The adult human heart as a source for stem cells: repair strategies with embryonic-like progenitor cells.

Harald C Ott, Thomas S Matthiesen, Johannes Brechtken, Suzanne Grindle, Saik-Kia Goh, Wendy Nelson, Doris A Taylor
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引用次数: 140

Abstract

Adequate cell-based repair of adult myocardium remains an elusive goal because most cells that are used cannot generate mature myocardium sufficient to promote large functional improvements. Embryonic stem cells can generate both mature cardiocytes and vasculature, but their use is hampered by associated teratoma formation and the need for an allogeneic source. The detection of sca-1(+), c-kit(+), or isl-1(+) cardiac precursors and the creation of cardiospheres from adult heart tissues suggest that a persistent population of immature progenitor cells is present in the mature myocardium. These cell populations probably represent stages along a continuum of cardiac stem cell development and differentiation. We report isolation from ventricle of uncommitted cardiac progenitor cells, which appear to resemble the more immature, common pool of embryonic lateral plate mesoderm progenitors that yield both myocardial and endocardial cells during normal cardiac development. Under controlled in vitro conditions and in vivo, these cells can differentiate into endothelial, smooth muscle, and cardiomyocyte lineages and can be isolated and expanded to clinically relevant numbers from adult rat myocardial tissue. In this article, we discuss the potential for autologous repair or even cardiac regeneration with cells that follow a developmental pathway similar to embryonic cardiac precursors but without the inherent limitations associated with undifferentiated embryonic stem cells.

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成人心脏作为干细胞的来源:胚胎样祖细胞的修复策略。
充分的基于细胞的成人心肌修复仍然是一个难以捉摸的目标,因为大多数使用的细胞不能产生足够的成熟心肌来促进大的功能改善。胚胎干细胞可以产生成熟的心脏细胞和血管系统,但其使用受到相关畸胎瘤形成和对异体来源的需要的阻碍。ca-1(+)、c-kit(+)或il -1(+)心脏前体的检测和成人心脏组织的心球形成表明,成熟心肌中存在持续的未成熟祖细胞群。这些细胞群可能代表了心脏干细胞发育和分化的连续阶段。我们报道了从心室分离的未固定的心脏祖细胞,这些细胞似乎类似于在正常心脏发育过程中产生心肌和心内膜细胞的更不成熟的胚胎侧板中胚层祖细胞。在受控的体外和体内条件下,这些细胞可以分化成内皮细胞、平滑肌细胞和心肌细胞谱系,并可以从成年大鼠心肌组织中分离和扩增到临床相关的数量。在这篇文章中,我们讨论了自体修复甚至心脏再生的潜力,这些细胞遵循类似于胚胎心脏前体的发育途径,但没有与未分化胚胎干细胞相关的固有限制。
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