您的位置: 专家智库 > >

国家教育部博士点基金(20101202110005)

作品数:7 被引量:22H指数:3
相关作者:吴艳娜刘艳霞宋君秋尚曼张琦更多>>
相关机构:天津医科大学东丽医院天津市天和医院更多>>
发文基金:国家教育部博士点基金天津市自然科学基金天津市高等学校科技发展基金计划项目更多>>
相关领域:生物学医药卫生轻工技术与工程农业科学更多>>

文献类型

  • 7篇中文期刊文章

领域

  • 5篇生物学
  • 2篇轻工技术与工...
  • 2篇医药卫生
  • 1篇农业科学

主题

  • 4篇缺血
  • 4篇细胞
  • 4篇MICROV...
  • 2篇心肌
  • 2篇循环血
  • 2篇预适应
  • 2篇再灌注
  • 2篇缺血预适应
  • 2篇微囊
  • 2篇细胞来源
  • 2篇流式细胞
  • 2篇灌注
  • 2篇THORAC...
  • 2篇HYPOXI...
  • 1篇蛋白
  • 1篇心肌保护
  • 1篇心肌缺血
  • 1篇心肌缺血预适...
  • 1篇血小板
  • 1篇荧光

机构

  • 3篇天津医科大学
  • 1篇天津市天和医...
  • 1篇东丽医院

作者

  • 3篇刘艳霞
  • 3篇吴艳娜
  • 2篇王瑶
  • 2篇张琦
  • 2篇尚曼
  • 2篇宋君秋
  • 1篇张森
  • 1篇康毅
  • 1篇张梦晓
  • 1篇刘超
  • 1篇鞠浩爽
  • 1篇尚跃丰
  • 1篇王少勋
  • 1篇罗鹏
  • 1篇韦苏
  • 1篇张琨玮
  • 1篇刘淼
  • 1篇郭媛丽

