1.Research Tackling Paradigm and Technological Layout Strategies Based on Erectile Dysfunction, A Clinical Dominant Disease of Traditional Chinese Medicine
Qi ZHAO ; Yun CHEN ; Baoxing LIU ; Xuejun SHANG ; Fei SUN ; Xiaozhi ZHAO ; Zhigang WU ; Chao SUN ; Peihai ZHANG ; Wanjun CHENG ; Xing ZHOU ; Zhan QIN ; Yufeng PAN ; Weiwei TAO ; Jianhuai CHEN ; Mei MO ; Xiaoxiao ZHANG ; Xing ZHANG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):291-299
To thoroughly implement the strategic deployment outlined in the Opinions of the Central Committee of the Communist Party of China and the State Council on Promoting the Inheritance and Innovative Development of Traditional Chinese Medicine regarding research on dominant diseases of traditional Chinese medicine and to uphold the development philosophy of equal emphasis on traditional Chinese medicine and western medicine,the China Association of Chinese Medicine has fully played a leading academic role by systematically organizing and conducting a series of academic youth salons on clinical dominant diseases of traditional Chinese medicine. On September 13,2024,the 36th Youth Salon on Clinical Dominant Diseases was successfully held in Nanjing,focusing on the advantages of traditional Chinese medicine and the integrative traditional Chinese medicine and western medicine in the diagnosis and treatment of erectile dysfunction (ED). The conference brought together leading experts from traditional Chinese medicine,western medicine,and interdisciplinary fields,facilitating in-depth multidisciplinary discussions that led to key consensus on optimizing traditional Chinese medicine treatment protocols for ED,researching and developing new drugs of traditional Chinese medicine,and advancing interdisciplinary development in traditional Chinese medicine. This salon systematically sorted out the clinical strengths and distinctive features of traditional Chinese medicine in the diagnosis and treatment of ED. Based on current research foundations and clinical needs,it identified key directions for future scientific layout and scientific research tackling: (1) Standardization of syndrome differentiation system of traditional Chinese medicine for ED. (2) Optimization and standardization of intervention methods of integrated traditional Chinese medicine and western medicine. (3) High-quality clinical research guided by evidence-based medicine. (4) In-depth analysis of the pharmacological mechanisms of traditional Chinese medicine in the treatment of ED. (5) Clinical translation and application promotion of new drugs of traditional Chinese medicine. (6) Interdisciplinary integration and innovation in traditional Chinese medicine. For each research direction,key focus areas,expected objectives,and clinical value were further refined,along with the establishment of a scientifically sound priority funding level evaluation system. Therefore,building on the series of salons on the ED-focused dominant diseases of traditional Chinese medicine,this paper provides standardized guidance for clinical practice of traditional Chinese medicine in ED management,effectively contributing to the high-quality development of traditional Chinese medicine. It serves as a valuable reference for national scientific and technological strategic layout, research and development decision-making in new drugs of traditional Chinese medicine,research topic planning,and clinical guideline formulation.
