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find Keyword "Cell apoptosis" 40 results
  • Genistein Regulates bax Gene Expression and Induces Apoptosis in Hepatocellular Carcinoma HepG2 Cells

    【 Abstract 】 Objective To probe into the role of inositol 1, 4, 5-trisphosphate (IP3) and bax gene expression in apoptosis of HepG2 cells induced by genistein (Gen). Methods HepG2 cells were treated with different concentrations including 20, 40, 60 and 80 μ mol/L Gen as HepG2 cells cultured with 0 μmol/L Gen for 72 h was control; HepG2 cells were treated with 60 μmol/L Gen for 6, 12, 24, 48 and 72 h as HepG2 cells treated with 60 μmol/L Gen for 0 h was control. IP3 content, bax mRNA expression and apoptosis rate were assayed by IP3- [ 3H ] Birtrak assay, RT-PCR and flow cytometry, respectively. ResultsHepG2 cells incubated with each concentration of Gen for 72 h , IP3 content was lower than that of control 〔 (17.7 ± 1.3), (11.2 ± 0.9), (4.9 ± 0.5), (4.8 ± 0.3) pmol/106 cells vs (29.4 ± 0.5) pmol/106 cells 〕 , P < 0.01 ; bax mRNA expression (RI which was the gray degree multiply area of bax/the gray degree multiply area of β -actin) was higher than that of control (0.26 ± 0.02, 0.33 ± 0.05, 0.35 ± 0.06, 0.38 ± 0.05 vs 0.09 ± 0.01), P < 0.01 ; The apoptosis rate was higher than that of control 〔 (10.1 ± 0.9)%, (18.7 ± 1.6)%,   (28.7 ± 2.5)%, (27.9 ± 2.0)% vs (2.6 ± 0.1)% 〕 , P < 0.01. HepG2 cells were incubated with 60 μ mol/L Gen for 6, 12, 24, 48 and 72 h , IP3 content was lower than that of control 〔 (22.6 ± 0.9), (12.0 ± 1.4), (7.5 ± 0.8), (5.6 ± 0.5), (4.3 ± 0.6) pmol/106 cells vs (29.2 ± 0.6) pmol/106 cells 〕 , P < 0.01 ; bax mRNA expression was higher than that of control incubated with 60 μ mol/L Gen for above 12 h (0.25 ± 0.06, 0.29 ± 0.02, 0.30 ± 0.02, 0.35 ± 0.04 vs 0.09 ± 0.01), P < 0.01 ; The apoptosis rate in groups incubated with 60 μ mol/L Gen for 24, 48 and 72 h was significantly higher than that in control 〔 (7.4 ± 0.5)%, (20.5 ± 2.0)%, (30.7 ± 1.6)% vs (2.6 ± 0.1)% 〕 , P < 0.01. ConclusionGen induces apoptosis of HepG2 cells by reducing IP3 production and increasing bax gene expression.

    Release date:2016-09-08 11:45 Export PDF Favorites Scan
  • Research Advancement on Gene Therapy for Hepatic Ischemia-Reperfusion Injury

    Objective To summarize recent research advancement on gene therapy for hepatic ischemia-reperfusion injury (IRI). Methods Relevant references about basic and clinical researches of hepatic IRI were collected and reviewed. Results Recent experimental researches indicated that the expression of several genes and cytokines could protect hepatic cells by suppressing cell apoptosis, decreasing the production of oxyradical, remaining and improving portal venous flow, promoting bilifaction, self immunoloregulation and decreasing inflammatory reaction, so that it could decrease IRI. Conclusion IRI could be decreased by regulating the expressing of target genes or transducing relative genes in vivo, but the path of gene transfer and the selection and optimization of gene carrier still need more basic and clinical researches to prove.

    Release date:2016-09-08 10:57 Export PDF Favorites Scan
  • Biological Function of EMMPRIN in Tumor Progression

    ObjectiveTo summarize the biological function of extracellular matrix metalloproteinase inducer (EMMPRIN) in tumor progression, and its roles in clinical diagnosis and treatment in recent years. MethodsLiteratures about the recent studies on molecular structure of EMMPRIN and biological function in tumor progression were reviewed according to the results searched from PubMed database. ResultsEMMPRIN play important roles in the tumor progression, involved in inducing the degradation of extracellula matrix, promoting angiogenesis, inhibiting apoptosis, enhancing chemoresistance and so on. ConclusionEMMPRIN could be a potential therapeutic target in turmor.