传媒

  • 5篇中国应用生理...
  • 1篇中国药理学通...
  • 1篇天津医药

年份

  • 2篇2016
  • 1篇2015
  • 2篇2014
  • 1篇2013
  • 1篇2012
7 条 记 录,以下是 1-7
排序方式:
牛磺酸增强渐增再灌注心肌保护作用的实验研究被引量:5
2012年
目的研究牛磺酸对渐增再灌注处理的离体大鼠缺血/再灌注损伤心肌的保护作用。方法采用Langendorff离体心脏灌流法制备离体大鼠心肌缺血/再灌注模型。SD大鼠随机分为7组:正常对照组(Nor)、缺血/再灌注组(I/R)、渐增再灌注组(GR)、牛磺酸低浓度组(T20)、牛磺酸高浓度组(T40)、渐增再灌注联合牛磺酸低浓度组(GT20)、渐增再灌注联合牛磺酸高浓度组(GT40)。记录平衡末及再灌注90min心功能,TTC染色法测定心肌梗死面积,检测冠脉流出液中乳酸脱氢酶(LDH)活性及心肌组织中Caspase-3活性,TUNEL法检测心肌细胞凋亡。结果与缺血/再灌注组比较,GR、牛磺酸能够改善心功能,减少心肌梗死面积,减少LDH漏出,降低心肌Caspase-3活性并减少心肌细胞凋亡;相比单纯应用GR及牛磺酸,渐增再灌注联合牛磺酸的保护作用更强,且GT40组保护作用最强。结论 GR和牛磺酸均能减轻大鼠离体缺血/再灌注心肌的损伤,牛磺酸,特别是高浓度牛磺酸能够增强渐增再灌注对心肌的保护作用,抗凋亡可能是二者发挥心肌保护作用的机制之一。
鞠浩爽尚跃丰罗鹏汪月光张森郭媛丽吴艳娜康毅刘艳霞
关键词:牛磺酸心肌保护CASPASE-3
心肌缺血预适应循环血中微囊泡对大鼠心肌I/R损伤的作用被引量:8
2016年
目的:研究心肌缺血预适应(IPC)大鼠循环血中微囊泡(MVs)对大鼠在体心肌缺血/再灌注(I/R)损伤的作用及相关机制。方法:反复短暂结扎/松开大鼠冠状动脉左前降支建立大鼠IPC模型,自腹主动脉取血,超速离心法分离循环血中的IPC-MVs,并对其进行流式鉴定。建立在体大鼠心肌I/R模型,股静脉注射IPC-MVs 7mg/kg。HE染色观察心肌形态学变化,TTC染色检测心肌梗死范围,TUNEL染色检测心肌细胞凋亡率。比色法测定血清乳酸脱氢酶(LDH)活力,分光光度法测定心肌组织caspase 3活力,Western blot法检测心肌组织Bcl-2、Bax蛋白表达水平。结果:流式细胞术检测IPC-MVs浓度为4380±745个/μl。与I/R组比较,IPC-MVs能够减轻I/R大鼠心肌组织损伤,缩小心肌梗死范围(P<0.01),减少心肌细胞凋亡数量(P<0.01),明显降低血清LDH活力(P<0.01),降低心肌组织caspase 3活力(P<0.01),升高Bcl-2蛋白表达(P<0.01),降低Bax蛋白表达(P<0.01),升高Bcl-2/Bax比值(P<0.01)。结论:IPC-MVs显著减轻大鼠在体心肌I/R损伤,通过上调心肌组织中Bcl-2的蛋白表达,下调Bax的蛋白表达,升高Bcl-2/Bax比值,降低caspase 3活力而发挥心肌保护作用。
王艺璐刘淼尚曼王瑶张琦王少勋韦苏张琨玮刘超吴艳娜宋君秋刘艳霞
关键词:心肌缺血预适应
Iptakalim ameliorates relaxation to acetylcholine in thoracic aortic rings impaired by microvesicles derived from hypoxia/reoxygenation-treated HUVECs被引量:3
2016年
Objective: To investigate the effect of Iptakalim(Ipt) preventing injury of endothelial microvesicles(EMVs) derived from hypoxia/reoxygenation(H/R)-treated HUVECs on the relaxation of rat thoracic aortic rings and explore the underlying mechanism. Methods: H/R injury model was established to release H/R-EMVs from HUVECs. H/R-EMVs from HUVECs were isolated by ultracentrifugation from the conditioned culture medium. H/R-EMVs were characterized by using Transmission Electron Microscope(TEM). Thoracic aortic rings of rats were incubated with 10^(-7)-10^(-3 )mol/L Ipt and co-cultured with 10 μg/ml H/R-EMVs for 4 hours, and their endothelium- dependent relaxation in response to acetylcholine(ACh) was recorded in vitro. The nitric oxide(NO) production of ACh-treated rat thoracic aortic rings was measured by using Griess reagent. The expression of endothelial NO synthase(e NOS), phosphorylated e NOS(p-e NOS, Ser-1177), serine/threonine kinas(Akt) and phosphorylated Akt(p-Akt, Ser-473) in the thoracic aortic rings of rats was detected by Western blotting. Results: H/R-EMVs were induced by H/R-treated HUVECs and isolated by ultracentrifugation. The isolated H/R-EMVs subjected to TEM revealed small, rounded vesicles(100–1 000 nm) surrounded by a membrane. H/R-EMVs impaired relaxation induced by ACh of rat thoracic aortic rings significantly. Compared with H/R-EMVs treatment individually, relaxation and NO production of rat thoracic aortic rings were increased by Ipt treatment in a concentration-dependent manner(P<0.05, P<0.01). The expression of total e NOS(t-e NOS) and total Akt(t-Akt) was not affected by Ipt or H/R-EMVs. However, the expression of p-e NOS and p-Akt increased after treated with Ipt(P<0.01). Conclusion: Based on H/R-EMVs treatment, ACh induced endothelium-dependent relaxation of rat thoracic aortic rings was ameliorated by Ipt in a concentration-dependent manner. The mechanisms involved the increase in NO production, p-e NOS and p-Akt expression.