2.Mechanistic Interpretation of Zheng’s San Qi San Powder in Treating Skeletal Muscle Injury via Bioinformatics Prediction, Chemical Analysis and Experimental Verification
Ding-Rui WANG ; Yun-Xin LIU ; Jun-Jie XU ; Liu YANG ; Jia-Hao LÜ ; Cheng-Yuan XING ; Lei LÜ ; Bei-Bei QIE
Progress in Biochemistry and Biophysics 2026;53(4):1028-1047
ObjectiveZheng’s San Qi San (ZSQS) power, a classic traditional Chinese medicine (TCM) formula, is used for treating soft tissue injuries involving muscles, tendons, and ligaments. However, its underlying therapeutic mechanisms remain unclear. This study aimed to screen and identify pharmaceutically active ingredients and their candidate biomolecule targets, and further elucidate the molecular mechanism of ZSQS in the treatment of skeletal muscle injury. MethodsNetwork pharmacology was employed to construct “ZSQS-component-target”, “protein-protein interaction (PPI)” and “active ingredient-core protein-pathway” networks to predict the key active ingredients and potential core targets of ZSQS for skeletal muscle injury. The predicted results were then validated via microarray data from the GEO database. Molecular docking was then performed to assess the binding ability between the screened active ingredients of ZSQS and the candidate core targets. Moreover, liquid chromatography-mass spectrometry (LC-MS) was used for qualitative and quantitative analysis to verify the active components of the drug and ZSQS serum. Finally, an animal model of eccentric exercise-induced skeletal muscle injury and a myotube cell model of oxidative stress-induced injury were established to validate the effects of ZSQS and its interventional effects on the biological functions of critical targets, thereby demonstrating the potential therapeutic mechanism of ZSQS. ResultsAmong the 111 active components identified in ZSQS and their corresponding 204 targets related to the skeletal muscle injury repair process, 14 core targets (including AKT1) and 4 core active components (quercetin, luteolin, kaempferol, and β‑sitosterol) were screened out, while the corresponding metabolites of quercetin, luteolin and kaempferol were detected in the ZSQS serum. Among these targets, 5 candidate genes (IL-6, CASP3, HIF1A, STAT3, and JUN) overlapped with the differential expression screening results with GEO data, and IL-6 was confirmed to be enriched in the PI3K/AKT pathway. Combined with the prediction results of the AKT expression levels, these findings suggest that the phosphorylation level of AKT1 plays a core role in the therapeutic mechanism of ZSQS. Molecular docking analysis further revealed that the PH domain of AKT1 had high binding energy with all 4 core active components, as verified by LC-MS. Finally, animal model studies have shown the promoting effect of ZSQS administration on skeletal muscle injury repair and its possible antioxidant damage mechanism. Cell model studies further demonstrated that ZSQS-containing serum, core active ingredient combination therapy, and quercetin monomer could increase the phosphorylation level of AKT, promote the nuclear translocation of Nrf2, upregulate the expression of downstream antioxidant enzymes (SOD, GPx, and GR), and inhibit the expression of inflammatory factors (IL-6 and TNF-α), thereby alleviating oxidative stress and the inflammatory response. ConclusionZSQS alleviates skeletal muscle injury mainly by activating the AKT/Nrf2 signaling pathway, enhancing cellular antioxidant and anti-inflammatory capabilities. The results of this study provide a scientific basis for the clinical application and modernized development of ZSQS.
3.Mechanism of transcription factor ZEB1 in the proliferation, migration, and invasion of lung adenocarcinoma cells
Yun ZHAO ; Beibei MA ; Huaxue XING ; Shaofeng HUANG ; Zhongwei ZHANG ; Bo LING
Acta Universitatis Medicinalis Anhui 2026;61(3):470-479
ObjectiveTo investigate the effects of zinc finger E-box binding homeobox 1 (ZEB1) on the proliferation, migration, and invasion of lung adenocarcinoma H322 cells, as well as its underlying molecular mechanisms. MethodsThe gene expression characteristics of the transcription factor ZEB1 in lung adenocarcinoma were analyzed using data from the GEO and TCGA public databases. RT-qPCR and Western blot were employed to measure mRNA and protein expression levels of ZEB1 in lung adenocarcinoma cell lines (H322, A549, 95-D) and normal human bronchial epithelial cells (BEAS-2B). Lentiviral transduction was utilized to establish stable ZEB1-overexpressing (Oe-ZEB1) and vector control (Oe-NC) H322 cell lines. Cell proliferation was assessed using CCK-8, colony formation, and EdU assays, while apoptosis was evaluated by Hoechst33258/PI double staining. Wound healing and Transwell assays were performed to examine cell migration and invasion capabilities. Cell cycle distribution was determined by flow cytometry, and Western blot was used to analyze protein expression changes in relevant signaling pathways. ResultsThe findings from GEO and TCGA indicated that ZEB1 expression in lung adenocarcinoma varied with tumor malignancy grade. RT-qPCR and Western blot analyses revealed significantly higher ZEB1 expression in lung adenocarcinoma cell lines compared to BEAS-2B cells (P0.05). Results from the CCK-8, colony formation, EdU, wound healing, and Transwell assays demonstrated that, compared with the un-transfected control (Control) group, Oe-ZEB1 H322 cells exhibited enhanced proliferation, migration, and invasion capabilities (P0.05). Hoechst33258/PI double staining and flow cytometry analyses showed that, relative to the Control group, apoptosis was reduced in Oe-ZEB1 H322 cells (P0.05). Additionally, a decreased proportion of cells in the G1 phase and an increased proportion in the S phase were observed in Oe-ZEB1 cells, indicating accelerated cell cycle progression. Western blot analysis further revealed that, compared with the Control group, Oe-ZEB1 H322 cells exhibited upregulated expression of N-cadherin, mutant p53 (mutp53), and Cyclin D1 (P0.05), while expression levels of E-cadherin, murine double minute 2 (MDM2), and p21 were downregulated (P0.05). ConclusionOverexpression of ZEB1 promotes the proliferation, migration, and invasion of lung adenocarcinoma H322 cells and may facilitate cell cycle progression by modulating the MDM2/mutp53/p21 signaling pathway, thereby promoting the transition of cells from the G0/G1 phase to the S phase.
