1.The Role and Mechanism of Aerobic Exercise in Enhancing Insulin Sensitivity by Reducing Circulating Glutamate
Xiao-Rui XING ; Qin SUN ; Huan-Yu WANG ; Ruo-Bing FAN ; Ru WANG
Progress in Biochemistry and Biophysics 2025;52(6):1373-1385
ObjectiveTo explore the role and potential mechanism of circulating glutamate in enhancing insulin sensitivity by aerobic exercise. This research may provide a novel strategy for preventing metabolic diseases through precise exercise interventions. MethodsTo investigate the effects of elevated circulating glutamate on insulin sensitivity and its potential mechanisms, 18 male C57BL/6 mice aged 6 to 8 weeks were randomly divided into 3 groups: a control group (C), a group receiving 500 mg/kg glutamate supplementation (M), and a group receiving 1 000 mg/kg glutamate supplementation (H). The intervention lasted for 12 weeks, with treatments administered 6 d per week. Following the intervention, an insulin tolerance test (ITT) and a glucose tolerance test (GTT) were conducted. Circulating glutamate levels were measured using a commercial kit, and the activity of the skeletal muscle InsR/IRS1/PI3K/AKT signaling pathway was analyzed via Western blot. To further investigate the role of circulating glutamate in enhancing insulin sensitivity through aerobic exercise, 30 male C57BL/6 mice were randomly assigned to 3 groups: a control group (CS), an exercise intervention group (ES), and an exercise combined with glutamate supplementation group (EG). The ES group underwent treadmill-based aerobic exercise, while the EG group received glutamate supplementation at a dosage of 1 000 mg/kg in addition to aerobic exercise. The intervention lasted for 10 weeks, with sessions occurring 6 d per week, and the same procedures were followed afterward. To further elucidate the mechanism by which glutamate modulates the InsR/IRS1/PI3K/AKT signaling pathway, C2C12 myotubes were initially subjected to graded glutamate treatment (0, 0.5, 1, 3, 5, 10 mmol/L) to determine the optimal concentration for cellular intervention. Subsequently, the cells were divided into 3 groups: a control group (C), a glutamate intervention group (G), and a glutamate combined with MK801 (an NMDA receptor antagonist) intervention group (GK). The G group was treated with 5 mmol/L glutamate, while the GK group received 50 μmol/L MK801 in addition to 5 mmol/L glutamate. After 24 h of intervention, the activity of the InsR/IRS1/PI3K/AKT signaling pathway was analyzed using Western blot. ResultsCompared to the mice in group C, the circulating glutamate levels, the area under curve (AUC) of ITT, and the AUC of GTT in the mice of group H were significantly increased. Additionally, the expression levels of p-InsRβ, IRS1, p-AKT, and p-mTOR proteins in skeletal muscle were significantly downregulated. Compared to the mice in group CS, the circulating glutamate levels, the AUC of ITT, and the AUC of GTT in the mice of group ES were significantly reduced. Additionally, the expression levels of p-InsRβ, IRS1, p-AKT, and p-mTOR proteins in skeletal muscle of group ES mice were significantly upregulated. There were no significant changes observed in the mice of group EG. Compared to the cells in group 0 mmol/L, the expression levels of p-InsRβ, p-IRS1, p-PI3K, and p-AKT proteins in cells of group 5 mmol/L were significantly downregulated. Compared to the cells in group C, the expression levels of p-InsRβ, p-IRS1, p-PI3K, and p-AKT proteins in the cells of group G were significantly downregulated. No significant changes were observed in the cells of group GK. ConclusionLong-term aerobic exercise can improve insulin sensitivity by lowering circulating levels of glutamate. This effect may be associated with the upregulation of the InsR/IRS1/AKT signaling pathway activity in skeletal muscle. Furthermore, glutamate can weaken the activity of the InsR/IRS1/PI3K/AKT signaling pathway in skeletal muscle, potentially by binding to NMDAR expressed in skeletal muscle.
2.Potassium dehydroandrographolide succinate regulates the MyD88/CDH13 signaling pathway to enhance vascular injury-induced pathological vascular remodeling.