Kun-wei ZHANGShao-xun WANGYe-yi LISu WEIMan SHANGChao LIUMiao LIUYi-lu WANGQian ZHUYan-na WUJun-qiu SONGYan-xia LIU
Flow cytometric analysis of circulating microvesicles derived from myocardial ischemic preconditioning and cardioprotection of ischemia/reperfusion injury in rats被引量:3
2015年
Objective: To establish a flow cytometric method to detect the alteration of phenotypes and concentration of circulating microvesicles(MVs) from myocardial ischemic preconditioning(IPC) treated rats(IPC-MVs), and to investigate the effects of IPC-MVs on ischemia/reperfusion(I/R) injury in rats. Methods: Myocardial IPC was elicited by three cycles of 5-min ischemia and 5-min reperfusion of the left anterior descending(LAD) coronary artery. Platelet-free plasma(PFP) was isolated through two steps of centrifugation at room temperature from the peripheral blood, and IPC-MVs were isolated by ultracentrifugation from PFP. PFP was incubated with anti-CD61, anti-CD144, anti-CD45 and anti-Erythroid Cells, and added 1, 2 μm latex beads to calibrate and absolutely count by flow cytometry. For functional research, I/R injury was induced by 30-min ischemia and 120-min reperfusion of LAD. IPC-MVs 7 mg/kg were infused via the femoral vein in myocardial I/R injured rats. Mean arterial blood pressure(MAP), heart rate(HR) and ST-segment of electrocardiogram(ECG) were monitored throughout the experiment. Changes of myocardial morphology were observed after hematoxylin-eosin(HE) staining. The activity of plasma lactate dehydrogenase(LDH) was tested by Microplate Reader. Myocardial infarct size was measured by TTC staining. Results: Total IPC-MVs and different phenotypes, including platelet-derived MVs(PMVs), endothelial cell-derived MVs(EMVs), leucocyte-derived MVs(LMVs) and erythrocyte-derived MVs(RMVs) were all isolated which were identified membrane vesicles(<1 μm) with corresponding antibody positive. The numbers of PMVs, EMVs and RMVs were significantly increased in circulation of IPC treated rats(P<0.05, respectively). In addition, at the end of 120-min reperfusion in I/R injured rats, IPC-MVs markedly increased HR(P<0.01), decreased ST-segment and LDH activity(P<0.05, P<0.01). The damage of myocardium was obviously alleviated and myocardial infarct size was significantly lowered after IPC-MVs treatment(P<0.01). Conclusion:
Miao LIUYi-lu WANGMan SHANGYao WANGQi ZHANGShao-xun WANGSu WEIKun-wei ZHANGChao LIUYan-na WUMing-lin LIUJun-qiu SONGYan-xia LIU
关键词:流式细胞仪分析缺血预处理
Microvesicles derived from hypoxia/reoxYgenation-treated human umbilical vein endothellal cells impair relaxation of rat thoracic aortic rings被引量:4
2014年
Objective To investigate the effects of microvesicles(MVs) derived from hypoxia/reoxygenation(H/R)-treated human umbilical vein endothelial cells(HUVECs) on endothelium-dependent relaxation of rat thoracic aortic rings.Methods H/R injury model was established to induce HUVECs to release H/R-EMVs.H/R-EMVs from HUVECs were isolated by ultracentrifugation from the conditioned culture medium.H/R-EMVs were characterized using 1 urn latex beads and anti-PE-CD144 by flow cytometry.Thoracic aortic rings of rats were incubated with 2.5,5,10,20 μg/ml H/R-EMVs derived from H/R-treated HUVECs for 4 hours,and their endothelium-dependent relaxation in response to acetylcholine(ACh) or endothelium-independent relaxation in response to sodium nitroprusside(SNP) was recorded in vitro.The nitric oxide(NO) production of ACh-treated thoracic aortic rings of rats was measured