1.Role of GLUT1-dependent glycolysis in attenuation of oxygen-glucose deprivation-reoxygenation injury by dexmedetomidine in HK-2 cells
Wei DING ; Wen-hui TAO ; Yu-le WU ; Jian-xiao WU ; Jing-yi GUO ; Li-fang XIE ; Bing-qian FAN ; Xue-song GU ; Yang LI ; Xian-wen HU
Chinese Pharmacological Bulletin 2025;41(3):444-450
Aim To evaluate the role of the glucose transporter protein 1(GLUT1)-dependent glycolytic in the attenuation of oxygen-glucose deprivation-reoxygen-ation(OGD/R)injury in HK-2 cells by dexmedetomi-dine(Dex).Methods C57/BL6 mice were random-ly divided into three groups(n=6),namely,sham operation group(Sham group),renal ischemia reper-fusion group(I/R group)and Dex group(I/R+Dex group).Serum creatinine(Cr)and urea nitrogen(BUN)were measured,while the levels of key glyco-lytic enzymes HK2,PFKFB3 and GLUT1 were meas-ured.HK-2 cells were cultured and randomised into seven groups(n=6),which was treated with OGD/R,overexpression or interference with GLUT1,Dex and glycolysis inhibitor 2-DG.CCK-8 and LDH activi-ty were used to detect cellular damage.Glycolysis lev-els were detected by lactate and ECAR.The inflamma-tory level was reflected by qRT-PCR for IL-6 and TNF-α.qRT-PCR and Western blot were performed to de-tect the levels of GLUT1,HK2,and PFKFB3.Results Dex significantly ameliorated kidney injury and HK-2 cell injury(P<0.05).Dex inhibited the OGD/R-induced rise in lactate and extracellular acidification rate(ECAR),as evidenced by suppression of the ex-pression of GLUT1,HK2 and PFKFB3(P<0.05).In vitro experiments showed that GLUT1 knockdown sig-nificantly improved OGD/R-induced cellular damage.Lactate,ECAR,glycolysis-related mRNAs and pro-teins were inhibited by GLUT1 knockdown(P<0.05).Significantly,there were no significant differ-ences in above indexes after Dex treatment based on GLUT1 knockdown.Overexpression of GLUT1 abroga-ted the protective effects of Dex,while reversing the inhibitory effects of Dex on the expression of GLUT1,HK2,and PFKFB3(P<0.05).Conclusions Dexmedetomidine attenuates OGD/R induced injury in HK-2 cells by inhibiting GLUT1-dependent glycolysis.
2.Pathological relationship between circulating tumor DNA and EGFR,KRAS and NRAS mutant resectable non-small cell lung cancer
Lei WANG ; Xian LIU ; Qing-hui WU ; Ke GAO
Journal of Regional Anatomy and Operative Surgery 2025;34(2):154-158
Objective To investigate the relationship between the circulating tumor DNA(ctDNA)and the clinicopathological features of epidermal growth factor receptor gene(EGFR),Kirsten rat sarcoma viral oncogene(KRAS),and neuroblastoma RAS viral oncogene(NRAS)in patients with mutant resectable non-small cell lung cancer(NSCLC).Methods Thirty-six patients with NSCLC who underwent surgical resection in our hospital and had matched plasma samples in the biobank were included for mutation analysis.The EGFR,KRAS and NRAS mutations of plasma ctDNA and biopsy tissue were analyzed by peptide nucleic acid clamp PCR to explore the relationship between plasma ctDNA shedding and clinicopathological features of patients.Results The consistency of EGFR,KRAS and NRAS in biopsy tissue and plasma samples of 36 patients was 63.89%(23/36),88.89%(32/36)and 86.11%(31/36),respectively.In mutant tumors,the sensitivity of EGFR,KRAS and NRAS mutation detection in plasma ctDNA was 23.53%(4/17),33.33%(2/6)and 40.00%(2/5),respectively.In patients with adenocarcinoma,plasma ctDNA shedding was associated with higher tumor stage,N stage,TNM stage,tumor necrosis rate,mitotic count 10HPFs,larger maximum tumor diameter and tumor volume(P<0.05).In subgroup analysis of lung adenocarcinoma patients,ctDNA shedding was significantly associated with higher N stage,vascular invasion rate,tumor necrosis rate,and mitotic count 10HPFs,as well as larger maximum tumor diameter and tumor volume(P<0.05).Conclusion The shedding of ctDNA in lung adenocarcinoma is associated with primary tumor diameter,volume,and aggressive histological features(such as necrosis and high mitotic count).
