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在天然生物聚合物薄膜上培养有利于人类肌肉干细胞的静止状态。

Quiescence of human muscle stem cells is favored by culture on natural biopolymeric films.

作者信息

Monge Claire, DiStasio Nicholas, Rossi Thomas, Sébastien Muriel, Sakai Hiroshi, Kalman Benoit, Boudou Thomas, Tajbakhsh Shahragim, Marty Isabelle, Bigot Anne, Mouly Vincent, Picart Catherine

机构信息

CNRS, UMR 5628, LMGP, 3 parvis Louis Néel, F-38016, Grenoble, France.

Université de Grenoble Alpes, Grenoble Institute of Technology, 3 parvis Louis Néel, F-38016, Grenoble, France.

出版信息

Stem Cell Res Ther. 2017 May 2;8(1):104. doi: 10.1186/s13287-017-0556-8.

Abstract

BACKGROUND

Satellite cells are quiescent resident muscle stem cells that present an important potential to regenerate damaged tissue. However, this potential is diminished once they are removed from their niche environment in vivo, prohibiting the long-term study and genetic investigation of these cells. This study therefore aimed to provide a novel biomaterial platform for the in-vitro culture of human satellite cells that maintains their stem-like quiescent state, an important step for cell therapeutic studies.

METHODS

Human muscle satellite cells were isolated from two donors and cultured on soft biopolymeric films of controlled stiffness. Cell adhesive phenotype, maintenance of satellite cell quiescence and capacity for gene manipulation were investigated using FACS, western blotting, fluorescence microscopy and electron microscopy.

RESULTS

About 85% of satellite cells cultured in vitro on soft biopolymer films for 3 days maintained expression of the quiescence marker Pax7, as compared with 60% on stiffer films and 50% on tissue culture plastic. The soft biopolymeric films allowed satellite cell culture for up to 6 days without renewing the media. These cells retained their stem-like properties, as evidenced by the expression of stem cell markers and reduced expression of differentiated markers. In addition, 95% of cells grown on these soft biopolymeric films were in the G0/G1 stage of the cell cycle, as opposed to those grown on plastic that became activated and began to proliferate and differentiate.

CONCLUSIONS

Our study identifies a new biomaterial made of a biopolymer thin film for the maintenance of the quiescence state of muscle satellite cells. These cells could be activated at any point simply by replating them onto a plastic culture dish. Furthermore, these cells could be genetically manipulated by viral transduction, showing that this biomaterial may be further used for therapeutic strategies.

摘要

背景

卫星细胞是静止的驻留肌肉干细胞,具有再生受损组织的重要潜力。然而,一旦它们在体内从其生态位环境中移除,这种潜力就会减弱,从而阻碍了对这些细胞的长期研究和基因研究。因此,本研究旨在提供一种新型生物材料平台,用于体外培养人卫星细胞并维持其干细胞样静止状态,这是细胞治疗研究的重要一步。

方法

从两名供体中分离出人肌肉卫星细胞,并在具有可控刚度的软质生物聚合物薄膜上进行培养。使用流式细胞术、蛋白质免疫印迹法、荧光显微镜和电子显微镜研究细胞黏附表型、卫星细胞静止状态的维持以及基因操作能力。

结果

在软质生物聚合物薄膜上体外培养3天的卫星细胞中,约85%维持静止标记物Pax7的表达,相比之下,在较硬薄膜上为60%,在组织培养塑料上为50%。软质生物聚合物薄膜允许卫星细胞培养长达6天而无需更换培养基。这些细胞保留了它们的干细胞样特性,干细胞标记物的表达和分化标记物表达的降低证明了这一点。此外,在这些软质生物聚合物薄膜上生长的细胞中有95%处于细胞周期的G0/G1期,而在塑料上生长的细胞则被激活并开始增殖和分化。

结论

我们的研究确定了一种由生物聚合物薄膜制成的新型生物材料,用于维持肌肉卫星细胞的静止状态。这些细胞可以通过简单地将它们重新接种到塑料培养皿上在任何时候被激活。此外,可以通过病毒转导对这些细胞进行基因操作,表明这种生物材料可能进一步用于治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21e6/5414338/e4c5dcc3b7f9/13287_2017_556_Fig1_HTML.jpg

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