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  • CELL APOPTOSIS AND VASCULAR DISEASE

    Objective To study the relationship between cell apoptosis and vascular disease.Methods The paper reviewed the concept, character, gene control and signal transduction of apoptosis associated with vascular disease.Results Cytokine, radiation could induce apoptosis of endothelial cells, and caused vascular damage.The apoptosis of smooth muscle cells was related to the atherosclerosis and restenosis of vessels.Conclusion Cells apoptosis is related to vascular disease significantly.

    Release date:2016-08-28 05:30 Export PDF Favorites Scan
  • The Establishment of Gestational Diabetes and Its Effects on Lung Development

    ObjectiveTo establish a model of fetal hyperglycemia and explore the effects of hyperglycemia on alveolar cell apoptosis,proliferation and the development of lung structure in neonatal rats. MethodsForty SD pregnant rats were randomly divided into a hyperglycemia group (STZ group) and a normal pregnancy group (N group)(n=20 in each group). The rats in STZ group and N group were intraperitoneally injected streptozotocin(STZ,40 mg/kg) or the same bulk of citrate buffer respectively at the 4.5 days after gestation. Blood glucose concentration of the pregnant rats was measured before injection,at the 6.5,11.5,16.5 and 20.5 days after gestation,respectively. The weight,survival rate,lung weight,septal thickness,radical alveolar count,alveolar cell apoptosis and proliferation of neonatal rats were recorded after birth immediately (D0) and at 7 days (D7). ResultsCompared with N group,the blood glucose level increased after intraperitoneal injection of STZ in STZ group (P<0.05). The Survival rate of STZ group was lower than that of N group at D0 and D7 (P=0.00). The neonatal weight,lung weight,septal thickness of STZ group were lower compared with those of N group at D0(P<0.05). However,there was no significant difference between two groups in radical alveolar count. The alveolar apoptosis index of STZ group was higher than that of N group at D0 [(11.8±1.1)% vs. (3.4±0.7)%,P=0.00]. Alveolar cell proliferation significantly increased in STZ group compared with N group at D0 and D7 (P<0.05). ConclusionsThe fetal hyperglycemia model is successfully established by intraperitoneal injection of STZ 40 mg/kg. Fetal hyperglycemia can increase mortality,alveolar cell proliferation and apoptosis,and affect the development of lung structure of neonatal rats.

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  • Role of Tumor Necrosis FactorAlpha Monoclonal Antibody in Cell Apoptosis after Combined Liver and Kidney Transplantation in Rats

    【Abstract】Objective To investigate the potential role of tumor necrosis factoralpha (TNFα) in apoptosis after combined liver and kidney transplantation in rats. MethodsEighty rats which had combined liver and kidney transplantation were randomly paired, were divided into study group (n=20) and control group (n=20). 40 ml of 4 ℃ sodium chloride and antiTNFα monoclonal antibody (30 ml was infused from portal veins to donated livers and 10 ml from renal arteries to donated kidneys) were infused to the study group (0.1 mg/kg weight),and the same quantity of 4 ℃ sodium chloride was infused the control group. Venous blood was drew at different phases after the transplantations to detect the function of kidney and liver. The level of TNFα and the cell apoptosis were detected in the transplanted tissues of liver and kidney by ELISA and terminal deoxynucleotidy transferase mediated dTUPbiotin nickend labeling (TUNEL). ResultsThe levels of AST, ACT, Cr and BUN in the study group were significantly lower than those of the control group at the same phases (P<0.05). The level of TNFα in the transplanted tissues of kidney and liver was also significantly lower as compared with those of control group. The cell apoptosis index of the transplanted tissues of kidney and liver was significantly smaller in the study group (P<0.05). There was no dramatically pathological change in the tissues of transplanted kidney and liver, which were treated with antiTNFα monoclonal antibody, and the structures are almost normal. ConclusionAntiTNFα monoclonal antibody may reduce cell apoptosis and accelerate the restoration of function of liver and kidney after combined liver and kidney transplantation.

