Objective To study the protective effect of glutamine on the intestinal mucosal antioxidation in endotoxemic rats. Methods Twenty-eight male Wistar rats were randomly divided into three groups, group A:parenteral nutrition supplemented with glutamine, group B:TPN without glutamine,and group C:normal control. Endotoxemia was induced by continous intravenous infusion of lipopolysaccharide(LPS) at a dose of 2 mg/kg per day throughout the 5-day study period. The mucosal protein、DNA、ATP、SOD、MDA、GSH、sIgA were determined. Results The mucosal protein、DNA、ATP、SOD、GSH and sIgA content in endotoxic rats were markedly decreased, MDA was increased as compared with normal control(P<0.05). The former indices in group A were improved and MDA content was decreased as compared with group B(P<0.05). Conclusion Glutamine can improve gut energy metabolism, decrease the extent of mucosal injury of free radicals, and give an protective effect on the mucosal probably by increasing GSH.
ObjectiveTo explore the antioxidant effects of reduced glutathione on rat pulmonary fibrosis compared with traditional corticosteroid.
MethodsOne-hundred and eight healthy SD rats were randomly divided into 6 groups,ie. a control group,a model group,a dexamethasone group,a low-dose glutathione group,a middle-dose glutathione group,and a high-dose glutathione group,with 18 rats in each group. The pulmonary fibrosis model was established by intratrachially instillation of bleomycin in all rats except the control group. The severity of lung fibrosis was evaluated by HE staining and Masson staining of collagen,and measurement of glutathione,hydroxyproline,superoxide dismutase (SOD),glutathion peroxidase (GSH-Px)in lung tissue homogenate by photocolorimetric method.
ResultsOn 7th day and 14th day after bleomycin instillation, the severity of alveolitis in the model group,the dexamethasone group,and three glutathione intervention groups was significantly reduced compared with the control group (P<0.05). On 28 day, the severity of lung fibrosis was significantly reduced in the dexamethasone group and three glutathione intervention groups compared with the model group (P<0.05). On 7th day,lung glutathione content was significantly lower in the model group compared with the control group (P<0.05), significantly higher in the dexamethasone group and three glutathione intervention groups compared with the model group (P<0.05), significantly lower in the dexamethasone group and the low-dose glutathione group compared with the control group (P<0.05), and significantly higher in the high-dose glutathione group compared with the dexamethasone group (P<0.05). On 7th,14th,and 28th day,the hydroxyproline content in the dexamethasone group and three glutathione intervention groups decreased significantly compared with the model group (P<0.05). On 14th day,the hydroxyproline content in the middle-dose and high-dose glutathione groups was significantly lower than that in the dexamethasone group (P<0.05). SOD and GSH-Px were significantly reduced in the model group compared with the control group on all time points (P<0.05),but significantly increased after intervention by different doses of glutathione (P<0.05).
ConclusionReduced glutathione can significantly reduce the degree of pulmonary fibrosis in rats,but has no obvious advantage over dexamethasone.
The aim of this research is to investigate the influence of microencapsulation on the expression of the oxidative stress genes and exogenous regulation of HepG2 cells. We compared the expression of hemeoxygenase-1 (HO-1) and glutathione S-transferases-A1 (GST-A1) in HepG2 cells under different culture conditions through real-time PCR. The effects of exogenous antioxidants on cell viability and albumin levels were also evaluated through MTT assay and ELISA assay. The results showed that after culturing for 6 and 16 days, the expression levels of HO-1 in encapsulated cells were approximately 4.9 and 3.1 times higher than that of monolayer cells at the same culture period; As for the expression levels of GST-A1, they were elevated to 11.2 and 33 times of monolayer cells (P<0.05). Accordingly, we found that NAC at 5-10 mmol/L significantly increased the viability by 40%-70% and the biosynthetic function by 20%-30% in microencapsulated HepG2 cells (P<0.05). GSH increased the viability of the encapsulated cells by 20%-55% and the biosynthetic function by 15% (P<0.05). In conclusion, oxidative stress exists in the microcapsules and affects genes expression. Exogenous antioxidants can prevent the inhibition effects of oxidative stress on cellular growth.
ObjectiveTo systematically review the association between glutathione S-transferase pi (GSTP1) Ile105Val (A/G) and the risk of cutaneous melanoma.
