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去细胞脂肪组织微载体作为一种动态培养平台,用于扩增人脂肪源性干细胞/基质细胞。

Decellularized adipose tissue microcarriers as a dynamic culture platform for human adipose-derived stem/stromal cell expansion.

机构信息

Department of Chemical Engineering, Queen's University, 19 Division St., Kingston, ON, K7L 3N6, Canada; Human Mobility Research Center, Kingston General Hospital, 76 Stuart St., Kingston, ON, K7L 2V7, Canada.

Biomedical Engineering Graduate Program, Claudette MacKay Lassonde Pavilion, The University of Western Ontario, London, ON, N6A 5B9, Canada.

出版信息

Biomaterials. 2017 Mar;120:66-80. doi: 10.1016/j.biomaterials.2016.12.017. Epub 2016 Dec 23.

Abstract

With the goal of designing a clinically-relevant expansion strategy for human adipose-derived stem/stromal cells (ASCs), methods were developed to synthesize porous microcarriers derived purely from human decellularized adipose tissue (DAT). An electrospraying approach was applied to generate spherical DAT microcarriers with an average diameter of 428 ± 41 μm, which were soft, compliant, and stable in long-term culture without chemical crosslinking. Human ASCs demonstrated enhanced proliferation on the DAT microcarriers relative to commercially-sourced Cultispher-S microcarriers within a spinner culture system over 1 month. ASC immunophenotype was maintained post expansion, with a trend for reduced expression of the cell adhesion receptors CD73, CD105, and CD29 under dynamic conditions. Upregulation of the early lineage-specific genes PPARγ, LPL, and COMP was observed in the ASCs expanded on the DAT microcarriers, but the cells retained their multilineage differentiation capacity. Comparison of adipogenic and osteogenic differentiation in 2-D cultures prepared with ASCs pre-expanded on the DAT microcarriers or Cultispher-S microcarriers revealed similar adipogenic and enhanced osteogenic marker expression in the DAT microcarrier group, which had undergone a higher population fold change. Further, histological staining results suggested a more homogeneous differentiation response in the ASCs expanded on the DAT microcarriers as compared to either Cultispher-S microcarriers or tissue culture polystyrene. A pilot chondrogenesis study revealed higher levels of chondrogenic gene and protein expression in the ASCs expanded on the DAT microcarriers relative to all other groups, including the baseline controls. Overall, this study demonstrates the promise of applying dynamic culture with tissue-specific DAT microcarriers as a means of deriving regenerative cell populations.

摘要

为了设计一种针对人类脂肪来源的干细胞/基质细胞(ASCs)的临床相关扩增策略,开发了一种方法来合成纯粹源自人去细胞脂肪组织(DAT)的多孔微载体。采用静电纺丝方法生成具有 428±41μm 平均直径的球形 DAT 微载体,该微载体柔软、顺应性好且在没有化学交联的长期培养中稳定。与商业来源的 Cultispher-S 微载体相比,在旋转培养系统中,人 ASC 在 DAT 微载体上的增殖增强,在 1 个月的时间内。ASC 免疫表型在扩增后得到维持,在动态条件下,细胞黏附受体 CD73、CD105 和 CD29 的表达呈下降趋势。在 DAT 微载体上扩增的 ASC 中观察到早期谱系特异性基因 PPARγ、LPL 和 COMP 的上调,但细胞保留了其多能分化能力。比较在预先用 DAT 微载体或 Cultispher-S 微载体扩增的 ASC 制备的 2-D 培养物中的成脂和成骨分化,发现在 DAT 微载体组中观察到相似的成脂和成骨标记物表达和增强,其经历了更高的群体倍增变化。此外,组织学染色结果表明,与 Cultispher-S 微载体或组织培养聚苯乙烯相比,在 DAT 微载体上扩增的 ASC 具有更均匀的分化反应。一项初步的软骨生成研究表明,与所有其他组(包括基线对照)相比,在 DAT 微载体上扩增的 ASC 中软骨生成基因和蛋白表达水平更高。总的来说,这项研究表明应用具有组织特异性的 DAT 微载体的动态培养作为衍生再生细胞群体的一种方法具有前景。

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