EPCS
- abbr.电子驱动力控制系统(Electronic Propulsion Control System);电子平面转化系统(Electronic Plane Conversion System);电经皮颈(脊神经)背根刺激(Electrical Percutaneous Cervical Stimulation)
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Trend Transplantation of EPCs can be a novel cell-based , endothelium-targeted therapeutic strategy for prevention and treatment of vascular disease and inflammation injury .
趋向内皮祖细胞的移植治疗为血管性疾病和炎症损伤的防治提供一个以细胞为基础,内皮细胞为靶向治疗的新策略。
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Up to the 7th day after isolation , adherent cells were stained with Dil-acLDL and FITC-UEA-1 Lectin to be identified whether they were EPCs .
继续培养至第七天,对贴壁细胞作Dil-acLDL与FITC-UEA-1Lectin双标记,以鉴定是否为内皮祖细胞。
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EPCs in vascular repair and production process plays an important role .
EPCs在血管的修复和生成过程中发挥着重要的作用。
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Compared with the control group , EPCs in experiment groups were decreased .
与对照组相比,注射STZ后EPCs计数均降低。
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If they do have effects on EPCs , we would further study the possible mechanism .
如果确有影响,则进一步探讨可能的机制。
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These results also imply the feedback regulation between EPCs and endothelial cells .
这些结果还为内皮细胞与EPC之间的反馈调控机制提供了新的实验证据。
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In vitro induction of rat bone marrow derived EPCs into endothelial cells
体外诱导大鼠骨髓内皮祖细胞(EPCs)成内皮细胞的实验研究
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Experimental Study on EPCs and MSCs as Seeded Cells of Tissue Engineering Heart Valve
EPCs联合MSCs作为组织工程心脏瓣膜种子细胞实验研究
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The number of EPCs was gradually increased in 1 week , 1,3,6 month groups .
注射STZ1周、1、3、6个月组EPCs计数逐渐升高。
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This paper reviews the application and potential problems with therapeutic use of EPCs in cardiovascular diseases .
现主要综述内皮祖细胞在心血管疾病中的应用及存在问题。
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Construction and transplantation of tissue engineering skin with EPCs in athymic mice
含内皮祖细胞的组织工程皮肤体外构建及裸鼠移植研究
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Effects of Ox-LDL on Function of EPCs and Study Danshensu 's Protective Function
氧化低密度脂蛋白对内皮祖细胞功能的影响及丹参素的保护作用
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EPCs maybe plays an important role in the pathogenesis of diabetic retinopathy .
推测EPC在糖尿病视网膜病变发病机制中起着非常重要的作用。
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Relationship between Circulating EPCs CD34 ~ + Cells and Cardiovascular Risk in Hypertension
循环EPCsCD34~+水平与高血压病患者心血管危险因素的关系
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EPCs locate in the bone marrow and peripheral blood .
EPCs主要位于骨髓和外周血。
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The Relationship of EPCs and Periodontal Tissue Remodeling during Experimental Tooth Movement in Rats
实验性牙移动大鼠血管内皮祖细胞与牙周组织改建的关系
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We also analysed the adhesion and migration function of EPCs after resveratrol interference .
同时测定干预后细胞的粘附和迁移功能。
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With the diabetes development the number , function and the factors for EPCs mobilization are all decreased .
随着糖尿病病程的进展,EPCs的功能及数量都有所下降,促进EPCs动员的因素也减退,从而加重了并发症的进展。
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Among the three sub-groups , the quantity of EPCs from peripheral blood were compared .
测定3个亚组外周血EPCs数量。
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Conclusion EPCs can improve bone forming ability of tissue engineering bone in repairing segmental bone defect .
结论EPCs可以促进组织工程骨修复大段骨缺损时的成骨能力,加速骨愈合。
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Effects and Possible Mechanism of Endothelial Progenitor Cells ( EPCs ) on Transplant Arteriosclerosis
内皮祖细胞(EPCs)对移植性动脉硬化的作用及其机制研究
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EPCs migration was evaluated by using a modified Boyden chamber assay .
用改良的Boyden小室测定EPCs迁移能力。
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Effects and Mechanism of CCNI on EPCs Function during the Repair Process after Vascular Injury
血管损伤修复中CCNI对EPCs功能的影响及其机制研究
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Conclusion VEGF can mobilize EPCs to repair the rat carotid arterial injury .
结论VEGF具有调动EPCs修复大鼠颈总动脉损伤的作用。
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The count of EPCs after injection was decreased .
注射STZ后EPCs计数均降低。
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The numbers of EPCs in peripheral blood of intraperitoneal injection group were significantly increased at different time points .
腹腔注射组各时间点外周血中EPC的数量均显著增加,而结膜下注射组EPC的数量与注射前差异无统计学意义。
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Conclusion EPCs can arrive the injury intima and reduce neointima formation .
结论移植的EPCs可到达内膜损伤部位并参与损伤血管内膜的修复,降低新生内膜增殖。
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So EPCs are exposed to the oxidative stress during the process of repairing endothelial .
因此,参与内皮修复过程的EPCs势必暴露在氧化应激的环境中。
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Adhesion ability of EPCs was basically the same in each group ( P > 0.05 ) .
内皮祖细胞黏附能力检测结果:各组内皮祖细胞黏附能力基本相似(P>0.05)。
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Hypoxia preconditioning can be used as a potential method to enhance the therapeutic efficiency of EPCs implantation .
低氧预刺激可作为提高临床EPCs治疗效能的潜在手段,并需在体实验进一步证实。