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Cardioprotective effects of Salvia miltiorrhiza Bunge and Lignum dalbergiae odoriferae on rat myocardial ischemia/reperfusion injury
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《中国药理学通报》 CAS CSCD 北大核心 2015年第B11期168-169,共2页
Aim Salvia miltiorrhiza Bunge (SM) and lignum dalbergiae odoriferae (DO) are both traditional Chi- nese medicine that have cardioprotective effects. Here, we further examined the combined effects of SM and DO on r... Aim Salvia miltiorrhiza Bunge (SM) and lignum dalbergiae odoriferae (DO) are both traditional Chi- nese medicine that have cardioprotective effects. Here, we further examined the combined effects of SM and DO on rat myocardial ischemia/reperfusion injury. The possible mechanism of SM and DO also were elucidated. Methods DO was divided into aqueous extract of lignum dalbergiae odoriferae (DOW) and lignum dalbergiae odoriferae oil (DOO). Sprague-Dawley rats were randomized to seven groups: sham group, model group, treatment groups inclu- ding SM (10 g · kg^-1), DOW (5 g · kg^-1), DOO (0.5 ml · kg^-1), SM + DOW (10 g · kg^-1 + 5 g · kg^-1), SM + DOO ( 10 g · kg^-1 + 0. 5 ml · kg^-1). Rats were pretreated with homologous drug for 7 days and then subjec- ted to 30 rain of ischemia followed by 180 rain of reperfusion. Electrocardiogram (ECG) and heart rate were moni- tored and recorded continuously. At the end of reperfusion, blood samples were collected to determine the serum levels of creatine kinase-MB (CK-MB) and lactate dehydrogenase (LDH). Hearts were harvested to assess heart- body rate, infarct size and histopathological changes as well. Maximum and minimum effective points were deter- mined by measuring indicators associate with myocardial injury at different time-points of reperfusion (Smin, 15min, 30min, 45rain, 60min, 120min, 180min). The potential therapeutic mechanism of SM and SM + DOO were carried out by detecting superoxide dismutase (SOD), malondialdehyde (MDA), tumor necrosis factor-alpha (TNF-alpha) and interleukin 6 (IL-6). Results The results showed SM and DO can ameliorate cardiac function respectively, and this cardioprotective effect was further strengthened by their combinations. Among all the combi- nations, SM + DOO showed predominant potential to improve ECG and heart rate, reduce heart-body rate (28.5% + 1.4% , P 〈 0.01 vs model) and myocardial infarct size ( 20.96% + 1.61% , P 〈 0.01 vs model, P 〈 0.05 vs SM) , attenuate histopathological damage, decrease the levels of CK-MB and LDH (P 〈 0.01 vs model, P 〈 0.05 vs SM). The maximum effective points of SM and SM + DOO were 15min and 30rain respectively, and the minimum effective points of them were 180rain. In reducing serum level of MDA, TNF-alpha, IL-6 and increasing SOD activ- ity, SM + DOO was similar to SM. Conclusion The results of this study indicated that SM + DOO have combined effects that are highly effective than single pretreatment against myocardial ischemie reperfusion injury in rats. The possible mechanism of SM and DO were likely through its anti-oxidant and anti-inflammatory properties, and thus may be an effective and promising medicine for both prophylaxis and treatment of ischemic heart disease. 展开更多
关键词 Keywords:myocardialischemia/reperfusioninjury SalviamiltiorrhizaBunge Lignumdalbergiaeodoriferae the MYOCARDIAL ISCHEMIA/reperfusion INJURY SALVIA miltiorrhiza BUNGE Lignum dalbergiae odoriferae themaximum and minimum effective points ANTI-OXIDANT anti-inflammatory
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Caffeoylquinic acid derivatives extract of Erigeron multiradiatus alleviated acute myocardial ischemia reperfusion injury in rats through inhibiting NF-kappaB and JNK activations 被引量:5
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作者 ZHANG Zhi-feng REN Xue-cong +3 位作者 DONG Geng-ting LUO Pei ZHOU Hua ZHANG Hao 《中国药理学与毒理学杂志》 CSCD 北大核心 2016年第10期1006-1006,共1页
Erigeron multiradiatus(Lindl.)Benth.,has been used in Tibet folk medicine to treat various inflammatory diseases.The aim of this study was to investigate anti-myocardial ischemia and reperfusion(I/R)injury effect of c... Erigeron multiradiatus(Lindl.)Benth.,has been used in Tibet folk medicine to treat various inflammatory diseases.The aim of this study was to investigate anti-myocardial ischemia and reperfusion(I/R)injury effect of caffeoylquinic acids derivatives of E.multiradiatus(AE)in vivo and to explain underling mechanism.AE was prepared using the whole plant of E.multiradiatus and contents of 6 caffeoylquinic acid determined through HPLC analysis.Myocardial I/R were induced by left anterior descending coronary artery occlusion for 30 min followed by 24 h of reperfusion in rats.AE administration(10,20 and 40 mg·kg-1)inhibited I/R-induced injury as indicated by decreasing myocardial infarct size,reducing of CK and LDH activities and preventing ST-segment depression in dose-dependent manner.AE decreased cardiac tissue levels of pro-inflammatory factors TNF-αand IL-6 and attenuated leukocytes infiltration.AE was further demonstrated to significantly inhibit I-κB degradation,nuclear translocation of p-65 and phosphorylation of JNK.Our results suggested that cardioprotective effect of AE could be due to suppressing myocardial inflammatory response and blocking NF-κB and JNK activation pathway.Thus,caffeoylquinic acids might be the active compounds in E.multiradiatus on myocardial ischemia and be a potential natural drug for treating myocardial I/R injury. 展开更多
关键词 Erigeron multiradiatus caffeoylquinic acid myocardial Ischemia reperfusion INFLAMMATION NF-κB JNK
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Ginsenoside Rg1 protects against ischemia reperfusion-induced neurotoxicity through miR-144/Nrf2/ARE pathway 被引量:2
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作者 CHU Shi-feng ZHANG Zhao +2 位作者 ZHOU Xin HE Wen-bin CHEN Nai-hong 《中国药理学与毒理学杂志》 CAS CSCD 北大核心 2018年第9期669-670,共2页
