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血液来源的人类成人内皮祖细胞向功能活跃的心肌细胞的转分化。

Transdifferentiation of blood-derived human adult endothelial progenitor cells into functionally active cardiomyocytes.

作者信息

Badorff Cornel, Brandes Ralf P, Popp Rüdiger, Rupp Stefan, Urbich Carmen, Aicher Alexandra, Fleming Ingrid, Busse Rudi, Zeiher Andreas M, Dimmeler Stefanie

机构信息

Molecular Cardiology, Department of Internal Medicine IV, University of Frankfurt, Frankfurt, Germany.

出版信息

Circulation. 2003 Feb 25;107(7):1024-32. doi: 10.1161/01.cir.0000051460.85800.bb.

Abstract

BACKGROUND

Further to promoting angiogenesis, cell therapy may be an approach for cardiac regeneration. Recent studies suggest that progenitor cells can transdifferentiate into other lineages. However, the transdifferentiation potential of endothelial progenitor cells (EPCs) is unknown.

METHODS AND RESULTS

EPCs were obtained from peripheral blood mononuclear cells of healthy adults or coronary artery disease (CAD) patients by cultivating with endothelial cell medium and growth factors. After 3 days, >95% of adherent cells were functionally and phenotypically EPCs. Diacetylated LDL-labeled EPCs were then cocultivated with rat cardiomyocytes for 6 days, resulting in significant increases of EPC cell length and size to a cardiomyocyte-like morphology. Biochemically, 9.94+/-1.39% and 5.04+/-1.09% of EPCs from healthy adults (n=15) or CAD patients (n=14, P<0.01 versus healthy adults), respectively, expressed alpha-sarcomeric actinin as measured by flow cytometry. Immunocytochemistry showed that human EPCs expressed alpha-sarcomeric actinin, cardiac troponin I (both with partial sarcomeric organization), atrial natriuretic peptide, and myocyte enhancer factor 2. Fluo 4 imaging demonstrated calcium transients synchronized with adjacent rat cardiomyocytes in transdifferentiated human EPCs. Single-cell microinjection of Lucifer yellow and calcein-AM labeling of cardiomyocytes demonstrated gap junctional communication between 51+/-7% of EPCs (16 hours after labeling, n=4) and cardiomyocytes. EPC transdifferentiation into cardiomyocytes was not observed with conditioned medium but in coculture with paraformaldehyde-fixed cardiomyocytes.

CONCLUSIONS

EPCs from healthy volunteers and CAD patients can transdifferentiate in vitro into functionally active cardiomyocytes when cocultivated with rat cardiomyocytes. Cell-to-cell contact but not cellular fusion mediates EPC transdifferentiation. The therapeutic use of autologous EPCs may aid cardiomyocyte regeneration in patients with ischemic heart disease.

摘要

背景

除促进血管生成外,细胞治疗可能是一种心脏再生的方法。最近的研究表明祖细胞可转分化为其他谱系。然而,内皮祖细胞(EPCs)的转分化潜能尚不清楚。

方法与结果

通过在内皮细胞培养基和生长因子中培养,从健康成年人或冠心病(CAD)患者的外周血单个核细胞中获取EPCs。3天后,>95%的贴壁细胞在功能和表型上为EPCs。然后将二乙酰化低密度脂蛋白标记的EPCs与大鼠心肌细胞共培养6天,导致EPC细胞长度和大小显著增加,呈现出类似心肌细胞的形态。生化分析显示,通过流式细胞术检测,健康成年人(n = 15)的EPCs中有9.94±1.39%,CAD患者(n = 14,与健康成年人相比P < 0.01)的EPCs中有5.04±1.09%表达α-肌动蛋白。免疫细胞化学显示人EPCs表达α-肌动蛋白、心肌肌钙蛋白I(两者均有部分肌节组织)、心钠素和肌细胞增强因子2。Fluo 4成像显示转分化的人EPCs中钙瞬变与相邻大鼠心肌细胞同步。对心肌细胞进行荧光黄单细胞显微注射和钙黄绿素-AM标记显示,51±7%的EPCs(标记后16小时,n = 4)与心肌细胞之间存在缝隙连接通讯。用条件培养基未观察到EPCs转分化为心肌细胞,但与多聚甲醛固定的心肌细胞共培养时可观察到。

结论

健康志愿者和CAD患者的EPCs与大鼠心肌细胞共培养时可在体外转分化为功能活跃的心肌细胞。细胞间接触而非细胞融合介导EPCs转分化。自体EPCs的治疗应用可能有助于缺血性心脏病患者的心肌细胞再生。

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