4.Vitamin B12 enhances ZO-1 expression in HDM-treated human airway epithelial cells by down-regulating autophagy
Yuejiao LI ; Nan LAN ; Xing WANG ; Hongmei TANG ; Zhibin WANG ; Yun ZHANG ; Xiefang YUAN ; Xiaoyun WANG
The Journal of Practical Medicine 2025;41(21):3345-3351
Objective To investigate the effect of vitamin B12(VB12)on the expression of zonula occludens-1(ZO-1)in house dust mite(HDM)-treated human airway epithelial cell line(Beas-2b)and its underlying mechanism.Methods Beas-2b cells were cultured in DMEM high-glucose medium containing 10%fetal bovine serum.The cells were divided into four groups:control,VB12,HDM,and VB12+HDM.Beas-2b cells were trans-fected with lentiviruses carrying NC-siRNA,ATG5-siRNA,BECN1-siRNA,and mCherry-EGFP-LC3.After 12 hours of transfection(MOI=20),the medium was replaced with fresh medium,and stable transfected cell lines were selected using puromycin(1 μg/mL).Cells were stimulated with VB12(20 μg/mL)and HDM(50 μg/mL)for 24 hours.The protein levels of ZO-1,autophagy-related protein 5(ATG5),BECN1 and microtubule-associated protein light chain 3(LC3)were detected by immunofluorescence and Western blot.Autophagy in human airway epithelial cells was observed using confocal microscopy.Results Compared with the control group,the expression of ZO-1 in the HDM group was lower(P<0.05),while the expressions of ATG5,BECN1,and LC3 were higher(P<0.05).Compared with the HDM group,the VB12+HDM group showed increased ZO-1 expression(P<0.05),decreased expressions of ATG5,BECN1,and LC3(P<0.01),and reduced autophagosome formation(P<0.05).In ATG5-and BECN1-knockdown cell lines,ZO-1 expression increased after HDM treatment(P<0.05).Conclusion Vb12 can enhance ZO-1 expression in HDM-treated human airway epithelial cells by down-regulating autophagy,and its mechanism is associated with the ATG5 and BECN1 signaling pathways.