MethodWe searched PubMed, EMbase, CNKI and WanFang Data to identify case-control studies which investigated the association between GSPT1 Ile105Val (A/G) polymorphism and the risk of cutaneous melanoma from their inception to June 31th 2016. Two reviewers independently screened literature, extracted data and assessed the risk of bias of included studies. Then meta-analysis was performed by using RevMan 5.3 software.
ResultsA total of 4 case-control studies involving 978 cutaneous melanoma cases and 796 controls were included. The results showed that: the GSPT1 Ile105Val (A/G) polymorphism was significantly associated with the risk of cutaneous melanoma in the dominant model (GG+GA vs. AA: OR=1.22, 95%CI 1.01 to 1.48, P=0.04), but no significant association was found in the recessive model, heterozygote model, and homozygote model (GG vs. CA+AA: OR=1.18, 95%CI 0.86 to 1.60, P=0.30; GA vs. AA: OR=1.20, 95%CI 0.98 to 1.47, P=0.08; GG vs. AA: OR=1.28, 95%CI 0.92 to 1.77, P=0.14).
ConclusionCurrent evidence shows, The GSTP1 Ile105Val (A/G) polymorphism is associated with the risk of cutaneous melanoma. Due to limited quantity and quality of the included studies, more high-quality large-scale studies are needed to verify the above conclusion.
Objective To explore changes of 3’-glutamylcysteine synthetase( γ-GCS)and reduced glutathione(GSH)in patients with bronchial asthma.Methods Ten patients with acute asthma were enrolled and treated for six weeks according to guideline recommendations.Levels of -GCS,GSH and malondialdehyde(MDA)in total cells in induced sputum and GSH,MDA,reactive oxygen(ROS)in selum were measured and compared before and after therapy.Ten healthy volunteers were as normal contro1.Meanwhile,the pulmonary function(FEVl%pred)was measured and asthmatic symptoms were quantified using Hogg’s way.Results A.In serum and sputum of the asthma patients,GSH were lower and MDA were higher before treatment than those of the control(Plt;0.01).And -GCS in induced sputumwere higher before treatment than those of contro1.B.After treated for six weeks.levels of GSH in serum and sputum of the asthma patients increased copmpared to baseline(all Plt;0.01),but were still lower than that of control(Plt;0.05).Activities of MDA in serum and sputum and -GCS in sputum were elevated compared to baseline(Plt;0.01),but still higher than that of control(all Plt;0.05).C.Levels of GSH in serum of all patients were correlated negatively witll asthmatic symptom scores and levels of MDA and ROS(r=-0.701,-0.901,-0.878;Plt;0.05,lt;0.01,lt;0.01).There was a positive relationship between levels ofGSH in serum and FEV1%pred(r=0.854,Plt;0.01).In induced sputum,activities of 3’-GCS in all patients was correlated positively with their asthmatic symptom scores and level of MDA f r=0.804,0.926;Plt;0.05,lt;0.叭).Conclusion γ-GCS and GSH may participate the reaction of
Objective To investigate the effects of glutathione (GSH) on survival of the random skin flap in rats and the probable mechanism that contribute to this effect. Methods Twenty SD rats with 200-250 g in weight, were randomly divided into the experimental group and control group(n=10). Random flap of 8 cm×2 cm in size was made on the back of each rat with the pedicel on the angular of the scapular. GSH(250 mg/kg) and NS of the same dose were injected into the abdominal cavity of rats in the experimental groupand the control group immediately after the operative, 1st and 2nd days respectively. The rats were killed on the 7th day after the operation. The tissue pathology, the survival rate of the flap, the superoxide dismutase(SOD) activity and malonyldialdehyde (MDA) level were compared between two groups. Results The mean survival rate of the flap on the 7th day in the experimental group(56.77%±10.67%) was higher than that in the control group(40.16%±7.12%)(Plt;0.05).SOD activity in experimental group (306.06±84.87 U/mgprot)was higher than that in the control group (224.79±27.12 U/mgprot), while MDA level (3.835±0.457 nmol/mgprot)was lower than that in the control group (6.127±0.837 nmol/mgprot)(Plt;0.05). Histological observation showed that the neutrophil infiltration was less in experimental group than that in the control group; that the experimental group was surperior to the control group in angiogenesis, fibroblasts, fair cells and cuaneous gland. Conclusion The intraperitoneal use of GSH may promote the survival rate of the random flaps and the possible mechanism for improvement may lies in that the GSH can reduce the level of oxygen free radical and lipidperoxidation,and lessen neutrophil infiltration.