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猪骨骼肌来源的多能 PW1pos/Pax7neg 间质细胞:分离、鉴定和长期培养。

Porcine skeletal muscle-derived multipotent PW1pos/Pax7neg interstitial cells: isolation, characterization, and long-term culture.

机构信息

Centre of Human and Aerospace Physiological Sciences and Centre for Stem Cells and Regenerative Medicine, School of Biomedical Sciences, King's College London, London, United Kingdom; Stem Cell and Regenerative Biology Unit (BioStem), Research Institute for Sport and Exercise Sciences, Liverpool JM University, Liverpool, United Kingdom; Myology Group, Unité Mixte de Recherche S 787 INSERM, Université Paris VI/Pierre et Marie Curie, Paris, France.

Centre of Human and Aerospace Physiological Sciences and Centre for Stem Cells and Regenerative Medicine, School of Biomedical Sciences, King's College London, London, United Kingdom; Stem Cell and Regenerative Biology Unit (BioStem), Research Institute for Sport and Exercise Sciences, Liverpool JM University, Liverpool, United Kingdom; Myology Group, Unité Mixte de Recherche S 787 INSERM, Université Paris VI/Pierre et Marie Curie, Paris, France

出版信息

Stem Cells Transl Med. 2014 Jun;3(6):702-12. doi: 10.5966/sctm.2013-0174. Epub 2014 Apr 17.

Abstract

Developing effective strategies for the regeneration of solid tissue requires an understanding of the biology underlying the tissue's endogenous repair mechanisms. PW1/Peg3(pos)/Pax7(neg) skeletal muscle-derived interstitial progenitor cells (PICs) were first identified recently in the interstitium of murine skeletal muscle and shown to contribute to muscle fiber regeneration in vivo. PICs, therefore, represent a novel candidate resident progenitor cell for muscle regeneration. To explore the potential of these cells for clinical translation, we must ascertain the presence of PICs in larger mammalian species and identify criteria to successfully isolate and expand this population. In this study, we report the isolation, characterization, and maintenance of multipotent PICs from juvenile porcine skeletal muscle. We show that porcine PICs can be reproducibly isolated from skeletal muscle, express stem/progenitor cell markers, and have a stable phenotype and karyotype through multiple passages. Furthermore, porcine PICs are clonogenic and multipotent, giving rise to skeletal myoblast/myotubes, smooth muscle, and endothelial cells. In addition, PICs can be induced to differentiate into cardiomyocyte-like cells. These results demonstrate, in an animal model with size and physiology extrapolatable to the human, that porcine skeletal muscle-derived PW1(pos)/Pax7(neg) PICs are a source of stem/progenitor cells. These findings open new avenues for a variety of solid tissue engineering and regeneration using a single multipotent stem cell type isolated from an easily accessible source, such as skeletal muscle.

摘要

开发有效的固体组织再生策略需要了解组织内源性修复机制的生物学基础。最近在鼠类骨骼肌间质中首次鉴定出 PW1/Peg3(pos)/Pax7(neg) 骨骼肌衍生间质前体细胞(PICs),并证明其有助于体内肌纤维再生。因此,PICs 代表了一种用于肌肉再生的新型候选驻留祖细胞。为了探索这些细胞用于临床转化的潜力,我们必须确定 PICs 在较大的哺乳动物物种中的存在,并确定成功分离和扩增该群体的标准。在这项研究中,我们报告了从小猪骨骼肌中分离、表征和维持多能 PICs 的方法。我们表明,可以从骨骼肌中可重复地分离出猪 PICs,其表达干细胞/祖细胞标志物,并通过多次传代保持稳定的表型和核型。此外,猪 PICs 具有克隆形成能力和多能性,可以分化为骨骼肌母细胞/肌管、平滑肌和内皮细胞。此外,还可以诱导 PICs 分化为心肌样细胞。这些结果表明,在可外推到人类的大小和生理学的动物模型中,猪骨骼肌衍生的 PW1(pos)/Pax7(neg) PICs 是干细胞/祖细胞的来源。这些发现为使用从容易获得的来源(如骨骼肌)分离出的单一多能干细胞类型进行各种固体组织工程和再生开辟了新途径。

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