AIM: To observe changes of mitochondria and investigate the effect of ethanol on mitochondrial perme- ability transition pore (PTP), mitochondrial membrane potential (MMP, ΔΨm) and intracellular calcium concentratio...AIM: To observe changes of mitochondria and investigate the effect of ethanol on mitochondrial perme- ability transition pore (PTP), mitochondrial membrane potential (MMP, ΔΨm) and intracellular calcium concentration in hepatocytes by establishing an animal model of alcoholic liver disease (ALD). METHODS: Fourty adult male Wistar rats were randomly divided into two groups, the model group (20) was administered alcohol intragastrically plus an Oliver oil diet to establish an ALD model, and the control group (20) was given an equal amount of normal saline. The ultramicrostructural changes of mitochondria were observed under electron microscopy. Mitochondria of liver was extracted, and patency of PTP, mitochondrial membrane potential (ΔΨm), mitochondrial mass and intracellular calcium concentration of isolated hepacytes were detected by flow cytometry using rhodamine123 (Rh123), Nonyl-Acridine Orange and calcium fluorescent probe Fluo-3/AM, respectively. RESULTS: Membrane and cristae were broken or disappeared in mitochondria in different shapes under electron microscopy. Some mitochondria showed U shape or megamitochondrion. In the model group, liver mitochondria PTP was broken, and mitochondria swelled, the absorbance at 450 nm, A540 decreased (0.0136 ± 0.0025 vs 0.0321 ± 0.0013, model vs control, P < 0.01); mitochondria transmembrane potential (239.4638 ± 12.7263 vs 377.5850 ± 16.8119, P < 0.01) was lowered; mitochondrial mass (17.4350 ± 1.9880 vs 31.6738 ± 3.4930, P < 0.01); and [Ca2+]i was increased in liver cells (7.0020 ± 0.5008 vs 10.2050 ± 0.4701, P < 0.01).CONCLUSION: Chronic alcohol intake might lead to broken mitochondria PTP, decreased mitochondria membrane potential and injury, and elevated intracellular Ca2+ production. Ethanol-induced chondriosome injury may be an important mechanism of alcoholic diseases.展开更多
BACKGROUND:Sepsis-induced myocardial injury is one of the major predictors of morbidity and mortality of sepsis.The cytoprotective function of erythropoietin(EPO) has been discovered and extensively studied.However,th...BACKGROUND:Sepsis-induced myocardial injury is one of the major predictors of morbidity and mortality of sepsis.The cytoprotective function of erythropoietin(EPO) has been discovered and extensively studied.However,the cardioprotective effects of EPO on sepsis-induced myocardial injury in the rat sepsis model has not been reported.METHODS:The rat models of sepsis were produced by cecal ligation and perforation(CLP)surgery.Rats were randomly(random number) assigned to one of three groups(n=8 for each group):sham group,CLP group and EPO group(1000 lU/kg erythropoietin).Arterial blood was withdrawn at3,6,12,and 24 hours after CLP.cTnl,BNP,CK-MB,LDH,AST,TNF-a,IL-6,IL-10,and CRP were tested by the ELISA assay.Changes of hemodynamic parameters were recorded at 3,6,12,24 hours after the surgery.Histological diagnosis was made by hematoxylin and eosin.Flow cytometry was performed to examine cell apoptosis,myocardium mitochondrial inner membrane potential,and NF-κB(p65).Survival rate at 7 days after CLP was recorded.RESULTS:In the CLP group,myocardial enzyme index and inflammatory index increased at3,6,12 and 24 hours after CLP compared with the sham group,and EPO significantly blocked the increase.Compared with the CLP group,EPO significantly improved LVSP,LV +dpldt_(max) LV-dp/dt_(min),and decreased LVEDP at different time.EPO blocked the reduction of mitochondrial transmembrane potential,suppressed the cardiomyocyte apoptosis,inhibited the activation of NF-κB,and reduced the production of proinflmmatory cytokines.No difference in the survival rate at 7 days was observed between the CLP group and the EPO group.CONCLUSION:Exogenous EPO has cardioprotective effects on sepsis-induced myocardial injury.展开更多