using Griess reagent.The expression of endothelial NO synthase(eNOS) and phosphorylated eNOS(p-eNOS,Ser-1177) in the thoracic aortic rings of rats was detected by Western blotting.Furthermore,the levels of SOD and MDA in H/R-EMVs-treated thoracic aortic rings of rats were measured using SOD and MDA kit.Results H/R-EMVs were induced by H/R-treated HUVECs and isolated by ultracentrifugation.The membrane vesicles(< 1 urn) induced by H/R were CD144 positive.ACh-induced relaxation and NO production of rat thoracic aortic rings were impaired by H/R-EMVs treatment in a concentration-dependent manner(P<0.05,P<0.01).The expression of total eNOS(t-eNOS)was not affected by H/R-EMVs.However,the expression of p-eNOS decreased after treated with H/R-EMVs.The activity of SOD decreased and the level of MDA increased in H/R-EMVs treated rat thoracic aortic rings(P<0.01).Conclusion ACh induced endothelium-dependent relaxation of thoracic aortic rings of rats was impaired by H/R-EMVs in a concentration-dependent manner.The mechanisms included a decrease in NO production,p-eNOS expression and an increase in oxidative stress.
Shao-xun WANGQi ZHANGMan SHANGSu WEIMiao LIUYi-lu WANGMeng-xiao ZHANGYan-na WUMing-lin LIUJun-qiu SONGYan-xia LIU
关键词:细胞来源复氧
Effects of endothelial microvesicles induced by A23187 on H9c2 cardiomyocytes被引量:2
2013年
Objective To investigate the effects of endothelial microvesicles(EMVs) induced by calcium ionophore A23187 on H9c2 cardiomyocytes. Methods Human umbilical vein endothelial cells(HUVECs) were treated with 10 μmol/L A23187 for 30 min. EMVs from HUVECs were isolated by ultracentrifugation from the conditioned culture medium. EMVs were characterized using 1 and 2 μm latex beads and antiPE-CD144 antibody by flow cytometry. For functional research, EMVs at different concentrations were cocultured with H9c2 cardiomyocytes for 6 h. Cell viability of H9c2 cells and the activity of LDH leaked from H9c2 cells were tested by colorimetry. Moreover, apoptosis of H9c2 cells was observed through Hoechst 33258 staining and tested by FITC-Annexin V/PI double staining. Results EMVs were induced by A23187 on HUVECs, and isolated by ultracentrifugation. We identified the membrane vesicles(< 1 μm) induced by A23187 were CD144 positive. In addition, the EMVs could significantly reduce the viability of H9c2 cells, and increase LDH leakage from H9c2 cells in a dose dependent manner(P<0.05). Condensed nuclei could be observed with the increasing concentrations of EMVs through Hoechst 33258 staining. Furthermore, increased apoptosis rates of H9c2 cells could be assessed through FITC-Annexin V/PI double staining by flow cytometry. Conclusion Microvesicles could be released from HUVECs after induced by A23187 through calcium influx, and these EMVs exerted a pro-apoptotic effect on H9c2 cells by induction of apoptosis.
Man SHANGQi ZHANGMeng-xiao ZHANGYao WANGYan CHENYan-na WUJun-qiuSONGMing-lin LIUYan-xia LIU
关键词:流式细胞术检测钙离子载体膜联蛋白V荧光染色
大鼠循环血中血小板和内皮细胞来源微囊泡的检测
2014年
目的建立流式细胞术对大鼠循环血中细胞微囊泡(MVs)的检测方法,并测定心肌缺血预适应(IPC)处理大鼠循环血中血小板来源的MVs(PMVs)及内皮细胞来源的MVs(EMVs)。方法大鼠经腹主动脉取血,枸橼酸钠抗凝,室温下经两步离心获得无血小板血浆(PFP)。PFP中分别加入FITC标记的血小板表面标志物CD61单抗或PE标记的内皮细胞表面标志物CD144单抗,采用1μm标准微球做粒径对照,2μm标准微球用于计数,流式细胞仪进行检测。结果 3.5%枸橼酸钠与血液按体积比1∶4混匀,离心后可得均匀、清亮的上清。PFP中1μm以下粒子信号占全部信号的99%以上。PMVs和EMVs分别为CD61阳性和CD144阳性的粒子,直径均小于1μm。IPC处理大鼠循环血中PMVs、EMVs水平分别为(4 053±1 987)个/μL、(4 870±825)个/μL。结论成功建立和优化了流式细胞术测定大鼠循环血中MVs的方法,并通过对IPC处理大鼠循环血中PMVs和EMVs的测定对MVs的检测方法进行了验证。
张梦晓尚曼张琦王瑶吴艳娜宋君秋刘艳霞
关键词:血小板缺血预适应
共1页<1>
聚类工具0