Qiru GUO ; Jiali LI ; Zheng WANG ; Xiao WU ; Zhong JIN ; Song ZHU ; Hongfei LI ; Delai ZHANG ; Wangming HU ; Huan XU ; Lan YANG ; Liangqin SHI ; Yong WANG
Chinese Journal of Natural Medicines (English Ed.) 2024;22(1):62-74
Pathological vascular remodeling is a hallmark of various vascular diseases. Previous research has established the significance of andrographolide in maintaining gastric vascular homeostasis and its pivotal role in modulating endothelial barrier dysfunction, which leads to pathological vascular remodeling. Potassium dehydroandrographolide succinate (PDA), a derivative of andrographolide, has been clinically utilized in the treatment of inflammatory diseases precipitated by viral infections. This study investigates the potential of PDA in regulating pathological vascular remodeling. The effect of PDA on vascular remodeling was assessed through the complete ligation of the carotid artery in C57BL/6 mice. Experimental approaches, including rat aortic primary smooth muscle cell culture, flow cytometry, bromodeoxyuridine (BrdU) incorporation assay, Boyden chamber cell migration assay, spheroid sprouting assay, and Matrigel-based tube formation assay, were employed to evaluate the influence of PDA on the proliferation and motility of smooth muscle cells (SMCs). Molecular docking simulations and co-immunoprecipitation assays were conducted to examine protein interactions. The results revealed that PDA exacerbates vascular injury-induced pathological remodeling, as evidenced by enhanced neointima formation. PDA treatment significantly increased the proliferation and migration of SMCs. Further mechanistic studies disclosed that PDA upregulated myeloid differentiation factor 88 (MyD88) expression in SMCs and interacted with T-cadherin (CDH13). This interaction augmented proliferation, migration, and extracellular matrix deposition, culminating in pathological vascular remodeling. Our findings underscore the critical role of PDA in the regulation of pathological vascular remodeling, mediated through the MyD88/CDH13 signaling pathway.
Mice
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Rats
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Animals
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Myeloid Differentiation Factor 88/metabolism*
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Vascular Remodeling
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Cell Proliferation
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Vascular System Injuries/pathology*
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Carotid Artery Injuries/pathology*
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Molecular Docking Simulation
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Muscle, Smooth, Vascular
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Cell Movement
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Mice, Inbred C57BL
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Signal Transduction
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Succinates/pharmacology*
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Potassium/pharmacology*
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Cells, Cultured
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Diterpenes
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Cadherins
3. Resveratrol inhibits autophagy and promotes apoptosis in uveal melanoma cells via miR-512-3P/DUSPl axis
Zheng-Yang SUN ; Nan-Nan LIU ; Xue-Fei FAN ; Su-Huan CHEN ; Xiao-Yu CHEN ; Zheng-Yang SUN ; Wu-Qi CHEN ; Guang-Yi CHEN ; Yu-Bao SHAO ; Xiao-Yu CHEN
Chinese Pharmacological Bulletin 2024;40(2):292-298
Aim To investigate the regulatory role and mechanism of resveratrol in inhibiting autophagy and promoting apoptosis in choroidal melanoma cells. Methods Choroidal melanoma cells (MUM2B) were divided into control and experimental groups, and treated with different concentrations of resveratrol (0, 10, 20,40,60,80 μmol ·L
4.Study on the Treatment of Dampness Stagnated in the Triple Energizer Based on the Theory of"Qi Transformation Leading to the Removal of Pathogenic Dampness"
Xiao-Ying MO ; Wei-Jun RUAN ; Feng-Ling ZHENG ; Huan-Huan LUO
Journal of Guangzhou University of Traditional Chinese Medicine 2024;41(4):1048-1052
The statement of"qi transformation leading to the removal of pathogenic dampness"was recorded in Wen Bing Tiao Bian(Analysis on Epidemic Febrile Diseases)written by the Qing Dynasty physician WU Ju-Tong.Dampness in the triple energizer is caused by the dysfunction of qi transformation,and the treatment of dampness must be based on the activation of qi movement and focused on the promotion of qi movement and the restoration of the qi transformation in the triple energizer.For the treatment of dampness attack in the upper energizer,therapies of dispersing lung to smooth qi and resolving dampness to relieve the obstruction are recommended.For the treatment of dampness obstruction in the middle energizer,therapy of activating spleen qi by strengthening spleen and moving qi is stressed for helping the removal of dampness and for the eradication of the source of dampness.For the treatment of dampness stagnation in the lower energizer,therapy of draining dampness with sweet-light medicines and activating yang can be used according to the illness status.The three methods of treating dampness,namely dispersing the upper energizer,activating the middle energizer and draining the lower energizer,all embody the mechanism of"qi transformation leading to the removal of pathogenic dampness",and the therapies of dispersing lung with light medicines,inducing perspiration by opening striated layer,eliminating dampness with aromatics and draining dampness with sweet-light medicines should be used in accordance with the syndromes.The elucidation of the academic thoughts of"qi transformation leading to the removal of pathogenic dampness"can provide theoretical reference for the fundamental research of dampness syndrome and clinical application of therapies for resolving dampness in Chinese medicine.