3.Role of GLUT1-dependent glycolysis in attenuation of oxygen-glucose deprivation-reoxygenation injury by dexmedetomidine in HK-2 cells
Wei DING ; Wen-hui TAO ; Yu-le WU ; Jian-xiao WU ; Jing-yi GUO ; Li-fang XIE ; Bing-qian FAN ; Xue-song GU ; Yang LI ; Xian-wen HU
Chinese Pharmacological Bulletin 2025;41(3):444-450
Aim To evaluate the role of the glucose transporter protein 1(GLUT1)-dependent glycolytic in the attenuation of oxygen-glucose deprivation-reoxygen-ation(OGD/R)injury in HK-2 cells by dexmedetomi-dine(Dex).Methods C57/BL6 mice were random-ly divided into three groups(n=6),namely,sham operation group(Sham group),renal ischemia reper-fusion group(I/R group)and Dex group(I/R+Dex group).Serum creatinine(Cr)and urea nitrogen(BUN)were measured,while the levels of key glyco-lytic enzymes HK2,PFKFB3 and GLUT1 were meas-ured.HK-2 cells were cultured and randomised into seven groups(n=6),which was treated with OGD/R,overexpression or interference with GLUT1,Dex and glycolysis inhibitor 2-DG.CCK-8 and LDH activi-ty were used to detect cellular damage.Glycolysis lev-els were detected by lactate and ECAR.The inflamma-tory level was reflected by qRT-PCR for IL-6 and TNF-α.qRT-PCR and Western blot were performed to de-tect the levels of GLUT1,HK2,and PFKFB3.Results Dex significantly ameliorated kidney injury and HK-2 cell injury(P<0.05).Dex inhibited the OGD/R-induced rise in lactate and extracellular acidification rate(ECAR),as evidenced by suppression of the ex-pression of GLUT1,HK2 and PFKFB3(P<0.05).In vitro experiments showed that GLUT1 knockdown sig-nificantly improved OGD/R-induced cellular damage.Lactate,ECAR,glycolysis-related mRNAs and pro-teins were inhibited by GLUT1 knockdown(P<0.05).Significantly,there were no significant differ-ences in above indexes after Dex treatment based on GLUT1 knockdown.Overexpression of GLUT1 abroga-ted the protective effects of Dex,while reversing the inhibitory effects of Dex on the expression of GLUT1,HK2,and PFKFB3(P<0.05).Conclusions Dexmedetomidine attenuates OGD/R induced injury in HK-2 cells by inhibiting GLUT1-dependent glycolysis.
4.Pathological relationship between circulating tumor DNA and EGFR,KRAS and NRAS mutant resectable non-small cell lung cancer
Lei WANG ; Xian LIU ; Qing-hui WU ; Ke GAO
Journal of Regional Anatomy and Operative Surgery 2025;34(2):154-158
Objective To investigate the relationship between the circulating tumor DNA(ctDNA)and the clinicopathological features of epidermal growth factor receptor gene(EGFR),Kirsten rat sarcoma viral oncogene(KRAS),and neuroblastoma RAS viral oncogene(NRAS)in patients with mutant resectable non-small cell lung cancer(NSCLC).Methods Thirty-six patients with NSCLC who underwent surgical resection in our hospital and had matched plasma samples in the biobank were included for mutation analysis.The EGFR,KRAS and NRAS mutations of plasma ctDNA and biopsy tissue were analyzed by peptide nucleic acid clamp PCR to explore the relationship between plasma ctDNA shedding and clinicopathological features of patients.Results The consistency of EGFR,KRAS and NRAS in biopsy tissue and plasma samples of 36 patients was 63.89%(23/36),88.89%(32/36)and 86.11%(31/36),respectively.In mutant tumors,the sensitivity of EGFR,KRAS and NRAS mutation detection in plasma ctDNA was 23.53%(4/17),33.33%(2/6)and 40.00%(2/5),respectively.In patients with adenocarcinoma,plasma ctDNA shedding was associated with higher tumor stage,N stage,TNM stage,tumor necrosis rate,mitotic count 10HPFs,larger maximum tumor diameter and tumor volume(P<0.05).In subgroup analysis of lung adenocarcinoma patients,ctDNA shedding was significantly associated with higher N stage,vascular invasion rate,tumor necrosis rate,and mitotic count 10HPFs,as well as larger maximum tumor diameter and tumor volume(P<0.05).Conclusion The shedding of ctDNA in lung adenocarcinoma is associated with primary tumor diameter,volume,and aggressive histological features(such as necrosis and high mitotic count).
