Department of Dentistry, Graduate School, Kyung Hee University, 26 Kyungheedae-ro, Dongdaemun-gu, Seoul 02447, Korea.
Department of Oral Microbiology, School of Dentistry, Kyung Hee University, 26 Kyungheedae-ro, Dongdaemun-gu, Seoul 02447, Korea.
Int J Mol Sci. 2021 Jul 26;22(15):7939. doi: 10.3390/ijms22157939.
Human adipose-derived stem cells (hADSCs) are types of mesenchymal stem cells (MSCs) that have been used as tissue engineering models for bone, cartilage, muscle, marrow stroma, tendon, fat and other connective tissues. Tissue regeneration materials composed of hADSCs have the potential to play an important role in reconstituting damaged tissue or diseased mesenchymal tissue. In this study, we assessed and investigated the osteogenesis of hADSCs in both two-dimensional (2D) and three-dimensional (3D) culture conditions. We confirmed that the hADSCs successfully differentiated into bone tissues by ARS staining and quantitative RT-PCR. To gain insight into the detailed biological difference between the two culture conditions, we profiled the overall gene expression by analyzing the whole transcriptome sequencing data using various bioinformatic methods. We profiled the overall gene expression through RNA-Seq and further analyzed this using various bioinformatic methods. During differential gene expression testing, significant differences in the gene expressions between hADSCs cultured in 2D and 3D conditions were observed. The genes related to skeletal development, bone development and bone remodeling processes were overexpressed in the 3D culture condition as compared to the 2D culture condition. In summary, our RNA-Seq-based study proves effective in providing new insights that contribute toward achieving a genome-wide understanding of gene regulation in mesenchymal stem cell osteogenic differentiation and bone tissue regeneration within the 3D culture system.
人脂肪来源干细胞(hADSCs)是间充质干细胞(MSCs)的一种,已被用作骨、软骨、肌肉、骨髓基质、肌腱、脂肪和其他结缔组织的组织工程模型。由 hADSCs 组成的组织再生材料有可能在重建受损组织或患病的间充质组织方面发挥重要作用。在这项研究中,我们评估和研究了 hADSCs 在二维(2D)和三维(3D)培养条件下的成骨作用。我们通过 ARS 染色和定量 RT-PCR 证实 hADSCs 成功分化为骨组织。为了深入了解这两种培养条件的详细生物学差异,我们通过使用各种生物信息学方法分析全转录组测序数据来分析整体基因表达。我们通过 RNA-Seq 进行了整体基因表达分析,并进一步使用各种生物信息学方法对此进行了分析。在差异基因表达测试中,观察到 2D 和 3D 培养条件下 hADSCs 的基因表达存在显著差异。与 2D 培养条件相比,3D 培养条件中与骨骼发育、骨发育和骨重塑过程相关的基因表达上调。总之,我们基于 RNA-Seq 的研究有效地提供了新的见解,有助于全面了解间充质干细胞成骨分化和 3D 培养系统中骨组织再生过程中的基因调控。