5.Analysis of Blood Type Unexpected Antibody Screening Results and Disease Types of Clinical Patients from A Hospital in Chengdu,Sichuan Province from 2012 to 2021
Junlong YANG ; Li ZHANG ; Jie XIAO ; Huan LI ; Xin YANG ; Tao PENG
Journal of Modern Laboratory Medicine 2024;39(1):152-157
Objective To analyze blood type unexpected antibody and disease characteristics of inpatients in a hospital,and provide a reference for optimizing precise transfusion schemes and improving clinical transfusion safety.Methods The data of unexpected antibody screening and identification in the General Hospital of Western Theater Command from January 2012 to December 2021 were collected,while information on these patient age,gender,blood transfusion history,pregnancy history and disease diagnosis were also collected.The positive rate,composition ratio and disease characteristics of unexpected antibodies were analyzed.Results The positive rate of unexpected antibody screening was 0.55%(1 736/315 456),in which females were higher than males(0.69%vs 0.44%,χ2=90.107,P<0.05),patients with a history of blood transfusion or(and)pregnancy were higher than those without a history of blood transfusion or(and)pregnancy(75.69%vs 22.81%,χ2=971.098,P<0.05),and patients aged 40~80 accounted for 72.93%(1 266/1 736).Patients diseases with unexpected antibody positive accounted for 80.41%(1 396/1 736),mainly including digestive system diseases,immune diseases of blood and hematopoietic organs,tumors,urogenital system diseases,circulatory system diseases,musculoskeletal system and connective tissue diseases.Moreover,91.88%(1 595/1 736)of the patients with anti-screening positive underwent antibody identification,in which the majority of unexpected antibodies were Rh blood group system[41.57%(663/1 595)],Lewis blood group system[11.22%(179/1 595)],and MNS blood group system[6.90%(110/1 595)].Antibody specificity was mainly characterized by anti-E[32.41%(517/1 595)],anti-Lea[10.47%(167/1 595)],and anti-M 6.08%(97/1 595).Other antibodies[35.8%(571/1 595)]were mainly no-detected specific antibodies.Conclusion The screening results of blood type unexpected antibodies and disease type analysis are of great significance for transfusion safety.Blood transfusion department should carry out precise blood transfusion matching with multiple antigens(RhCcDEe,Lea,M)for long-term transfusion patients,women,and patients with pregnancy or blood transfusion history,so as to reduce the incidence of unexpected antibodies and improve transfusion safety.
6.Application of strontium polyphosphate with both radiopaque and osteogenic functions in calcium phosphate cement
Ziniu TANG ; Fengcheng CHU ; Kang WU ; Lin ZHANG ; Yanjie BAI ; Xiao LIN ; Huilin YANG ; Huan ZHOU ; Huiling LIU ; Lei YANG
Chinese Journal of Tissue Engineering Research 2024;28(22):3539-3547
BACKGROUND:Our previous studies found that adding barium sulfate could improve the mechanical and radiopaque properties of calcium phosphate cement.However,with the degradation of calcium phosphate,the remaining radiopaque agent is difficult to degrade,and the space-occupying and osteoclast effects at the implantation site affect the bone repair process.Therefore,it is necessary to develop a new biodegradable radiopaque material. OBJECTIVE:To discuss the radiopaque ability of bioactive degradable material strontium polyphosphate(SrPP)and its impact on the physicochemical properties and osteogenic effect of calcium phosphate cement. METHODS:(1)Calcium phosphate cement(CPC),starch modified calcium phosphate cement(CPS)and starch modified calcium phosphate cement(20%SrPP-CPN)containing SrPP(20%mass fraction of bone cement powder)were prepared respectively,and the physicochemical properties of the three groups of bone cements were characterized.(2)The three groups of bone cement extracts were co-cultured with rat bone marrow mesenchymal stem cells,respectively,to detect cell proliferation,energy metabolism,and osteogenic differentiation.(3)Bone defects with a diameter of 5 mm were made on each side of the top of the skull of 24 SD rats,and they were randomly divided into control group(without any intervention),CPC group,CPS group,and 20%SrPP-CPN group for intervention,with 6 rats in each group.Relevant tests were performed after 4 and 12 weeks of intervention. RESULTS AND CONCLUSION:(1)Compared with the other two groups of bone cement,20%SrPP-CPN had enhanced radiopaque ability,increased compressive strength and degradation rate,and prolonged curing time,and 20%SrPP-CPN could release Sr2+ stably during degradation.