OBJECTIVE Ginsenoside Rg1(Rg1),a purified compound from Panax ginseng,has been well documented to be effective against ischemia/reperfusion(I/R) neurotoxicity.However,the underlying mechanism is stil obscure.METHODS T... OBJECTIVE Ginsenoside Rg1(Rg1),a purified compound from Panax ginseng,has been well documented to be effective against ischemia/reperfusion(I/R) neurotoxicity.However,the underlying mechanism is stil obscure.METHODS The anti-I/R effect of Rg1 were investigated in vitro and in vivo,and the dynamics of nuclear accumulation and the transcriptional activity of NF-E2-related factor 2(Nrf2) determined by Western blotting and Dual Luciferase Reporter Assay,respectively.Nrf2 siRNA was employed to investigate Nrf2′s role in the protective effect of Rg1 against I/R.Furthermore,the role of miR-144,which could regulate post-translational Nrf2 levels,was investigated in the anti-I/R effect of Rg1 by injection of AAV-hypoxia-inducible factor miR-144-shRNA in the predicted ischemic penumbra.RESULTS It was found that the anti-I/R effect of Rg1 was related to its anti-oxidative capacity,which is mainly regulated by the Nrf2/antioxidant response element(ARE) pathway.Further study suggested that Rg1 contributes to the enhancement of the Nrf2/ARE pathway,as manifested by increasing the dynamic peak content of Nrf2,which prolonged the maintenance stage,and promoting the expression of ARE-target genes after oxygen glucose deprivation/reperfusion(OGD/R) in PC12 cells.Nrf2-siRNA application significantly reduced these changes.Furthermore,the enhancement of the Nrf2/ARE pathway by Rg1 was independent of disassociation from Keap1;rather it was a result of posttranslational regulations.It was found that Rg1 significantly reduced the expression of miR-144,which down-regulates Nrf2 production by targeting its 3′-untranslated region,after OGD/R.Knockdown of Nrf2 showed no effect on the expression of miR-144,indicating that miR-144 is an upstream regulator of Nrf2.Moreover,direct binding between Nrf2 and miR-144 in the PC12 cells was identified.Application of anti-miR-144 significantly reduced Rg1′s anti-OGD/R capacity.Final y,the role of miR-144 in Rg1′ s anti-I/R effect was tested by inhibiting miR-144 in the predicted ischemic penumbra when hypoxia-inducible-factor was activated.The results showed that loss of miR-144 abolished the anti-I/R effect of Rg1,which included reduced infarct volume,improved neurological scores,attenuated oxidative impairment,as well as activation of the Nrf2/ARE pathway.CONCLUSION Oxidative stress after I/R is alleviated by Rg1 through inhibition of miR-144 activity and subsequent promotion of the Nrf2/ARE pathway at the post-translational level. 展开更多
关键词 GINSENOSIDE RG1 ISCHEMIA reperfusion NF-E2-related factor 2 antioxidant responseelement miR-144
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Protective effects of imperatorin against cerebral ischemia/reperfusion-induced oxidative stress through Nrf2 signaling pathway in rats 被引量:2
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作者 Wei HE Wei-wei CHEN +2 位作者 Xian-hua HUANG Yu-mei ZHOU Fang LIAO 《中国药理学与毒理学杂志》 CAS CSCD 北大核心 2017年第10期988-988,共1页
OBJECTIVE To investigates the effects of imperatorin on the oxidative stress in the cerebral cortex and hippocampus after focal cerebral ischemia/reperfusion injury.METHODS Transient focal cerebral ischemia/reperfusio... OBJECTIVE To investigates the effects of imperatorin on the oxidative stress in the cerebral cortex and hippocampus after focal cerebral ischemia/reperfusion injury.METHODS Transient focal cerebral ischemia/reperfusion model in male Sprague-Dawley rats was induced by 2 h middle cerebral artery occlusion followed by 24 h reperfusion.Imperatorin(1.25 and 2.5 mg·kg-1)or vehicle were administered intraperitoneally at 1,5 and 9 h after the onset of ischemia.At 24 h after reperfusion,the biomarkers of oxidative stress such as the levels of reactive oxygen species(ROS),lipid peroxidation products malondialdehyde(MDA),nitric oxide(NO)and total antioxidant capacity(T-AOC),the activities of inducible nitric oxide synthase(iN OS),superoxide dismutase(SOD)and catalase(CAT)in the cerebral cortex and hippocampus were observed.We also assessed the nuclear factor erythroid 2-related factor 2(Nrf2),heme oxygenase-1(HO-1),and the NAD(P)H-quinone oxidoreductase 1(NQO-1)protein expression by Western blot.RESULTS As compared to vehicle-treated animals,imperatorin treatment significantly reduced the ROS,MDA,NO levels and i NOS activity,increased T-AOC and the activities of SOD and CAT.Furthermore,imperatorin treatment also significantly induced the nuclear translocation of Nrf2,enhanced the protein expression of HO-1 and NQO-1 in the cerebral cortex and hippocampus.CONCLUSION Our findings indicate that imperatorin can protect the brain against the excessive oxidative stress induced by cerebral ischemia/reperfusion through activation of Nrf2 signaling pathway. 展开更多
关键词 IMPERATORIN cerebral ischemia/reperfusion reactive oxygen species nuclear factor erythroid 2-related factor 2
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Icariside Ⅱ, a PDE5 inhibitor, attenuates cerebral ischemia/reperfusion injury through activating BDNF/TrkB/CREB signaling pathway
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作者 XU Fan LYU Chun +4 位作者 DENG Yan LIU Yuan-gui GONG Qi-hai SHI Jing-shan GAO Jian-mei 《中国药理学与毒理学杂志》 CAS CSCD 北大核心 2018年第9期671-671,共1页
OBJECTIVE To explore the effects and mechanism of icariside Ⅱ(ICS Ⅱ),a pharmacologically active compound derived from herbal Epimedii with previous study-proved phosphodiesterase 5(PDE5) inhibitors,was investigated ... OBJECTIVE To explore the effects and mechanism of icariside Ⅱ(ICS Ⅱ),a pharmacologically active compound derived from herbal Epimedii with previous study-proved phosphodiesterase 5(PDE5) inhibitors,was investigated in vivo using a middle cerebral artery occlusion/reperfusion(MCAO/R) model in rats and in vitro using an oxygen-glucose deprivation/reperfusion(OGD/R) model in primary hippocampal neurons.METHODS Laser Doppler flowmeter was introduced to examine the cerebral blood flow of MCAO/R rats.The neurological deficits scores,brain water content and infarction volume were assessed after MCAO/R.OGD/R-induced primary hippocampal neuronal injury and apoptosis were examined by MTT,lactate dehydrogenase(LDH) release,TUNEL staining and flow cytometry,respectively.Expressions of PDE5 A and memory-related signaling pathways were measured using Western blotting analysis.The direct interaction between ICS Ⅱand PDE5 was further evaluated by molecular docking.RESULTS ICS Ⅱ significantly decreased the infraction volume in MCAO/R rats.Furthermore,ICS Ⅱ significantly abrogated OGD/R-induced hippocampal neuronal death.Moreover,ICSⅡ not only effectively restored the 3′ 5′-cyclic