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心肌组织来源的心脏祖细胞的卡迪罗球培养法的验证。

Validation of the cardiosphere method to culture cardiac progenitor cells from myocardial tissue.

机构信息

Heart Institute, Cedars-Sinai Medical Center, Los Angeles, California, United States of America.

出版信息

PLoS One. 2009 Sep 25;4(9):e7195. doi: 10.1371/journal.pone.0007195.

Abstract

BACKGROUND

At least four laboratories have shown that endogenous cardiac progenitor cells (CPCs) can be grown directly from adult heart tissue in primary culture, as cardiospheres or their progeny (cardiosphere-derived cells, CDCs). Indeed, CDCs are already being tested in a clinical trial for cardiac regeneration. Nevertheless, the validity of the cardiosphere strategy to generate CPCs has been called into question by reports based on variant methods. In those reports, cardiospheres are argued to be cardiomyogenic only because of retained cardiomyocytes, and stem cell activity has been proposed to reflect hematological contamination. We use a variety of approaches (including genetic lineage tracing) to show that neither artifact is applicable to cardiospheres and CDCs grown using established methods, and we further document the stem cell characteristics (namely, clonogenicity and multilineage potential) of CDCs.

METHODOLOGY/PRINCIPAL FINDINGS: CPCs were expanded from human endomyocardial biopsies (n = 160), adult bi-transgenic MerCreMer-Z/EG mice (n = 6), adult C57BL/6 mice (n = 18), adult GFP(+) C57BL/6 transgenic mice (n = 3), Yucatan mini pigs (n = 67), adult SCID beige mice (n = 8), and adult Wistar-Kyoto rats (n = 80). Cellular yield was enhanced by collagenase digestion and process standardization; yield was reduced in altered media and in specific animal strains. Heparinization/retrograde organ perfusion did not alter the ability to generate outgrowth from myocardial sample. The initial outgrowth from myocardial samples was enriched for sub-populations of CPCs (c-Kit(+)), endothelial cells (CD31(+), CD34(+)), and mesenchymal cells (CD90(+)). Lineage tracing using MerCreMer-Z/EG transgenic mice revealed that the presence of cardiomyocytes in the cellular outgrowth is not required for the generation of CPCs. Rat CDCs are shown to be clonogenic, and cloned CDCs exhibit spontaneous multineage potential.

CONCLUSIONS/SIGNIFICANCE: This study demonstrates that direct culture and expansion of CPCs from myocardial tissue is simple, straightforward, and reproducible when appropriate techniques are used.

摘要

背景

至少有四个实验室已经证明,内源性心脏祖细胞(CPCs)可以直接从成年心脏组织的原代培养物中作为心脏球体或其后代(心脏球体衍生细胞,CDCs)生长。事实上,CDCs 已经在心脏再生的临床试验中进行了测试。然而,基于不同方法的报告对心脏球体策略生成 CPCs 的有效性提出了质疑。在这些报告中,心脏球体被认为具有心肌生成能力,仅仅是因为保留了心肌细胞,而干细胞活性被认为反映了血液学污染。我们使用多种方法(包括遗传谱系追踪)表明,这些方法都不适用于使用既定方法培养的心脏球体和 CDCs,并且我们进一步记录了 CDCs 的干细胞特征(即克隆形成能力和多能性)。

方法/主要发现:从人类心内膜活检组织(n = 160)、成年双转基因 MerCreMer-Z/EG 小鼠(n = 6)、成年 C57BL/6 小鼠(n = 18)、成年 GFP(+) C57BL/6 转基因小鼠(n = 3)、尤卡坦迷你猪(n = 67)、成年 SCID beige 小鼠(n = 8)和成年 Wistar-Kyoto 大鼠(n = 80)中扩增 CPCs。通过胶原酶消化和过程标准化增强细胞产量;改变培养基和特定动物品系会降低产量。肝素化/逆行器官灌注不会改变从心肌样本中产生生长的能力。从心肌样本最初生长的细胞富含 CPCs 的亚群(c-Kit(+))、内皮细胞(CD31(+)、CD34(+))和间充质细胞(CD90(+))。使用 MerCreMer-Z/EG 转基因小鼠的谱系追踪表明,在细胞生长中存在心肌细胞不是生成 CPCs 的必需条件。显示大鼠 CDCs 具有克隆形成能力,克隆的 CDCs 表现出自发的多能性。

结论/意义:这项研究表明,当使用适当的技术时,从心肌组织直接培养和扩增 CPCs 是简单、直接和可重复的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be6/2745677/7f75b0c9eaed/pone.0007195.g001.jpg

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