(2)CCK-8 assay showed that 20%SrPP-CPN did not affect the proliferation of bone marrow mesenchymal stem cells.Cell starvation test(serum-free culture)showed that 20%SrPP-CPN could promote the proliferation of bone marrow mesenchymal stem cells compared with the other two groups of bone cement.Compared with the other two groups of bone cements,20%SrPP-CPN increased adenosine triphosphate concentration in bone marrow mesenchymal stem cells.Alkaline phosphatase and alizarin red staining showed that 20%SrPP-CPN could promote osteogenic differentiation of bone marrow mesenchymal stem cells compared with the other two groups of bone cement.(3)In the rat skull defect experiment,Micro-CT scanning and histological observation(hematoxylin-eosin and Masson stainings)showed that bone cement in 20%SrPP-CPN group was significantly degraded compared with that in CPC and CPS groups,and a large number of new bone tissues were dispersed in degraded bone cement.Immunohistochemical staining showed that Runx2 protein expression was increased in 20%SrPP-CPN group compared with CPC group and CPS group(P<0.01).(4)These results show that 20%SrPP-CPN has good radiopaque ability and osteogenic properties.
7.Sub-chronic aluminum exposure induces cognitive impairment through ALKBH5/PTEN/AKT signaling pathway in rats
Yan LIU ; Xiaoyu ZHANG ; Weitao ZHANG ; Feifan XIAO ; Ping CUI ; Binhong WANG ; Xinru CHEN ; Bin JIANG ; Huan CHEN ; Li LIN ; Jing ZHANG ; Huan LI
China Occupational Medicine 2024;51(2):144-149
ObjectiveTo investigate the effects of maltol aluminum exposure on miR-193a-3p, demethylase AlkB homolog 5 (ALKBH5), phosphatase and tensin homolog deleted on chromosome ten (PTEN) and protein kinase B (AKT), and whether miR-193a-3p is involved in aluminum-induced cognitive impairment by regulating ALKBH5/PTEN/AKT signaling pathway. Methods Specific pathogen-free male SD rats were randomly divided into control group and low-, medium- and high- dose groups according to their body weight, with eight rats in each group. Rats in the low-, medium-, and high- dose groups were intraperitoneally injected with maltol aluminum solution at concentrations of 10.00, 20.00, and 40.00 μmol/kg body weight, respectively, while the rats in control group were given an equal volume of 0.9% sodium chloride solution. Rats were injected for five days every week for three months. After injection, the novel object recognized test was used to assess the learning and memory ability of the rats. The relative expression of miR-193a-3p and B-cell lymphocytoma-2 (Bcl-2), Bcl-2 associated X protein (Bax) and cysteine aspartate protease-3 (Caspase-3) mRNA in rat hippocampus was detected using the real-time quantitative polymerase chain reaction. The relative protein expression of ALKBH5, PTEN, and AKT2 in the rat hippocampus was detected using Western blot. Results The discrimination index and the preference index of the new object recognition test of the rats in high-dose group were lower than those in control group and low-dose group (all P<0.05). The relative expression of miR-193a-3p and Bcl-2 mRNA in the hippocampus of the rats in high-dose group was lower than those in control group and low-dose group (all P<0.05). The relative mRNA expression of Bax in the high-dose group was higher than those in the control group and low-dose group (both P<0.05). The relative mRNA expression of Caspase-3 of the rats in the high-dose group was higher than that in the other three groups (both P<0.05). The relative protein expression of ALKBH5 in the hippocampus of the rats in the high-dose group was lower than that in the control group (P<0.05). The relative expression of PTEN protein was higher than those in the control group and low-dose group (both P<0.05). The relative protein expression of AKT2 was lower than those in the control group and low-dose group (both P<0.05). Conclusion Sub-chronic aluminum exposure can inhibit the expression of miR-193a-3p in the hippocampus of rats, which may disrupt the ALKBH5/PTEN/AKT pathway and affect normal neuronal homeostasis and cellular function. This pathway may play an important role in aluminum-induced cognitive impairment.