guanosine monophosphate(cGMP) level and protein kinase G(PKG) activity both in vivo and in vitro,but also increased brain-derived neurotrophic factor(BDNF),tyrosine protein kinase B(TrkB) and cAMP response element-binding protein(CREB) expressions,thereby inhibited hippocampal neuronal apoptosis.Mechanistically,the beneficial effects of ICS Ⅱ was attributed to its activation of the PKG/TrkB/BDNF via increasing BDNF expression,evidenced by that the inhibition effects of ICSⅡ was abrogated by Rp-8-BrcGMPS,a PKG inhibitor,or ANA-12,a TrkB inhibitor.ICSⅡ also decreased both protein level and activity of PDE5.Notably,ICSⅡ might effectively bind and inhibite PDE5 as demonstrated by relatively high binding score.CONCLUSION ICSⅡ significantly protect against cerebral ischemia/reperfusion injury in rats and rescues OGD/Rinduced hippocampal neuronal injury,and the underling mechanisms are,at least partly,due to inhibition of PDE5 and activation of BDNF/TrkB/CREB signaling pathway.Hence ICS Ⅱ may be an effective agent for combating cerebral ischemia/reperfusion injury. 展开更多
关键词 icarisideⅡ oxygen-glucose DEPRIVATION reperfusion PHOSPHODIESTERASE 5 apoptosis
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β-arrestin 2 negatively regulates NOD2 mediated inflammatory signaling through the association with TRAF6 in cerebral ischemia-reperfusion injury
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《中国药理学通报》 CAS CSCD 北大核心 2015年第B11期163-164,共2页
We recently reported that nucleotide-binding oligomerization domain (NOD) 2, an important cytoplasmic pattern recognition receptor, is involved in cerebral ischemia-reperfusion (I/R) injury. β-arrestins, in addit... We recently reported that nucleotide-binding oligomerization domain (NOD) 2, an important cytoplasmic pattern recognition receptor, is involved in cerebral ischemia-reperfusion (I/R) injury. β-arrestins, in addition to regulate desensitization of G protein-coupled receptors (GPCRs) , have emerged as potential mediators of innate im- mune activation. However, the role and mechanism of β-arrestin2 in NOD2-triggered signaling in the cerebral I/R remain to be established. Methods BV2 cells were transfected with either β-arrestin2-shRNA plasmid or β-arres- tin2 full-length plasmid and control vector. Middle cerebral artery occlusion (MCAO) was induced in male wild- type mice and in wild type (WT) and β-arrestin2 deficient mice. Results muramyl dipeptide (MDP), an extrin- sic ligand of NOD2, significantly increased the expression of TRAF6 and COX-2 and enhanced the activation of NF- KB in the microglia time-dependently. MDP stimulation also promoted the expression and activation of MMP-9 time- dependently, but did not affect MMP-2 obviously. Additionally, β-arrestin 2 interacted with TRAF6 after MDP stim- ulation rapidly. Overexpression of β-arrestin2 inhibited NF-KB and MMP-9 activation and COX-2 upregulation in- duced by MDP, while silence of β-arrestin2 enhanced NOD2-triggered inflammatory signaling. Finally, Deletion of β-arrestin 2 markedly aggravated brain infarction, neurological deficit and inflammation induced by MDP in mice subjected to MCAO. Conclusion The results provide the first evidence that β-arrestin 2 is an essential negatively regulator of NOD2 triggered inflammatory signaling in the cerebral I/R injury. 展开更多
关键词 Β-ARRESTIN 2 NOD2 cerebral ischemia reperfusion MICROGLIA INNATE immunity inflammation.
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YiQiFuMai powder injection attenuates ischemia/reperfusion-induced myocardial apoptosis through AMPK activation
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《中国药理学通报》 CAS CSCD 北大核心 2015年第B11期50-50,共1页
The YiQiFuMai powder injection ( YQFM), a Traditional Chinese Medicine (TCM) prescription re-de- veloped based on the well-known TCM formula Sheng-maisan, showed a wide range of pharmacological activities in ca... The YiQiFuMai powder injection ( YQFM), a Traditional Chinese Medicine (TCM) prescription re-de- veloped based on the well-known TCM formula Sheng-maisan, showed a wide range of pharmacological activities in cardiovascular diseases in clinic. However, its role in protection against myocardial ischemia/reperfusion (MI/R) injury has not been elucidated. The present study not only evaluated the eardioprotective effect of YQFM from MI/ R injury but also investigated the potential molecular mechanisms in vivo and in vitro. The mouse model of MI/R injury was induced by a transient vessel occlusion for 30 rain and reperfusion for 24 h. The myocardium infarct size, production of lactate dehydrogenase (LDH), creatine kinase (CK), TUNEL staining and easpase-3 activity were measured. AMPKeα and phospho-AMPKα was analyzed by Western blot. We further verified the protective effect and potential molecular mechanisms of YQFM in an in vitro model of simulated ischemia and reperfusion ( SI/ R) in H9c2 cardiomyocytes. Cell viability was determined, and cell apoptosis were measured by Hoechst 33342 staining and Flow cytometry. Mitochondrial membrane potential (△ψFm) was measured, and ATP content was quantified by biolumineseent assay. Expression of apoptosis-related proteins including Caspase-3, Bcl-2, Bax, AMPKα and phospho-AMPKα was analyzed by Western blot. AMPKoL siRNA transfection was also applied to the mechanism elucidation. YQFM significantly reduced myocardium infarct size and the production of LDH, CK in se- rum, and also produced a significant decrease of apoptotic index which was confirmed by TUNEL staining and the changes of caspase-3 activity. In addition, pretreatment with YQFM markedly improved cell viability and decreased LDH release. Moreover, YQFM inhibited H9c2 apoptosis, blocked the expression of easpase-3 and modulated Bcl- 2 and Bax proteins, leading to an increased mitochondrial membrane potential and cellular ATP content. Mechanis- tically, YQFM activated AMPK signaling pathways while pretreatment with AMPK inhibitor compound C and appli- cation of transfection with AMPKα siRNA attenuated the anti-apoptotie effect of YQFM. Our results indicated that YQFM could provide significant cardioproteetion against MI/R injury, and potential mechanisms might to suppres- sion of cardiomyocytes apoptosis at least in part through activating the AMPK signaling pathways. 展开更多
关键词 YiQiFuMai POWDER injection MYOCARDIAL ISCHEMIA/reperfusion apoptosis CARDIOPROTECTION AMPK