5.Research on effect and mechanism of neogambogic acid induced ferroptosis in osteosarcoma in vitro and in vivo based on STAT3/GPX4/SLC7A11 axis
Yun-dong CHEN ; Yu-wan LI ; Hai-jian ZHAO ; Xing-guo NIE ; Zhong-feng LI
Chinese Pharmacological Bulletin 2025;41(5):917-925
Aim To investigate the effect of neogam-bogic acid(NGA)on inducing ferroptosis in osteosar-coma K7M2 cells and subcutaneous transplanted tumor mice and explore the underlying mechanism.Methods MTT assay was employed to detect the effect of NGA(1,2,4,8,16,32,64,128 μmol·L-1)on cell prolif-eration,and the IC50 value was calculated.Calcein AM assay was used to detect cell viability.Transwell was applied to detect cell invasion.TEM was utilized to ob-serve the mitochondria morphology.K7M2 cells were subjected to treat with ferroptosis inducers erastin(Era)and inhibitors ferrostatin-1(Fer-1)to assess the levels of MDA,GSH,Fe2+,and LDH.RT-qPCR and Western blot were used to detect the mRNA and protein expression of STAT3,GPX4,and SLC7A11.A transplanted tumor model was established and treated with NGA to assess the impact of it on tumor growth and ferroptosis in vivo.HE staining was applied to ana-lyze the pathological status of tumor tissues.Nile red fluorescence staining was applied to detect the level of lipid components in tumor tissues.Results The pro-liferation,viability and invasion ability of K7M2 cells were significantly reduced after treatment with NGA at different concentrations(P<0.05),and typical fea-tures of ferroptosis such as decreased mitochondrial vol-ume and reduced mitochondrial spine were observed.Compared to the control,the expression of MDA,Fe2+and LDH significantly increased(P<0.01),while the content of GSH significantly decreased(P<0.01).The ferroptosis in osteosarcoma was enhanced by the erastin,while inhibited by ferrostatin-1.In terms of mechanism,NGA inhibited the mRNA and protein ex-pression levels of STAT3,GPX4 and SLC7A11(P<0.05).In vivo experiments confirmed that NGA signif-icantly improved the pathological state of tumor tissues,inhibited tumor growth,and induced ferroptosis in os-teosarcoma tissue cells.Conclusion NGA induces ferroptosis in osteosarcoma cells both in vitro and in vi-vo by inhibiting the STAT3/GPX4/SLC7A11 signaling axis,thereby exerting an anti-osteosarcoma effect.
6.House dust mite-induced autophagy affects airway epithelial barrier function through β-catenin-Snail signaling pathway
Ziling ZENG ; Xing WANG ; Hongmei TANG ; Zhibin WANG ; Ning MA ; Yuejiao LI ; Xiaoyun WANG ; Xiefang YUAN ; Guofeng XU ; Qiaoqiao WANG ; Wen ZHANG ; Jiayao DUAN ; Yun ZHANG
The Journal of Practical Medicine 2025;41(9):1309-1318
Objective To investigate the mechanism of autophagy induced by House dust mites(HDM)on airway epithelial tight junction through β-catenin-Snail signaling pathway.Methods Human bronchial epithelial cells(16HBE)were stimulated with HDM at different time points(0,3,6,12,24,48 h)and different concen-trations(0,40,100,200 μg/mL)to screen the appropriate stimulation concentration and stimulation time.16HBE cells were treated with oxidative stress inhibitor N-acetylcysteine(NAC),autophagy inhibitor 3-methylad-enine(3-MA),HDM,and their combinations.Cells were transfected with mCherry-EGFP-LC3B,Beclin-1-siRNA,and ATG14-siRNA lentivirus and then stimulated with NAC and HDM.Immunofluorescence was used to detect the expression levels of autophagy-related protein LC3B,tight junction-related proteins Occludin,and ZO-1 in airway epithelial cells.The level of reactive oxygen species(ROS)was detected by using DCFH-DA in each group.The protein expression levels of Occludin,ZO-1,LC3B,Beclin-1,ATG5,ATG14,P62,Snail,β-catenin and p-β-catenin were detected by Western blot method.Results Immunofluorescence results showed that compared with the control group,200 μg/mL HDM stimulation induced cellular autophagy,increased the expression level of LC3B protein,and promoted the level of ROS,all with statistical significances(all P<0.05).Compared with the HDM group,the HDM+3-MA,HDM+ATG14-si,and HDM+Beclin-1-si groupsall showed significantincreases in the expression levels of tight junction-related proteins Occludin and ZO-1(P<0.05).The HDM+NAC group demonstrated significant decreases both in the level of ROS andin the expression level of LC3B protein.Western blot results revealed that compared with HDM,3-MA and autophagy protein low-expression beads(Beclin-1-si,ATG14-si)attenuated HDM-induced cellular autophagy(P<0.05),inhibited HDM-induced upregulation of Snail and p-β-catenin expression,and improved HDM-induced decreases in Occludin and ZO-1(P<0.05).Moreover,compared with the HDM group,the NAC+HDM group exhibited significant decreases both in the conversion of LC3BⅠ to LC3BⅡ(P<0.001)in the protein levels of Snail,p-β-catenin,Beclin-1 and ATG14(P<0.01),but significant increases in the protein levels of Occludin and ZO-1(P<0.05).Conclusion HDM affects the tight connections between airway epithelial cells by inducing autophagy,which may be attributed to the β-catenin-Snail signaling pathway.