5.Study on the causal relationship between gastroesophageal reflux disease and sleep disorder based on two sample Mendelian randomization
Jiaxin LIU ; Jiao DUAN ; Hui WU ; Yingmin GU ; Shaoxiang XIAN
International Journal of Traditional Chinese Medicine 2024;46(10):1277-1285
Objective:To explore the causal relationship between gastroesophageal reflux disease (GERD) and sleep disorder using Mendelian randomization (MR); To explore the diagnosis and treatment of sleep disorder with GERD by combining with the TCM theory that "gastric disharmony causing restless sleep".Methods:Genetic loci independent of each other and closely related to GERD were taken as instrumental variables by pooling data from a large-scale genome-wide association study. The causal relationship between GERD and sleep disorder was explored with Mendelian randomization methods, such as Inverse Variance Weighted (IVW), MR Egger, Weighted Median (WME), Simple Mode (SM), Weighted Mode (WM) and MR Multiple Effectiveness Residual Sum and Heteroscedasticity (MR-PRESSO) using OR as an evaluation index.Results:The results of the IVW method showed that GERD led to a 44.3% higher risk of developing sleep disorder ( P=4.96×10 -15, OR=1.443, 95% CI:1.317-1.582); horizontal pleiotropy was detected using the MR-Egger intercept, which was calculated to be P=0.646 ( P>0.05), proving that there was no horizontal pleiotropy in the results; Leave-one-out sensitivity test showed that the results were stable and there were no instrumental variables that strongly influenced the results. Conclusion:GRED is a risk factor for the development of sleep disorder, which is consistent with the TCM theory of "gastric disharmony causing restless sleep".
6.Research Progress in the Prevention and Treatment of Deep Venous Thrombosis in Lower Limb Fracture
Chu-Rong ZHENG ; Peng GU ; Wen-Zheng WU ; Neng-Xian TAN ; Lie-Liang LUO ; Chong-Zhi OUYANG ; Xiao-Hui ZHENG
Journal of Guangzhou University of Traditional Chinese Medicine 2024;41(6):1647-1652
Deep vein thrombosis(DVT)is a common complication after surgery for lower limb fracture.It has the features of high morbidity,high disability rate and high mortality.At present,the measures for clinical prevention and treatment of post-operative DVT in lower limb fracture mainly include perioperative nursing,intervention with medical auxiliary instruments,western medicine prevention and treatment,traditional Chinese medicine(TCM)intervention,and patients'self-cooperation.The patients'self-cooperation is the basis for the smooth implementation of other measures for prevention and treatment,and the patients'active cooperation is the premise of achieving the efficacy of prevention and treatment.Perioperative nursing is helpful for the patients to understand the risk factors of postoperative DVT and the possible risks after the occurrence of DVT,guides the patients to choose the food,assists the patients to do postoperative exercises,improves the level of patients'hemorheological indexes,and reduce the incidence of postoperative DVT.Medical devices are helpful for assisting patients to do postoperative rehabilitation exercises,improving the levels of hemodynamic indicators,promoting patients'rehabilitation and reducing the incidence of postoperative DVT.Western medicines such as low molecular weight heparin,Rivaroxaban,Enoxaparin and other anticoagulant drugs can reduce the aggregation of coagulation factors and blood viscosity,and reduce the incidence of postoperative DVT.TCM interventions mainly include oral administration of Chinese medicine and external treatment such as acupuncture,moxibustion and massage.Oral administration of Chinese medicine is helpful for improving blood flow status.Acupuncture,moxibustion and massage are beneficial to the activation of the function of zang-fu organs,and can stimulate the healthy qi to improve the qi-blood state of the whole body.Each method of prevention and treatment has its advantages and disadvantages.In clinical application,reasonable prevention and treatment methods should be selected according to the specific conditions and individual conditions of the patients.TCM intervention of DVT can be performed in patients with lower limb fracture before and after surgery,and has the advantages of low cost and definite efficacy,which is worthy of continuous research and inheritance and innovation.