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Shengmai injection attenuates ischemia-reperfusion-induced autophagy correlating to modulating AMPK, mTOR and JNK pathways
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《中国药理学通报》 CAS CSCD 北大核心 2015年第B11期139-140,共2页
Aim Shengmai injection (SMI) , a Chinese patent medicine deprived from an ancient Chinese herbal compound Shengmai san, which is used extensively for the treatment of cardiovascular and cerebrovascular disease in cl... Aim Shengmai injection (SMI) , a Chinese patent medicine deprived from an ancient Chinese herbal compound Shengmai san, which is used extensively for the treatment of cardiovascular and cerebrovascular disease in clinic. To determine the neuroprotective effect of SMI, the effect and the relevant mechanism of SMI had been inves- tigated on cerebral ischemia-reperfusion injury in mice. Methods Right middle cerebral artery was occluded by in- serting a thread through intemal carotid artery for 1 h, and then reperfusion for 24 h in mice. Neuroprotective effect was testified using transmission electron microscopic examination, evaluation of infarct volume and neurological defi- cits. Related mechanism was evaluated by western blotting. The SMI was injected intraperitoneally after ischemia for 1 h at doses of 1.42, 2. 84 and 5.68 g · kg^-1. The control group received saline as vehicle of SMI. Results SMI ( 1.42, 2. 84 and 5. 68 g · kg^-1) could significantly reduced the infarct volume, SMI (5.68 g · kg^-1) could signifi- cantly improved the neurological deficits, as well as the neuron's morphology change. SMI (5.68 g · kg^-1) could significantly inhibited the autophagy-related proteins: Beclinl and LC3. SMI (5. 68 g · kg^-1) remarkably inhibited the phosphorylation of adenosine monophosphate activated protein kinase (AMPK), and down-regulated the phospho- rylation of mammalian target of rapamycin (roTOR) and Jun N-terminal kinase (JNK) after 24 h reperfusion. Con-clusion The results indicated that SMI elicits potent protection against cerebral ischemia/reperfusion injury, which may partly be due to the inhibition in autophagy and related signal pathways. 展开更多
关键词 CEREBRAL ISCHEMIA reperfusion NEUROPROTECTION signal PATHWAYS
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Roles of berbamine in the normal and ischemia/reperfusion hearts
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《中国药理学通报》 CAS CSCD 北大核心 2015年第B11期199-200,共2页
Myocardial infarction resulting from coronary atherosclerosis is the leading cause of death in modern soci- ety. Reperfusion is an essential treatment to salvage ischemia myocardium from necrosis, while it also leads ... Myocardial infarction resulting from coronary atherosclerosis is the leading cause of death in modern soci- ety. Reperfusion is an essential treatment to salvage ischemia myocardium from necrosis, while it also leads to addi- tional damage. Therefore, exploring effective medicines to protect the heart from post-ischemic injury is one of the major objectives of cardiovascular research. Berbamine is a nature compound of bisbenzylisochinoline alkaloids from Barberry. We found that it displays positive inotropic and lusitropic effects at lower concentrations by increasing myofilament Ca2+ sensitivity via a PKCe-dependent signaling pathway. Moreover, berbamine preconditioning con- fers cardioprotection against ischemia/reperfusion (I/R) injury by attenuating the Ca2+ overloading and preventing the calpain activation through the activating of PI3K-Akt-GSK3β pathway and subsequently opening of the mitoKATP channel. Furthermore, we demonstrate that berbamine postconditioning conferred the cardioprotective effect against I/R injury by the regulation of autophagy. These findings reveal new roles and mechanisms of berbamine in the heart and cardioprotection against I/R injury. 展开更多
关键词 MYOCARDIAL INFARCTION BERBAMINE POSTCONDITIONING AUTOPHAGY ISCHEMIA/reperfusion injury
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Effects of reduction of Sheng-Nao-Kang decoction in focal cerebral ischemia/reperfusion model rats
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《中国药理学通报》 CAS CSCD 北大核心 2015年第B11期151-151,共1页
Aim Reduction of Sheng-Nao-Kang decoction (RSNK), is a modified traditional Chinese medicinal formula of Sheng-Nao-Kang pill preparation, which is protective in rats against focal cerebral ischemia/reperfusion (I/R... Aim Reduction of Sheng-Nao-Kang decoction (RSNK), is a modified traditional Chinese medicinal formula of Sheng-Nao-Kang pill preparation, which is protective in rats against focal cerebral ischemia/reperfusion (I/R) injury. In the current study, we investigate the protective effect of RSNK against apoptosis and oxidative damage induced by cerebral I/R and explore the underlying mechanisms. Cerebral I/R injury was induced by in- traluminal middle cerebral artery occlusion (MCAO) for 2 h followed by reperfusion for 24 h in adult male Sprague- Dawley rats. Rats were randomized into seven groups (n- 8): Sham group, I/R group, RSNK-treated groups ( 0.7 g · kg ^- 1, 1 . 4 g · kg ^- 1 and 2. 8 g · kg^ - 1 ) , nimodipine (NMP) -treated group and Whitmania pigra Whitman (WW)-treated group. Neurological deficit scores, cerebral humidity content and cerebral infarction volume were measured after the 24 h reperfusion. Malondialdehyde ( MDA), superoxide dismutase ( SOD), catalase ( CAT), inducible nitric oxide synthase (iNOS) and total nitric oxide synthase (TNOS) in serum were measured by assay kits for biochemical analysis. Histological structures of the cortex of the ipsilateral ischemic cerebral hemisphere in rats were observed by Nissl staining. The caspase-3 protein content in the hippocampus and cortex was detected by immunohistochemistry. Additionally, Bax and Bcl-2 protein expressions in the injured brain were evaluated by Western blot. RSNK administration not only markedly improved neurological deficit scores, but also reduced cere- bral humidity content and cerebral infarction volume, lowered MDA content, up-regulated SOD and CAT levels, down-regulated iNOS and TNOS levels, restrained the expression of caspase-3 positive protein and alleviated the Bax and Bcl-2 protein expressions. 展开更多
关键词 reduction of Sheng-Nao-Kang DECOCTION (RSNK) middle CEREBRAL artery occlusion focal CEREBRAL is-chemia/reperfusion injury anti-apoptosis anti-oxidation protect effect.