7.Short-term efficacy of bevacizumab combined with chemotherapy for advanced cervical cancer
Fenghua CHEN ; Ping WU ; Li XING ; Yun ZHENG
Chinese Journal of Primary Medicine and Pharmacy 2025;32(10):1455-1459
Objective:To investigate the short-term efficacy of bevacizumab combined with chemotherapy in patients with advanced cervical cancer, as well as its effects on tumor markers and immune function.Methods:A retrospective analysis was conducted on 60 patients with advanced cervical cancer who received treatment at Yiwu Central Hospital from January 2020 to March 2024. The patients were divided into an observation group and a control group ( n = 30 per group) based on whether they received bevacizumab. Patients in the observation group received bevacizumab in combination with chemotherapy, while those in the control group received chemotherapy alone. The two groups were evaluated over two consecutive treatment cycles, with each cycle lasting 21 days. Short-term efficacy was compared between the two groups. The Karnofsky score, tumor markers, and immune function were assessed before and after treatment in both groups. Additionally, the incidence of adverse reactions was compared between the two groups. Results:The objective response rate in the observation group was significantly higher than that in the control group [73.33% (22/30) vs. 46.67% (14/30), χ2 = 4.44, P<0.05]. After treatment, the Karnofsky score in the observation group was significantly higher than that in the control group [(83.39 ± 4.43) vs. (75.48 ± 4.06), t = 7.21, P<0.001]. The serum levels of carbohydrate antigen 125, carcinoembryonic antigen, and carbohydrate antigen 19-9 in the observation group were all significantly lower than those in the control group ( t = -11.27, -8.91, -13.33, all P<0.001). CD 3+, CD 4+, and CD 4+/CD 8+ were significantly higher in the observation group compared with the control group ( t = 10.20, 10.74, 10.17, all P<0.001). The incidence of adverse reactions did not differ significantly between the two groups (all P>0.05). Conclusions:In patients with advanced cervical cancer, bevacizumab combined with chemotherapy demonstrates better efficacy than chemotherapy alone. The combined therapy is more effective in lowering serum levels of carbohydrate antigen 125, carcinoembryonic antigen, and carbohydrate antigen 19-9, as well as enhancing immune function, without increasing adverse reactions compared with chemotherapy alone.
8.CatLet(Hexu)angiographic scoring system
Xue-cheng SONG ; Yang HE ; Xing-hong LIN ; Cai-yun SONG ; Xiu WANG ; Ming-xing XU ; Yong-ming HE
Chinese Journal of Interventional Cardiology 2025;33(4):231-235
This review has introduced the Coronary Artery Tree description and Lesion EvaluaTion(CatLet or Hexu)angiographic scoring system,which,based solely on coronary angiography results,has characterized 6 types of right coronary artery,3 types of left descending artery,and 3 types of diagonal size,together resulting in 54 types of coronary circulation pattern.This novel angiographic scoring system can be utilized to account for coronary anatomy in its diversity,severity and complexity of diseased coronary arteries,and their subtended myocardial territories in jeopardy.The CatLet angiographic scoring system is unique in that the importance of a coronary artery is weighted according to its subtended myocardial segments,by which the variability of coronary artery has been accounted for and measured.Researchers at home and abroad have increasingly paid attention to its clinical utilities,which warrant further validation in the context of large sample size,prospective,and randomized controlled trials.The CatLet angiographic scoring system is accessible at www.catletscore.com.