基金Supported by Natural Science Foundation of Shandong Province, No. 032050113
文摘AIM: To observe changes of mitochondria and investigate the effect of ethanol on mitochondrial perme- ability transition pore (PTP), mitochondrial membrane potential (MMP, ΔΨm) and intracellular calcium concentration in hepatocytes by establishing an animal model of alcoholic liver disease (ALD). METHODS: Fourty adult male Wistar rats were randomly divided into two groups, the model group (20) was administered alcohol intragastrically plus an Oliver oil diet to establish an ALD model, and the control group (20) was given an equal amount of normal saline. The ultramicrostructural changes of mitochondria were observed under electron microscopy. Mitochondria of liver was extracted, and patency of PTP, mitochondrial membrane potential (ΔΨm), mitochondrial mass and intracellular calcium concentration of isolated hepacytes were detected by flow cytometry using rhodamine123 (Rh123), Nonyl-Acridine Orange and calcium fluorescent probe Fluo-3/AM, respectively. RESULTS: Membrane and cristae were broken or disappeared in mitochondria in different shapes under electron microscopy. Some mitochondria showed U shape or megamitochondrion. In the model group, liver mitochondria PTP was broken, and mitochondria swelled, the absorbance at 450 nm, A540 decreased (0.0136 ± 0.0025 vs 0.0321 ± 0.0013, model vs control, P < 0.01); mitochondria transmembrane potential (239.4638 ± 12.7263 vs 377.5850 ± 16.8119, P < 0.01) was lowered; mitochondrial mass (17.4350 ± 1.9880 vs 31.6738 ± 3.4930, P < 0.01); and [Ca2+]i was increased in liver cells (7.0020 ± 0.5008 vs 10.2050 ± 0.4701, P < 0.01).CONCLUSION: Chronic alcohol intake might lead to broken mitochondria PTP, decreased mitochondria membrane potential and injury, and elevated intracellular Ca2+ production. Ethanol-induced chondriosome injury may be an important mechanism of alcoholic diseases.
基金supported by a grant from the National Natural Science Foundation of China(81070122)
文摘BACKGROUND:Sepsis-induced myocardial injury is one of the major predictors of morbidity and mortality of sepsis.The cytoprotective function of erythropoietin(EPO) has been discovered and extensively studied.However,the cardioprotective effects of EPO on sepsis-induced myocardial injury in the rat sepsis model has not been reported.METHODS:The rat models of sepsis were produced by cecal ligation and perforation(CLP)surgery.Rats were randomly(random number) assigned to one of three groups(n=8 for each group):sham group,CLP group and EPO group(1000 lU/kg erythropoietin).Arterial blood was withdrawn at3,6,12,and 24 hours after CLP.cTnl,BNP,CK-MB,LDH,AST,TNF-a,IL-6,IL-10,and CRP were tested by the ELISA assay.Changes of hemodynamic parameters were recorded at 3,6,12,24 hours after the surgery.Histological diagnosis was made by hematoxylin and eosin.Flow cytometry was performed to examine cell apoptosis,myocardium mitochondrial inner membrane potential,and NF-κB(p65).Survival rate at 7 days after CLP was recorded.RESULTS:In the CLP group,myocardial enzyme index and inflammatory index increased at3,6,12 and 24 hours after CLP compared with the sham group,and EPO significantly blocked the increase.Compared with the CLP group,EPO significantly improved LVSP,LV +dpldt_(max) LV-dp/dt_(min),and decreased LVEDP at different time.EPO blocked the reduction of mitochondrial transmembrane potential,suppressed the cardiomyocyte apoptosis,inhibited the activation of NF-κB,and reduced the production of proinflmmatory cytokines.No difference in the survival rate at 7 days was observed between the CLP group and the EPO group.CONCLUSION:Exogenous EPO has cardioprotective effects on sepsis-induced myocardial injury.