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Moderate alcohol preconditioning activates BKCa channels to protect brain damage-induced by cerebral ischemia and reperfusion
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作者 ZHAO Yi-Long GUO An-Chen +1 位作者 WANG Yong-Jun WANG Qun 《中国药理学与毒理学杂志》 CAS CSCD 北大核心 2016年第10期1023-1024,共2页
OBJCETIVE Epidemiologic studies have demonstrated that consumption of moderate amounts of red wine is associated with significant reductions in incidences of cardiovascular and cerebrovascular diseases,which may be re... OBJCETIVE Epidemiologic studies have demonstrated that consumption of moderate amounts of red wine is associated with significant reductions in incidences of cardiovascular and cerebrovascular diseases,which may be related to alcohol in red wine.Our previous study demonstrated that ethanol ingestion 24 h prior to induction of cerebral ischemic/reperfusion(I/R)reduced delayed neuronal death(DND).Our most recent results supported a role for big Ca2+-sensitive K+channel(BKCa channel)activation in the neuroprotective effects of ethanol preconditioning(Et OH-PC)in global cerebral I/R.Therefore,we hypothesis that moderate Et OH-PC activates BKCa channel to protect brain damage induced by focal cerebral I/R.This project will utilize focal cerebral I/R animal model to explore the function of BKCa channel in Et OH-PC protection in vivo levels by means of pharmacological intervention such as BKCa channel opene(rNS11021,NS)and blocke(rpaxilline,PX).The results will provide theoretical evidence for neuroprotective effect of moderate alcohol preconditioning against ischemic stroke,and the conclusion will also bring to a concept that extrinsic moderate ethanol preconditioning may activate intrinsic protective mechanism in the brain.METHODS The SD rat were randomly divided into the following six groups(n=10):sham,I/R,Et OH-PC+I/R,NS11021-PC+I/R,paxilline+Et OH-PC+I/R,Paxilline+NS11021-PC+I/R.Both Et OH-PC and NS11021-PC(0.1mg·kg-1;ip)were induced 24 h before I/R.The volume of 95%ethanol to be instilled(inμL)was calculated as follows:〔body weight(g)×0.6〕+0.3.This volume of ethanol was mixed in 0.3 m L of sterile distilled water just before administration to the animals by gavage.The Paxilline(2.5 mg·kg-1;ip)was administered 10min beforeEt OH-PC and NS11021-PC.The right middle cerebral artery occlusion(MCAO)was produced by inversion of a 4-0-nylon filament.The filament was withdrawn 2 h after onset of MCAO and then reperfused.Neurological deficits and infarct volume were measured 24 h after I/R.Another 36 rats were randomly divided into 6 groups as above,6 in each group.DWI were performed 2h after ischemic and T2WI MRI were performed 24 h after I/R to observe the infarct volume of brain and the penumbra volume of brain in each group.Then rats were killed and detected the apoptotic cell death and degeneration of neurons.RESULTS Compared to I/R group,the neurological score(P<0.01),the infarct volume of brain(P<0.01),the infarct volume of ischemic penumbra(P<0.01),the percentage of apoptotic cell death(P<0.01)and the percentage of degenerative neurons(P<0.01)were significantly decreased after ethanol preconditioning,while these changes were reversed by paxilline(P<0.05);compared to I/R group,the neurological score(P<0.01),the infarct volume of brain(P<0.01),the infarct volume of ischemic penumbra(P<0.01),the percentage of apoptotic cell death(P<0.01)and the percentage of degenerative neurons(P<0.01)were significantly decreased after NS11021 preconditioning,while these changes were reversed by paxilline(P<0.05).CONCLUSION Our results show that moderate alcohol preconditioning activates BKCa channels to protect brain damage induced by focal cerebral I/R. 展开更多
关键词 ethanol preconditioning NEUROPROTECTION cerebral ischemia/reperfusion BKCa channels
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Dehydrocostuslactone protects against oxygen-glucose deprivation/reperfusion-induced injury by inhibiting autophagy and apoptosis in PC12 cells
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作者 MA Hui-xia HOU Fan +5 位作者 ZHANG Zheng-jun CHEN Ai-ling ZHU Ya-fei Li Ting-ting ZHANG Xin-hui ZHAO Qi-peng 《中国药理学与毒理学杂志》 CAS 北大核心 2019年第9期692-693,共2页
OBJECTIVE TO investigate the neural protection of dehydrocostus lactone(DHL)against neuronal injury induced by oxygen and glucose deprivation/reperfusion(OGD/R)in differentiated PC12 cells.METHODS We used a cellular m... OBJECTIVE TO investigate the neural protection of dehydrocostus lactone(DHL)against neuronal injury induced by oxygen and glucose deprivation/reperfusion(OGD/R)in differentiated PC12 cells.METHODS We used a cellular model of 2 h of OGD and 24 h of reperfusion to mimic cerebral ischemia-reperfusion injury.Cell viability was used to reflect the degree of OGD/R-induced injury.Cells were treated with DHL during the reperfusion phase.Cell Counting Kit(CCK-8)and LDH assays were performed to determine the optimal dose of DHL and cell viability.Flow cytometry analysis and Monodansylcadaverine(MDC)staining were then conducted to detect apoptosis rate and autophagosome formation after OGD/R in PC12 cells.Immunofluorescence and Western blotting analyses were used to detect the expres⁃sion of proteins associated with autophagy and apoptosis.RESULTS OGD/R significantly decreased cell viability and increased apoptosis rate.The expression levels of autophagy-related proteins,namely,LC3 and Beclin-1,and apoptosisrelated proteins,namely,Bax and caspase-3 increased,but that of the anti-apoptosis Bcl-2 protein decreased.However,DHL attenuated OGD/R-induced neuronal injury through inhibition of apoptosis and autophagy properties by modulating au⁃tophagy-associated proteins(LC3 and Beclin-1)and apoptosis-modulating proteins(caspase-3 and Bcl-2/Bax).CONCLU⁃SION Our data provide an evidence for the neuroprotective effect of DHL against ischemic neuronal injury.Hence,DHL could be a promising candidate for treatment of ischemic stroke. 展开更多