8.The Regulatory Function of ADAR1-mediated RNA Editing in Hematological Malignancies
Xing-Yu WAN ; Huan-Ping GUO ; Rui-Hao HUANG ; Xiao-Qi WANG ; Ling-Yu ZENG ; Tao WU ; Lin XIA ; Xi ZHANG
Progress in Biochemistry and Biophysics 2024;51(2):300-308
RNA editing, an essential post-transcriptional reaction occurring in double-stranded RNA (dsRNA), generates informational diversity in the transcriptome and proteome. In mammals, the main type of RNA editing is the conversion of adenosine to inosine (A-to-I), processed by adenosine deaminases acting on the RNAs (ADARs) family, and interpreted as guanosine during nucleotide base-pairing. It has been reported that millions of nucleotide sites in human transcriptome undergo A-to-I editing events, catalyzed by the primarily responsible enzyme, ADAR1. In hematological malignancies including myeloid/lymphocytic leukemia and multiple myeloma, dysregulation of ADAR1 directly impacts the A-to-I editing states occurring in coding regions, non-coding regions, and immature miRNA precursors. Subsequently, aberrant A-to-I editing states result in altered molecular events, such as protein-coding sequence changes, intron retention, alternative splicing, and miRNA biogenesis inhibition. As a vital factor of the generation and stemness maintenance in leukemia stem cells (LSCs), disordered RNA editing drives the chaos of molecular regulatory network and ultimately promotes the cell proliferation, apoptosis inhibition and drug resistance. At present, novel drugs designed to target RNA editing(e.g., rebecsinib) are under development and have achieved outstanding results in animal experiments. Compared with traditional antitumor drugs, epigenetic antitumor drugs are expected to overcome the shackle of drug resistance and recurrence in hematological malignancies, and provide new treatment options for patients. This review summarized the recent advances in the regulation mechanism of ADAR1-mediated RNA editing events in hematologic malignancies, and further discussed the medical potential and clinical application of ADAR1.
9.Zuoguiwan Prevent Decreased Ovarian Reserve in Prenatal Stressed Offspring Rats via TLR4/NF-κB p65 Signaling Pathway
Yinjuan LYU ; Weiheng ZHANG ; Siyi CHEN ; Wenjing TIAN ; Jian GONG ; Yuhao MENG ; Huan HE ; Xiaocui JIANG ; Min ZHAO ; Min XIAO
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(17):67-76
ObjectiveTo observe the effect of Zuoguiwan on ovarian reserve in the female offspring rat model of prenatal stress (PS) and explore the mechanism based on Toll-like receptor 4/nuclear factor-κB p65 (TLR4/NF-κB p65) signaling pathway. MethodThirty-two pregnant rats were prepared and randomized into four groups (n=8): control, model, Zuoguiwan (18.9 mg·kg-1), and vitamin E (1.44 mg·kg-1). Except the control group, the other three groups were subjected to chronic unpredictable mild stress (CUMS) from day 11 of pregnancy, and the modeling was accompanied by gavage with corresponding drugs until delivery. The PS model was evaluated by the sucrose preference test, open field test, and serum corticosterone (CORT) level. The estrous cycle was monitored and the morphological changes in the ovarian tissue were observed. The serum levels of estradiol (E2), luteinizing hormone (LH), follicle-stimulating hormone (FSH), and anti-Mullerian hormone (AMH) in the 75-day-old offspring rats were measured by enzyme-linked immunosorbent assay (ELISA) to evaluate the ovarian reserve. The ovary and uterus indices were calculated. The serum levels of interleukin-1β (IL-1β) and tumor necrosis factor-α (TNF-α) were measured by enzyme-linked immunosorbent assay (ELISA). The morphology of the ovarian tissue in the offspring on the day of birth and day 75 after birth was observed by hematoxylin-eosin staining. The transport of NF-κB p65 to the nucleus in the ovaries of the 75-day-old offspring was detected by the immunofluorescence (IF) assay. The expression