7.Research progress on the impact of lipid metabolism on endometrial receptivity and embryo implantation
Li-Na MA ; Ying QIN ; Ke-Hua WANG ; Cong-Hui PANG ; Li-Ge LU ; Wen-Xian YUAN ; Duo-Jia ZHANG ; Xiao-Ke WU
Medical Journal of Chinese People's Liberation Army 2024;49(9):1088-1093
Lipids,including fats(triglycerides)and lipoids(phospholipids and sterols),not only serve as an energy source for the body but also play a pivotal role throughout the reproductive process,particularly in the establishment and maintenance of early pregnancy.This encompasses the regulate of early embryonic development and uterine tolerance,and the facilitation of embryo implantation.Given the diversity of lipids,this review focuses on extensively studied lipid mediators such as polyunsaturated fatty acids,endocannabinoids,prostaglandins,lysophosphatidic acid,sphingolipids and steroid hormones.It systematically elaborates on the regulatory effects of fatty acid,phospholipid,and cholesterol metabolism on the formation of endometrial receptivity and embryo implantation,as well as the potential underlying mechanisms.The review aims to provide new insights and feasible intervention approaches for predicting and improving the outcomes of natural pregnancy and/or assisted reproductive technology.
8.Establishment of an artificial intelligence assisted diagnosis model based on deep learning for recognizing gastric lesions and their locations under gastroscopy in real time
Xian GUO ; Ying-Yang WU ; Ai-Rui JIANG ; Chao-Qiang FAN ; Xue PENG ; Xu-Biao NIE ; Hui LIN ; Jian-Ying BAI
Journal of Regional Anatomy and Operative Surgery 2024;33(10):849-854
Objective To construct an artificial intelligence assisted diagnosis model based on deep learning for dynamically recognizing gastric lesions and their locations under gastroscopy in real time,and to evaluate its ability to detect and recognize gastric lesions and their locations.Methods The gastroscopy videos of 104 patients in our hospital was retrospectively analyzed,and the video frames were manually annotated.The annotated picture frames of lesion category were divided into the training set and the validation set according to the ratio of 8∶2,and the annotated picture frames of location category were divided into the training set and the validation set according to the patient sources at the ratio of 8∶2.These sets were utilized for training and validating the respective models.YoloV4 model was used for the training of lesion recognition,and ResNet152 model was used for the training of location recognition.The accuracy,sensitivity,specificity,positive predictive value,negative predictive value and location recognition accuracy of the auxiliary diagnostic model were evaluated.Results A total of 68 351 image frames were annotated,with 54 872 frames used as the training set,including 41 692 frames for lesion categories and 13 180 frames for location categories.The validation set consisted of 13 479 frames,comprising 10 422 frames for lesion categories and 3 057 frames for location categories.The lesion recognition model achieved an overall accuracy of 98.8%,with a sensitivity of 96.6%,specificity of 99.3%,positive predictive value of 96.3%,and negative predictive value of 99.3% in validation set.Meanwhile,the location recognition model demonstrated an top-5 accuracy of 87.1% .Conclusion The artificial intelligence assisted diagnosis model based on deep learning for real-time dynamic recognition of gastric lesions and their locations under gastroscopy has good ability in lesion detection and location recognition,and has great clinical application prospects.