关键词 dehydrocostuslactone oxygen and glucose deprivation/reperfusion APOPTOSIS AUTOPHAGY
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By regulating IP3/PKC/TRPV4 pathway hyperoside induces endothelium-dependent vasodilatation in rat basilar artery following four vessel occlusion ischemia reperfusion
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作者 WANG Shu-fan XU Hang-hang +3 位作者 CHEN Xiao-long WANG Guo-dong ZHENG Yong-qiu HAN Jun 《中国药理学与毒理学杂志》 CAS 北大核心 2019年第9期699-699,共1页
OBJECTIVE To investigate regulatory effects of hyperoside(Hyp)on IP3/PKC/TRPV4 pathway in rat cerebral basilar artery(CBA)subjected to global cerebral ischemia-reperfusion(I/R).METHODS The model of global cerebral I/R... OBJECTIVE To investigate regulatory effects of hyperoside(Hyp)on IP3/PKC/TRPV4 pathway in rat cerebral basilar artery(CBA)subjected to global cerebral ischemia-reperfusion(I/R).METHODS The model of global cerebral I/R in rats was established by four-vessel occlusions methods.The treated rats were administrated with Hyp(50 mg·kg^-1)group,Hyp(50 mg·kg^-1)+HC-067047(10 mg·kg^-1),Hyp(50 mg·kg^-1)+2APB(2 mg·kg^-1),Hyp(50 mg·kg^-1)+BisI(2.5 mg·kg^-1),Hyp(50 mg·kg^-1)+2APB(2 mg·kg^-1)+BisI(2.5 mg·kg^-1).Hematoxylin-eosin(HE)and Nissl staining were performed and the contents of methane dicarboxylic aldehyde(MDA),neuron-specific enolase(NSE),S100β and the activity of lactic dehydrogenase(LDH)in serum were measured by enzyme-linked immunosorbnent assay(ELISA).The specific blocker N-nitro-L-arginine-methyl-ester(L-NAME)and indomethacin(Indo)were used to delete the prostacyclin(PGI2)and nitric oxide(NO)dependent relaxation.The protein expression level of TRPV4 was detected by Western blotting.Ca2+intensity in vascular smooth muscle cells was measured by confocal laser scanning microscope and flow cytometry was performed to observe the apoptosis of CBA endothelial cells after in vivo administration.RESULTS Hyp induced a dose-dependent relaxation of CBA in IR rats via a PGI2 and NO independent manner,as evidenced by alleviated patho⁃logical changes and up-regulated expression of TRPV4 protein in the endothelial cells from cerebral vessels.Hyp signifi⁃cantly reduced the contents of MDA,NSE,S100βand the activity of LDH in serum and decreased the fluorescence intensity of Ca2+in cerebral vascular smooth muscle cells by in vivo administration.The apoptotic rate of endothelial cells in Hyp treated group was significantly less than that in IR group.CONCLUSION Hyp does in fact ameliorate I/R injury by regulatingIP3/PKC/TRPV4 pathway. 展开更多
关键词 HYPEROSIDE ischemic/reperfusion injury cerebral basilar artery IP3/PKC pathway
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Effects of total flavonoids of Rhododendra simsii on ameliorating brain injury via G protein-coupled SOCE pathway mediated by STIM and Orai in subacute phase of ischemia/reperfusion
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作者 LU Jia-jun JIANG Chen-chen +5 位作者 HE Yu-xiang SHI Lei YIN Xiu-yun CHEN Zhuo CAO Di HAN Jun 《中国药理学与毒理学杂志》 CAS 北大核心 2021年第10期768-769,共2页
OBJECTIVE To explore the effect of total flavonoids of Rhododendra simsii(TFR)on improving cerebral ischemia/reperfusion injury(CIRI)and its relationship with STIM/Orai-regulated operational Ca^(2+)influx(SOCE)pathway... OBJECTIVE To explore the effect of total flavonoids of Rhododendra simsii(TFR)on improving cerebral ischemia/reperfusion injury(CIRI)and its relationship with STIM/Orai-regulated operational Ca^(2+)influx(SOCE)pathway.METHODS Oxygen-glucose deprivation/reoxygenation(OGD/R)PC12 cells were used to simulate CIRI in vitro,and the intracellular Ca^(2+)concentration and apoptosis rate of PC12 cells were detected by laser confocal microscope and flow cytometry,respectively.The regulation of STIM/Orai on SOCE was analyzed by STIM/Orai gene silencing and STIM/O rai gene overexpression.The CIRI model was established by MCAO in SD rats.The activities of inflammatory cytokines IL^(-1),IL-6 and TNF-αin serum were detected by ELISA.The pathological changes of ischemic brain tissue and the infarction of rat brain tissue were detected by HE staining and TTC staining.The protein and mRNA expression levels of STIM1,STIM2,Orai1,caspase-3 and PKB in brain tissue were detected by Western blotting and RT-qPCR,respectively.RESULTS The results of in vitro experiment showed that the fluorescence intensity of Ca^(2+)and apoptosis rate in PC12 cells treated with TFR were significantly lower than those in OGD/R group,and this trend was enhanced by SOCE antagonist 2-APB.STIM1/STIM2/Orai1 gene silencing significantly reduced apoptosis and Ca^(2+)overload in OGD/R model,while TFR combined with overexpression of STIM1/STIM2/Orai1 aggravated apoptosis and Ca2+overload.In the in vivo experiment,TFR significantly reduced the brain histopathological damage,infarction of brain tissue,the contents of IL^(-1),IL-6 and TNF-αin the serum in MCAO rats and down-regulated the expression of STIM1,STIM2,Orai1 and caspase-3 protein and mRNA in the brain tissue,and up-regulated the expression of PKB.The above effects were enhanced by the addition of 2-APB.CONCLUSION The above results indicate that TFR may reduce the contents of inflammatory factors and apoptosis,decrease Ca2+overload and ameliorate brain injury by inhibiting SOCE pathway mediated by STIM and Orai,suggesting that it has a protective effect against subacute CIRI. 展开更多
关键词 total flavonoids of Rhododendra simsii cerebral ischemia/reperfusion injury STIM/Orai store-operated calcium entry 2-APB
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Study on potential mechanism of hyperoside on improving ischemia/reperfusion injury based on network pharmacology
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作者 LU Jia-jun JIANG Chen-chen +2 位作者 SHI Lei CAO Di HAN Jun 《中国药理学与毒理学杂志》 CAS 北大核心 2021年第10期769-769,共1页