    Release date:2016-09-08 11:52 Export PDF Favorites Scan
  • EFFECTS OF CINOBUFAGIN ON APOPTOSIS IN U-2OS OSTEOSARCOMAS CELLS

    ObjectiveTo investigate the effects of cinobufagin on the apoptosis in U-2OS osteosarcomas cells (U-2OS cells) and explore its potential mechanism. MethodsThe cytostatic effects of cinobufagin (10, 20, 50, 100, 200, and 400 nmol/L) on U-2OS cells were evaluated by MTT assay at 24, 48, and 72 hours after culture; simple U-2OS cells served as control group. The impact of cinobufagin (100 nmol/L) on the apoptosis in U-2OS cells was determined by flow cytometry at 48 hours after culture, which were treated with cinobufagin (experimental group) or with cinobufagin plus Z-VAD-FMK (control group), and simple U-2OS cells served as blank control group. The Caspase-3 activity was measured by Caspase-3 activity assay kit at 48 hours after culture, which were treated with cinobufagin (20, 50, and 100 nmol/L), and simple U-2OS cells served as control group.The expression of apoptosis signal pathway related proteins in U-2OS cells treated with cinobufagin were detected by Western blot at 48 hours after culture, which were treated with cinobufagin (20, 50, and 100 nmol/L), and simple U-2OS cells served as control group. ResultsThe results of MTT assay showed that cinobufagin inhibited the proliferation of U-2OS cells in a dose- and time-dependent manners. At each time point, the growth rate of U-2OS cells was significantly reduced with the increasing cinobufagin concentration, and as time prolonged, the growth rate of U-2OS cells behaved the same way in the same group. There were significant differences among different time points and groups (P<0.05). The apoptotic rate of experimental group (46.87%±11.23%) was significantly higher than that of the control group (2.34%±0.98%) and blank control group (1.04%±0.25%) (P<0.05). The Caspase-3 activity in 20, 50, and 100 nmol/L groups were 1.14±0.32, 1.31±0.41, and 1.92±0.54, respectively, which were significantly higher than that in control group (P<0.05). Compared with 20 and 50 nmol/L groups, 100 nmol/L group significantly increased the Caspase-3 activity in U-2OS cells (P<0.05). Compared with the control group, the expressions of cleaved Caspase-3, cleaved Caspase-9, and Bax were obviously up-regulated; the Bcl-2 expression was down-regulated; and the ratio of Bax/Bcl-2 was increased in different cinobufagin-treated groups (P<0.05). The same tendency was seen in different cinobufagin-treated goups, showing significant differences among groups (P<0.05). ConclusionCinobufagin can inhibite the proliferation of U-2OS cells, and induce cell apoptosis. The potential mechanism of cinobufagin-induced apoptosis may be related to the mitochondria-mediated pathway.

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  • Study on the Expression of bcl2 and bax Gene in Cancerous Tissue and Transitional Mucosa in Colorectal Cancer

    ObjectiveTo study the expression of apoptosissuppressing gene (bcl2) and apoptosispromoting gene (bax) in colorectal cancerous tissue and transitional mucosas. MethodsColorectal cancerous tissue, transitional mucosas (3 cm from the cancerous tissue) and normal tissue were taken respectively in thirtyone cases. Immunohistochemical technique SP method was used to detect the expression in those tissues. ResultsThe positive expression rate of bcl2 protein in cancerous tissue and transitional mucosa were 64.5%and 60.0% respectively and significantly higher than that in normal tissue (P<0.05). The positive expression rate of bcl2 protein in normal tissue was 35.0%. The positive expression rate of bax protein in cancerous tissue and transitional mucosa were 45.2%and 45.0% respectively and significantly lower than that in normal mucosa (P<0.05). The positive expression rate of bax protein in normal tissue was 60.0%. There was no obvious difference in the positive rate of bax and bcl2 protein between cancerous tissue and transitional mucosa (Pgt;0.05). The expression rate of bax and bcl2 protein in colorectal cancer was irrelative to clinical pathological gradation and clinical stage (Pgt;0.05). ConclusionThere is over expression of bcl2 protein and low expression of bax protein in colorectal cancer and transitional mucosa. bcl2 protein and bax protein can affect the generation of colorectal cancer by participating in the regulation of apoptosis. But it is irrelative to clinical pathological gradation and clinical stage. Transitional mucosas should be viewed as precancerous lesion and resected during operation.