9.Genetic Variation of SH2B3 in Patients with Myeloid Neoplasms
Qiang MA ; Rong-Hua HU ; Hong ZHAO ; Xiao-Xi LAN ; Yi-Xian GUO ; Xiao-Li CHANG ; Wan-Ling SUN ; Li SU ; Wu-Han HUI
Journal of Experimental Hematology 2024;32(4):1186-1190
Objective:To observe the genetic variation of SH2B3 in patients with myeloid neoplasms.Methods:The results of targeted DNA sequencing associated with myeloid neoplasms in the Department of Hematology,Xuanwu Hospital,Capital Medical University from November 2017 to November 2022 were retrospectively analyzed,and the patients with SH2B3 gene mutations were identified.The demographic and clinical data of these patients were collected,and characteristics of SH2B3 gene mutation,co-mutated genes and their correlations with diseases were analyzed.Results:The sequencing results were obtained from 1 005 patients,in which 19 patients were detected with SH2B3 gene mutation,including 18 missense mutations(94.74%),1 nonsense mutation(5.26%),and 10 patients with co-mutated genes(52.63%).Variant allele frequency(VAF)ranged from 0.03 to 0.66.The highest frequency mutation was p.Ile568Thr(5/19,26.32%),with an average VAF of 0.49,involving 1 case of MDS/MPN-RS(with SF3B1 mutation),1 case of MDS-U(with SF3B1 mutation),1 case of aplastic anemia with PNH clone(with PIGA and KMT2A mutations),2 cases of MDS-MLD(1 case with SETBP1 mutation).The other mutations included p.Ala567Thr in 2 cases(10.53%),p.Arg566Trp,p.Glu533Lys,p.Met437Arg,p.Arg425Cys,p.Glu314Lys,p.Arg308*,p.Gln294Glu,p.Arg282Gln,p.Arg175Gln,p.Gly86Cys,p.His55Asn and p.Gln54Pro in 1 case each.Conclusion:A wide distribution of genetic mutation sites and low recurrence of SH2B3 is observed in myeloid neoplasms,among of them,p.Ile568Thr mutation is detected with a higher incidence and often coexists with characteristic mutations of other diseases.
10.Hemin attenuates bleomycin-induced lung fibrosis in mice by regulating the TGF-ββ1/MAPK and AMPK/SIRT1/PGC-1αα/HO-1/ NF-κκB pathways
Wei HAO ; Ting-ting YU ; Wei LI ; Guo-guang WANG ; Hui-xian HU ; Ping-ping ZHOU
The Korean Journal of Physiology and Pharmacology 2024;28(6):559-568
The objective of this study was to investigate the protective effect and potential mechanism of action of hemin on bleomycin-induced pulmonary fibrosis in mice. Male C57BL/6 mice were randomly divided into control, bleomycin and bleomycin + hemin groups. Mice in the bleomycin and bleomycin + hemin groups were injected intratracheally with bleomycin to establish the pulmonary fibrosis model.The bleomycin + hemin group mice were injected intraperitoneally with hemin starting 7 days before modeling until the end of Day 21 after modeling. Pathological changes in lung tissue were assessed by HE and Masson staining. Malondialdehyde (MDA), superoxide dismutase (SOD) and catalase (CAT) levels were determined in lung tissue. Immunohistochemistry was performed to assess the expression of α-SMA and collagen I. The serum levels of IL-6 and TNF-α were measured via ELISA.Western blotting was used to determine the expression of TGF-β1, SIRT1, PGC-1α and HO-1 and the phosphorylation levels of p38, ERK1/2, JNK, AMPK and NF-κB p65 in lung tissue. Hemin significantly reduced lung indices, increased terminal body weight. It also significantly increased SOD and CAT activities; decreased MDA, IL-6 and TNF-α levels; reduced the levels of α-SMA and collagen I-positive cells; upregulated SIRT1, PGC-1α and HO-1 expression; promoted AMPK phosphorylation; and downregulated TGF-β1 expression and p38, ERK1/2, JNK and NF-κB p65 phosphorylation. Hemin might attenuate oxidative damage and inflammatory responses and reduces extracellular matrix deposition by regulating the expression and phosphorylation of proteins associated with the TGF-β1/MAPK and AMPK/SIRT1/PGC-1α/HO-1/ NF-κB pathways, thereby alleviating bleomycin-induced pulmonary fibrosis.

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