of TLR4, NF-κB p65 and other related proteins in the ovarian tissue was determined by Western blot. ResultCompared with the control group, the model group showed reduced primordial follicles in the offspring on the day of birth (P<0.01) as well as disturbed estrous cycle, decreased ovary index and uterus index (P<0.01), reduced corpus luteum, increased atretic follicles (P<0.01), lowered serum levels of AMH and E2 (P<0.01), elevated serum levels of LH, FSH, IL-1β, and TNF-α (P<0.05, P<0.01), and up-regulated protein levels of TLR4, NF-κB p65, recombinant myeloid differentiation factor 88 (MyD88), and phosphorylated NF-κB inhibitor (p-IκBα) (P<0.01) in the 75-day-old offspring rats. Compared with the model group, Zuoguiwan and vitamin E increased the primordial follicles in the offspring on the day of birth (P<0.01). Moreover, they resumed the estrous cycle, increased the ovary and uterine indices (P<0.05, P<0.01) and corpus luteum (P<0.01), reduced atretic follicles (P<0.01), elevated the serum levels of AMH and E2 (P<0.05, P<0.01), lowered the serum levels of LH, FSH, IL-1β, and TNF-α (P<0.05, P<0.01), and down-regulated the expression of TLR4, NF-κB p65, MyD88, and p-IκB-α (P<0.05, P<0.01) in the 75-day-old offspring. ConclusionZuoguiwan can improve the ovarian reserve in the offspring rat model of congenital kidney deficiency by regulating the TLR4/NF-κB p65 signaling pathway.
10.Protective effect of coumarin on hydrogen peroxide induced oxidative damage in human ovarian granulosa cells by regulating the Keap1/Nrf2/ARE signaling pathway
Huan QIAN ; Xiao-Yang SHEN ; Fang WANG
The Chinese Journal of Clinical Pharmacology 2024;40(4):554-558
Objective To investigate the improvement effect of coumarin on hydrogen peroxide(H2 O2)induced oxidative damage in human ovarian granulosa cells by regulating the Kelch like ECH associated protein 1(Keap1)/nuclear factor E2 related factor 2(Nrf2)/antioxidant response element(ARE)signaling pathway.Methods The human ovarian granulosa cell line COV434 was grouped into control group(normal culture),model group(0.5 mmol·L-1 H2 O2),coumarin group(0.5 mmol·L-1 H2 O2+320 μmol·L 1 coumarin),suppressor group(0.5 mmol·L-1 H2 O2+10 μmol·L-1 Keap1/Nrf2/ARE pathway inhibitor compound 20c)and combination group(0.5 mmol·L-1 H2O2+320 μmol·L-1coumarin+10 μmol·L-1 compound 20c).Cell counting kit 8(CCK-8)method was applied to detect the optical density(OD)of COV434 cells;2',7'-dichlorodihydrofluorescein diacetate(DCFH-DA)fluorescence probe method was applied to detect intracellular reactive oxygen species(ROS);the levels of superoxide dismutase(SOD)and interleukin-18(IL-18)were detected by enzyme linked immunosorbent assay(ELISA);flow cytometry was applied to detect the apoptosis rate of COV434 cells;Western blot was applied to detect the expression of Keap1,Nrf2.Results OD values of blank group,model group,coumarin group,suppressor group and combination group were 1.53±0.20,0.91±0.10,1.35±0.14,0.56±0.05 and 1.06±0.12;the ROS levels were 1.00±0.00,2.24±0.35,1.18±0.13,3.97±0.58 and 2.09±0.20;the SOD levels were(73.43±9.76),(43.32±5.88),(71.54±8.76),(27.64±3.12)and(52.46±6.45)U·mL-1;the levels of IL-18 were(205.90±20.43),(334.56±35.68),(233.24±24.58),(456.54±47.83)and(301.13±37.64)pg·mL-1;the apoptosis rates were(5.96±0.69)%,(19.62±1.77)%,(8.89±0.97)%,(30.23±3.12)%and(17.65±1.07)%;the Keap1 protein levels were 0.95±0.10,0.66±0.08,0.93±0.09,0.31±0.04 and 0.69±0.07;the Nrf2 protein levels were 1.31±0.12,0.76±0.07,1.25±0.14,0.21±0.02 and 0.90±0.11,respectively.The differences between model group with blank group,between model group with coumarin group,suppressor group,between combination group with coumarin group,were also statistically significant(all P<0.05).Conclusion Coumarin may improve H2 O2-induced oxidative damage in human ovarian granulosa cells by up-regulating the Keap1/Nrf2/ARE signaling pathway.

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