OBJECTIVE To predict the potential targets of hyperoside(Hyp)on improving ischemia/reperfusion injury by network pharmacology,and explore its possible mechanism combined with related literature.METHODS The action targ... OBJECTIVE To predict the potential targets of hyperoside(Hyp)on improving ischemia/reperfusion injury by network pharmacology,and explore its possible mechanism combined with related literature.METHODS The action targets of Hyp and ischemia/reperfusion injury were obtained by TCMSP,Swiss Target Prediction,Pharm Mapper,Similarity ensemble approach,Online Mendelian Inheritance in Man,DisGENT and database.The common targets of drugs and diseases were screened by Omishare and STRING database respectively,and the protein-protein interaction(PPI)network map was constructed.Then the interaction network between Hyp and disease targets was constructed by Cytoscape software and topological cross-linking analysis was carried out.Then the interaction network between Hyp and disease targets was constructed and cross-linked analysis was carried out by using Cytoscape software.The gene ontology(GO)of the core target was analyzed by David database,and then the related pathways of the core target were enriched by KEGG database.RESULTS A total of 54 GO enrichment processes were obtained by GO enrichment analysis of 44 common genes,including 38 biological processes(BP),15 cell composition(CC)processes,and 1 molecular functional(MF)process.43 items were obtained by signal pathway enrichment analysis in KEGG database.CONCLUSION It is suggested that the mechanism of Hyp may be related to PI3K-Akt,RAP1,RAS,VEGF and other signal transduction pathways.The above results laid a theoretical foundation for the study of the mechanism and clinical application of the treatment of ischemia/reperfusion injury. 展开更多
关键词 HYPEROSIDE ischemia/reperfusion injury network pharmacology
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Neuroprotection of total steroid saponins from Dioscorea zingiberensis C.H.Wright against transient focal cerebral ischemia-reperfusion injury in rats via its anti-inflammatory and anti-apoptotic effects
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作者 ZHANG Xin-xin WANG Xing-bin +2 位作者 ZHAN Guan-qun GUO Zeng-jun XIE Ren-ming 《中国药理学与毒理学杂志》 CAS 北大核心 2019年第9期671-671,共1页
OBJECTIVE The total steroid saponins(TSSN)isolated from Dioscorea zingiberensis C.H.Wright(D.zingiberensis)has shown a variety of beneficial bioactivities.However,there are no reports about the neuroprotective effects... OBJECTIVE The total steroid saponins(TSSN)isolated from Dioscorea zingiberensis C.H.Wright(D.zingiberensis)has shown a variety of beneficial bioactivities.However,there are no reports about the neuroprotective effects of the TSSN until now.Therefore,we explored the neuroprotective effects of TSSN on rats against transient focal cerebral ischemia-reperfusion(I/R)and the underlying mechanisms.METHODS The healthy adult Sprague-Dawley rats were randomly assigned into six groups.After pre-treatment with the TSSN intragastrically for six days,the rats were subjected to the ischemia injury by the surgery of middle cerebral artery occlusion(MCAO)for 90 min.Some indexes were evaluated and detected.RESULTS As compared to the I/R group,TSSN group of rats,especially given the 30 mg·kg^-1 of TSSN,not only marked reduction in the neurological deficit scores,cerebral infarct volume,and brain edema,but also an increase in neuron survival(Nissl bodies)in the hippocampal cornuammons 1(CA1)and cortex hemisphere of the ipsilateral ischemia.At the same time,the inflammatory cytokines in serum induced by MCAO were significantly alleviated by the TSSN pre-administration.What′s more,the increase of caspase-3 was evidently reduced in the CA1 and cortex of the hemisphere injured brain.Finally,the down-regulating anti-apoptotic Bcl-2 and up-regulating pro-apoptotic Bax proteins were obviously suppressed.CONCLUSION TSSN plays a potential neuroprotective role against a severe injury induced by transient focal cerebral ischemic reperfusion in a rat experimental model,and this role may be mediated by its antiinflammatory and anti-apoptotic actions. 展开更多
关键词 total steroid saponins D.zingiberensis ischemic reperfusion
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Progress in protective effect and mechanism of 6-gingerol on myocardial ischemia/reperfusion injury
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作者 MA Yun-feng PAN Fei-bing +1 位作者 ZHANG Dan-shen JING Yong-shuai 《中国药理学与毒理学杂志》 CAS 北大核心 2021年第10期769-770,共2页
The morbidity and mortality of cardiovascular diseases are very high,which has attracted more and more attention all over the world.Common treatment methods for clinical treatment of acute myocardial infarction includ... The morbidity and mortality of cardiovascular diseases are very high,which has attracted more and more attention all over the world.Common treatment methods for clinical treatment of acute myocardial infarction include direct percutaneous coronary intervention and coronary artery bypass grafting,which can quickly restore blocked coronary blood flow and reduce the infarct size.However,the inevitable ischemia/reperfusion injury will occur during the recovery of coronary blood flow,its pathological mechanism is complicated,and the Western medicine countermeasures are very limited.Among the current drugs for the treatment of cardiovascular diseases,traditional Chinese medicine has become a research hotspot due to its multiple targets,safety,and low side effects.Ginger is the fresh rhizome of Zingiber officinale Rosc.,a perennial herbaceous plant in the ginger family.It is a dual-purpose resource of medicine and food.Ginger has the functions of relieving the appearance and dispelling cold,warming up and relieving vomiting,resolving phlegm and relieving cough,and relieving fish and crab poison.The chemical components of ginger mainly include volatile oil,gingerol,diphenylheptane,etc..Among them,6-gingerol,as the main active component of gingerols,has obvious pharmacological effects in myocardial protection,anti-oxidation,anti-inflammatory,etc..Studies have shown that 6-gingerol protects myocardium mainly through anti-oxidative stress,anti-inflammatory,inhibiting cell apoptosis,and preventing calcium influx.