    Release date:2016-08-28 05:11 Export PDF Favorites Scan
  • Effects on 5-Fluorouracil Induced Apoptosis and Cell Cycle Changes via Blocking Human Equilibrative Nucleoside Transporters in Pancreatic Cancer Cell Membrane

    ObjectiveTo investigate the effects of dipyridamole (DP), one of the human equilibrative nucleoside transporters (hENTs) blockers, on 5-fluorouracil (5-FU) induced cell apoptosis and cell cycle changes of the pancreatic cancer Panc-1 cell line. MethodsPancreatic cancer cell line Panc-1 was divided into hENTs blocked group and hENTs unblocked group. The hENTs blocked group was further divided into two subgroups according to the DP concentration, 5 μmol/L DP group and 10 μmol/L DP group. Each group was incubated in culture medium with or without 1.5×106 ng/L 5-FU for 24 h. Cell apoptosis and cell cycle were detected by flow cytometry. Results①The apoptosis results of each group: Incubated in culture medium with 1.5×106 ng/L 5-FU for 24 h, the apoptosis rates of 5 μmol/L DP group and 10 μmol/L DP group were higer than those of hENTs unblocked group (Plt;0.05), and which of 10 μmol/L DP group was higer than that of 5 μmol/L DP group (Plt;0.05). Incubated in culture medium without 5-FU for 24 h, there were no significant differences of the apoptosis rates among three groups (Pgt;0.05). ②The cell cycle results of each group: Incubated in culture medium with 1.5×106 ng/L 5-FU for 24 h, the percentages of S phase cells in the 5 μmol/L DP group and 10 μmol/L DP group were less than those of hENTs unblocked group (Plt;0.05). The percentage of S phase cell of 5 μmol/L DP group reduced to 87.09% and that of 10 μmol/L DP group reduced to 74.06% as compared with hENTs unblocked group. 5-FU had little influence on G2 phase (Pgt;0.05) except for the percentage of G2 phase cells in the 5 μmol/L DP group increased significantly (Plt;0.05) as compared with the hENTs unblocked group. Incubated in culture medium without 5-FU for 24 h, there were no significant differences of the cell cycles among three groups (Pgt;0.05). ConclusionsIn pancreatic cancer Panc-1 cell, DP could enhance the cytotoxicity of 5-FU by blocking hENTs. The enhanced cytotoxicity is related to elevation of 5-FU concentration in cells, and unrelated to DP itself.

    Release date:2016-09-08 10:40 Export PDF Favorites Scan
  • Effects of Ulinastatin on Renal Apoptosis and Expression of bcl-2 in Rats with Severe Acute Pancreatitis

    Objective To explore the effects of ulinastatin (UTI) on renal apoptosis and expression of bcl-2 in rats with severe acute pancreatitis (SAP). Methods Sixty rats weighing 250-300 g were randomized divided into 3 groups: pseudo-operation group (SO group, n=20), SAP group (n=20) and UTI treated group (UTI group, n=20). The model of SAP was established by retrograde injection of 5% sodium taurocholate solution into the biliopancreatic duct in the rats. Serum Cr and BUN were determined. The left kidneys were resected for light and electronic microscopic study. Renal cell apoptosis was determined by TUNEL. Expression of bcl-2 was detected by immunohistochemical staining of SABC. Results Serum Cr, BUN, renal cell apoptotic index and bcl-2 expression were markedly increased in SAP group compared with SO group (P<0.05, P<0.01), Renal tissue injuries were aggravated in SAP group under light and electronic microscopic study as well. In UTI group, serum Cr, BUN and renal cell apoptotic index were decreased significantly while the expression of bcl-2 increased remarkably and renal tissue injuries relieved compared with SAP group (P<0.05). Positive correlations were found between the renal cell apoptotic index and BUN as well as Cr (r=0.807, P<0.05; r=0.812, P<0.05). Conclusion The protective effect of UTI on SAP renal injury is probably through increasing bcl-2 expression and decreasing apoptosis.

    Release date:2016-08-28 04:08 Export PDF Favorites Scan
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