histopathological examination showed that after TDI exposure,in the high-dose group, pulmonary alveolar wall hyperemia and edema were observed in the lung tissue of rats, alveolar wall thickening was observed, alveolar septa widening, and a large number of red blood cells were seen in the alveolar cavity. The results of ultrastructural examination of lung tissue showed that after TDI exposure, while in the high-dose group, the number of alveolar cells decreased, with unclear cell boundaries and irregular morphology. The levels of MDA in the lung tissue of rats exposed to TDI at various doses were higher than those in the control group (P<0.05), while the levels of GSH, GSH-Px, SOD, and CAT were lower than those in the control group (P<0.05); There was no significant difference in HO-1 gene and protein levels among rats in each group (P>0.05). Conclusion Subchronic inhalation of TDI can cause changes in the pathology and ultrastructure of rat lung tissue, leading to abnormal levels of metabolic enzymes in lung function, thereby inducing oxidative stress damage to the lungs. However, but HO-1 is involved in oxidative stress damage in the lungs induced by TDI.


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