①Anti-oxidative stress:oxidative stress is a state where oxidation and anti-oxidation in the body are out of balance,and it is also an important factor leading to myocardial damage.Many studies have confirmed that 6-gingerol has an antioxidant effect,and it is considered a natural antioxidant.6-gingerol can significantly reduce the degree of oxidative stress and the level of reactive oxygen species caused by cardiomyocyte damage,and has a significant cardioprotective effect.②Anti-inflammatory:inflammation can cause substantial cell damage and organ dysfunction,which is another important cause of myocardial damage.6-gingerol can reduce the levels of inflammatory factors such as interleukin-6,interleukin-1β,and tumor necrosis factor-αin cardiomyocytes,and at the same time inhibit the TLR4/NF-κB signaling pathway,an important regulatory pathway of inflammation,showing that it may improve myocardial damage through anti-inflammatory effects.③Inhibition of apoptosis:apoptosis is a complex and orderly process in the autonomous biochemical process of cells,and one of the main mechanisms of myocardial injury.This process can be roughly divided into three pathways:mitochondria,endoplasmic reticulum,and death receptors.Among them,the mitochondrial pathway plays an important role,and Bcl-2 and Bax located upstream of this pathway can regulate the entire process of cell apoptosis by regulating the permeability of the mitochondrial membrane.Studies have found that the preventive application of 6-gingerol can reduce cell damage,reduce the number of apoptotic cells,reduce the activity of Bax and caspase-3,and increase the expression of Bcl-2.Therefore,6-gingerol pretreatment can reduce the damage of cardiomyocytes,and its mechanism may be related to the inhibition of apoptosis.④Prevent calcium influx:calcium overload is involved in the pathogenesis of myocardial ischemic injury,which may be related to excessive contracture,arrhythmia,and mitochondrial Ca2+accumulation that impairs myocardial function.6-gingerol inhibits the increase of intracellular Ca2+concentration by inhibiting L-type calcium current,thereby reducing extracellular Ca2+influx,thereby avoiding calcium overload and playing a cardioprotective effect.In summary,6-gingerol can effectively treat and improve myocardial ischemia/reperfusion injury,and it has great development potential in the fields of medicine and health products. 展开更多
关键词 6-GINGEROL myocardial ischemia/reperfusion injury
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RISK信号通路在β_2-肾上腺素受体激动剂Clenbuterol减轻心肌细胞缺氧/复氧损伤中的作用 被引量:5
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作者 张秋芳 谭艳 +5 位作者 汪选斌 潘龙瑞 李洪亮 刘慧 向继洲 付琴 《中国药理学通报》 CAS CSCD 北大核心 2015年第10期1368-1374,共7页
目的研究β2-肾上腺素受体激动剂clenbuterol对原代培养的心肌细胞缺氧/复氧损伤的作用及其是否与激活再灌注损伤挽救激酶(reperfusion injury salvage kinase,RISK)信号通路有关。方法将原代培养的新生Wistar大鼠乳鼠心肌细胞分为8组,... 目的研究β2-肾上腺素受体激动剂clenbuterol对原代培养的心肌细胞缺氧/复氧损伤的作用及其是否与激活再灌注损伤挽救激酶(reperfusion injury salvage kinase,RISK)信号通路有关。方法将原代培养的新生Wistar大鼠乳鼠心肌细胞分为8组,1正常培养组;2缺氧/复氧(A/R)组;3clenbuterol(1μmol·L-1)+A/R;4ICI118,551(10μmol·L-1)+clenbuterol(1μmol·L-1)+A/R组;5美托洛尔metoprolol(10μmol·L-1)+clenbuterol(1μmol·L-1)+A/R组;6 metoprolol(10μmol·L-1)+A/R组;7 PD98059(20μmol·L-1)+clenbuterol(1μmol·L-1)+A/R组;8LY294002(10μmol·L-1)+clenbuterol(1μmol·L-1)+A/R组。采用MTT法测定各组细胞存活率;比色法检测心肌细胞培养液的乳酸脱氢酶(LDH)含量;Hoechst 33342荧光染色法检测细胞凋亡率;分子探针DCFH-DA检测细胞内活性氧的水平;Western blot检测心肌细胞缺氧/复氧后ERK及p-ERK1/2蛋白的表达水平。结果与A/R组比较,clenbuterol+A/R组明显增高细胞存活率,降低LDH含量,降低细胞凋亡率,ROS产生减少,p-ERK1/2蛋白表达水平增高,而选择性β2受体阻断剂ICI 118,551可取消clenbuterol的上述作用,β1受体阻断剂Metoprolol对clenbuterol的作用无影响,PI3K抑制剂LY294002和ERK1/2抑制剂PD98059可阻断clenbuterol对心肌细胞缺氧/复氧损伤的保护作用。结论clenbuterol能够减轻心肌细胞缺氧/复氧损伤,加入选择性β2受体阻断剂ICI 118,551,PI3K抑制剂LY294002和ERK抑制剂PD98059均使clenbuterol的保护作用取消,表明clenbuterol可通过激动β2肾上腺素受体,激活RISK信号通路发挥抗心肌细胞缺氧/复氧损伤的作用。 展开更多
关键词 CLENBUTEROL 缺氧/复氧 心肌细胞 磷酸化ERK PI3K reperfusion injury SALVAGE kinase(RISK)
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细胞凋亡信号调节激酶1在脊髓缺血再灌注损伤中的作用 被引量:3
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作者 王鹏 殷国勇 +1 位作者 曹晓建 励建安 《中国脊柱脊髓杂志》 CAS CSCD 2007年第9期671-675,I0006,共6页
目的:探讨细胞凋亡信号调节激酶1(apoptosis signal-regulating kinase1,ASK1)在脊髓缺血再灌注损伤中的作用及机制。方法:20只新西兰大白兔随机分成4组,每组5只,分别为对照组(A组)、缺血30min/再灌注15min组(B组)、缺血30min/再灌注1h... 目的:探讨细胞凋亡信号调节激酶1(apoptosis signal-regulating kinase1,ASK1)在脊髓缺血再灌注损伤中的作用及机制。方法:20只新西兰大白兔随机分成4组,每组5只,分别为对照组(A组)、缺血30min/再灌注15min组(B组)、缺血30min/再灌注1h组(C组)、缺血30min/再灌注24h组(D组),脊髓缺血再灌注损伤模型应用腹主动脉阻断法制作。光镜及电镜观察各组脊髓组织病理变化,Westernblot检测脊髓组织中ASK1的蛋白表达及活化情况,免疫共沉淀分析ASK1与14-3-3蛋白间相互作用,免疫组织化学染色观察活化ASK1(pASK1)及14-3-3蛋白在细胞内的定位表达。结果:光镜检查B组的脊髓组织形态学与A组比较无明显改变,C组及D组脊髓间质明显出血,神经细胞肿胀;电镜检查C组及D组神经细胞出现细胞核浓缩、染色质聚边、脱髓鞘改变等早期凋亡征象;Westernblot蛋白电泳显示B组ASK1无明显活化,C组及D组ASK1显著活化;免疫共沉淀分析提示ASK1与14-3-3蛋白在C组及D组发生蛋白分离;免疫组织化学染色显示缺血再灌注时pASK1与14-3-3蛋白均在细胞浆内表达。结论:ASK1介导的凋亡信号转导途径参与脊髓缺血再灌注的损伤过程,14-3-3蛋白与ASK1蛋白的分离可能是导致ASK1活化的机制之一。 展开更多
关键词 缺血再灌注损伤 脊髓 细胞凋亡信号调节激酶1 14-3-3蛋白
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亚低温对局灶脑缺血再灌注损伤作用的实验研究 被引量:5
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作者 黄峰平 周良辅 《中国神经精神疾病杂志》 CAS CSCD 北大核心 1997年第4期222-224,共3页
目的 研究缺血期、再灌注期、缺血持续至再灌注期亚低温对脑缺血再灌注损伤的作用。  方法  3 2只雄性SD鼠采用线段阻塞大脑中动脉的可逆性局灶脑缺血模型 ,缺血 3小时再灌注 72小时后计算各组脑梗塞灶体积。  结果 再灌注后诱... 目的 研究缺血期、再灌注期、缺血持续至再灌注期亚低温对脑缺血再灌注损伤的作用。  方法  3 2只雄性SD鼠采用线段阻塞大脑中动脉的可逆性局灶脑缺血模型 ,缺血 3小时再灌注 72小时后计算各组脑梗塞灶体积。  结果 再灌注后诱导亚低温的治疗作用是有限的 ,缺血期 ,尤其是缺血期持续至再灌注期亚低温能明显减轻脑缺血损伤。  结论 脑缺血再灌注损伤是一个缓慢进展的过程 ,亚低温治疗不但要考虑到低温诱导的时间 。 展开更多
关键词 脑缺血 再灌注损伤 亚低温
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