9.CatLet(Hexu)angiographic scoring system
Xue-cheng SONG ; Yang HE ; Xing-hong LIN ; Cai-yun SONG ; Xiu WANG ; Ming-xing XU ; Yong-ming HE
Chinese Journal of Interventional Cardiology 2025;33(4):231-235
This review has introduced the Coronary Artery Tree description and Lesion EvaluaTion(CatLet or Hexu)angiographic scoring system,which,based solely on coronary angiography results,has characterized 6 types of right coronary artery,3 types of left descending artery,and 3 types of diagonal size,together resulting in 54 types of coronary circulation pattern.This novel angiographic scoring system can be utilized to account for coronary anatomy in its diversity,severity and complexity of diseased coronary arteries,and their subtended myocardial territories in jeopardy.The CatLet angiographic scoring system is unique in that the importance of a coronary artery is weighted according to its subtended myocardial segments,by which the variability of coronary artery has been accounted for and measured.Researchers at home and abroad have increasingly paid attention to its clinical utilities,which warrant further validation in the context of large sample size,prospective,and randomized controlled trials.The CatLet angiographic scoring system is accessible at www.catletscore.com.
10.Effect of total glucosides of paeony on intestinal ischemia-reperfusion in-jury in rats based on RhoA/ROCK1 pathway
Wei-xing JIANG ; Cheng-yun SUO ; Ya-bo WANG
Chinese Journal of Current Advances in General Surgery 2025;28(3):169-174
Objective:To investigate the effect and mechanism of total glucosides of paeony(TGP)on intestinal ischemia reperfusion(IIR)injury in rats based on Ras homolog gene family member A(RhoA)/Rho-related coiled-coil protein kinase 1(Rock1)pathway.Method:The IIR rat models were established by clamping the superior mesenteric artery for 1 h,and the rats were randomly divided into Sham group,Model group,TGP group,TGP+Rhosin(RhoA inhibi-tor)group and TGP+LPA(RhoA agonistor)group,with 8 rats in each group.After 4 weeks of continuous administration once a day,the activity or level of intestinal barrier indexes[diamine oxidase(DAO),d-lactic acid(D-LA)and endotoxin(ET)]in plasma were detected by ELISA method,the wet/dry weight(W/D)ratio was calculated to evaluate the intestinal water content.The intestinal histopathological changes was observed by HE stainning,and the the degree of intestinal injury was evaluated by Chiu's score.The intestinal cells apoptosis was observed by TUNEL method.The inflammatory factors[tumor necrosis factor-α(TNF-α),interleukin-18(IL-18)and interleukin-1β(IL-1β)]in serum were detected by ELISA method.The oxidative stress indexes[malondialdehyde(MDA),superoxide dismutase(SOD)and catalase(CAT)]in serum were measured by spectrophotometry method.The expression of RhoA,ROCK1,nuclear factor-κB p65(NF-κB p65),hypoxia induciblefactor-1α(HIF-1α),zonula occludens protein-1(ZO-1),Occludin proteins were detected by Western blot method.Result:Compared with Model group,the activity of DAO and the content of D-LA,ET in plasma of TGP group and TGP+Rhosin group were significantly decreased,the W/D of intestinal were significantly decreased(P<0.05).The intestinal histopathological changes were significantly improved,the Chiu's score and cell poptosis index were significantly decreased(P<0.05).The content of TNF-α,IL-18,IL-1β,MDA in serum were significantly decreased,the activity of SOD,CAT were significantly increased(P<0.05).The expression of RhoA,ROCK1,NF-κB p65 proteins in in-testine tissue were significantly decreased,the expression of HIF-1α,ZO-1,Occludin proteins were significantly in-creased(P<0.05).Compared with TGP group,Rhosin significantly enhanced the effects of TGP on various detection indi-cators in IIR rats(P<0.05),while LPA significantly weakened the aforementioned effects of TGP(P<0.05).Conclusion:TGP could inhibiting inflammation,oxidative stress and improving intestinal barrier function by down-regulating RhoA/ROCK1 pathway,thus playing protective role against IIR injury in rats.

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