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使用球体(3D)和贴壁(2D)脂肪干细胞的基因表达分析进行细胞质量评估。

Cell quality evaluation with gene expression analysis of spheroids (3D) and adherent (2D) adipose stem cells.

机构信息

BIOPLAST-Laboratory of BIOlogy and Regenerative Medicine-PLASTic Surgery, Plastic and Reconstructive Surgery, Department of Surgical, Oncological and Oral Sciences, University of Palermo, 90127 Palermo, Italy.

BIOPLAST-Laboratory of BIOlogy and Regenerative Medicine-PLASTic Surgery, Plastic and Reconstructive Surgery, Department of Surgical, Oncological and Oral Sciences, University of Palermo, 90127 Palermo, Italy.

出版信息

Gene. 2021 Feb 5;768:145269. doi: 10.1016/j.gene.2020.145269. Epub 2020 Oct 24.

Abstract

Adipose stem cells (ASCs) represent a reliable source of stem cells with a widely demonstrated potential in regenerative medicine and tissue engineering applications. New recent insights suggest that three-dimensional (3D) models may closely mimic the native tissue properties; spheroids from adipose derived stem cells (SASCs) exhibit enhanced regenerative abilities compared with those of 2D models. Stem cell therapy success is determined by "cell-quality"; for this reason, the involvement of stress signals and cellular aging need to be further investigated. Here, we performed a comparative analysis of genes connected with stemness, aging, telomeric length and oxidative stress, in 3D and 2D primary cultures. The expression levels of stemness-related markers and anti-aging Sirtuin1 were significantly up-regulated (P < 0.001) in SASCs-3D while gene expression of aging-related p16INK4a was increased in ASCs-2D (P < 0.001). The 3D and 2D cultures also had a different gene expression profile for genes related to telomere maintenance (Shelterin complex, RNA Binding proteins and DNA repair genes) (P < 0.01 and P < 0.001) and oxidative stress (aldehyde dehydrogenase class1 and 3) (P < 0.05, P < 0.01 and P < 0.001) and presented a striking large variation in their cellular redox state. Based on our findings, we propose a "cell quality" model of SASCs, highlighting a precise molecular expression of several genes involved with stemness (SOX2, POU5F1 and NANOG), anti-aging (SIRT1), oxidative stress (ALDH3) and telomeres maintenance.

摘要

脂肪干细胞(ASCs)是一种可靠的干细胞来源,在再生医学和组织工程应用中具有广泛的应用潜力。新的研究表明,三维(3D)模型可以更紧密地模拟天然组织特性;与 2D 模型相比,脂肪来源的干细胞(SASCs)球体表现出增强的再生能力。干细胞治疗的成功取决于“细胞质量”;因此,需要进一步研究应激信号和细胞衰老的参与。在这里,我们对与干细胞特性、衰老、端粒长度和氧化应激相关的基因在 3D 和 2D 原代培养物中的进行了比较分析。3D 培养的 SASCs 中与干细胞特性相关的标记物和抗衰老 Sirtuin1 的表达水平显著上调(P < 0.001),而 2D 培养的 ASCs 中与衰老相关的 p16INK4a 的基因表达增加(P < 0.001)。3D 和 2D 培养物中与端粒维持相关的基因(Shelterin 复合物、RNA 结合蛋白和 DNA 修复基因)(P < 0.01 和 P < 0.001)和氧化应激(醛脱氢酶 1 类和 3 类)(P < 0.05、P < 0.01 和 P < 0.001)的基因表达谱也不同,并且其细胞氧化还原状态存在显著差异。基于我们的发现,我们提出了一个 SASCs 的“细胞质量”模型,突出了几个与干细胞特性(SOX2、POU5F1 和 NANOG)、抗衰老(SIRT1)、氧化应激(ALDH3)和端粒维持相关的基因的精确分子表达。

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