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牙髓间充质干细胞三维球体形成中多能性、分化和线粒体代谢能力的比较。

Comparison of Pluripotency, Differentiation, and Mitochondrial Metabolism Capacity in Three-Dimensional Spheroid Formation of Dental Pulp-Derived Mesenchymal Stem Cells.

机构信息

Department of Theriogenology and Biotechnology, College of Veterinary Medicine and Research Institute of Life Science, Gyeongsang National University, Jinju, Republic of Korea.

Department of Oral and Maxillofacial Surgery, Changwon Gyeongsang National University Hospital, Gyeongsang National University School of Medicine, Jinju, Republic of Korea.

出版信息

Biomed Res Int. 2021 Jul 13;2021:5540877. doi: 10.1155/2021/5540877. eCollection 2021.

Abstract

Mesenchymal stem cells (MSCs) are valuable candidates in tissue engineering and stem cell-based therapy. Traditionally, MSCs derived from various tissues have been successfully expanded in vitro using adherent culture plates commonly called as monolayer two-dimensional (2D) cultures. Recently, many studies demonstrated that stemness and multilineage differentiation potential could be enhanced to greater extent when MSCs are cultured as suspended aggregates by means of three-dimensional (3D) culturing techniques. However, there are limited reports on changed mitochondrial metabolism on 3D spheroid formation of MSCs. Therefore, the present study was aimed at investigating the stemness, differentiation potential, and mitochondrial metabolism capacity of 3D dental pulp-derived MSC (DPSC) spheroids in comparison to monolayer cultured DPSCs. We isolated dental pulp-derived MSCs (DPSCs) and successfully developed a 3D culture system which facilitated the formation of MSC spheroids. The cell aggregation was observed after 2 hours, and spheroids were formed after 24 hours and remained in shape for 72 hours. After spheroid formation, the levels of pluripotent markers increased along with enhancement in adipogenic and osteogenic potential compared to 2D cultured control cells. However, decreased proliferative capacity, cell cycle arrest, and elevated apoptosis rate were observed with the time course of the 3D culture except for the initial 24-hour aggregation. Furthermore, oxygen consumption rates of living cells decreased with the time course of the aggregation except for the initial 24 hours. Overall, our study indicated that the short-term 3D culture of MSCs could be a suitable alternative to culture the cells.

摘要

间充质干细胞(MSCs)是组织工程和基于干细胞的治疗的有价值的候选者。传统上,通过使用通常称为单层二维(2D)培养的贴壁培养板成功地在体外扩增了来自各种组织的 MSC。最近,许多研究表明,当 MSC 通过三维(3D)培养技术培养为悬浮聚集体时,可以在更大程度上增强干细胞特性和多系分化潜能。然而,关于 MSC 3D 球体形成时线粒体代谢变化的报道有限。因此,本研究旨在研究 3D 牙髓来源 MSC(DPSC)球体与单层培养的 DPSCs 相比的干细胞特性、分化潜能和线粒体代谢能力。我们分离了牙髓来源的 MSC(DPSCs),并成功开发了一种 3D 培养系统,该系统有利于 MSC 球体的形成。在 2 小时后观察到细胞聚集,在 24 小时后形成球体,并在 72 小时内保持形状。形成球体后,与 2D 培养的对照细胞相比,多能标志物的水平增加,同时增强了脂肪生成和成骨潜能。然而,除了最初的 24 小时聚集外,随着 3D 培养的时间进程,观察到增殖能力下降、细胞周期停滞和凋亡率升高。此外,活细胞的耗氧量随着聚集时间的推移而降低,除了最初的 24 小时。总的来说,我们的研究表明,MSC 的短期 3D 培养可能是培养细胞的合适替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d454/8294966/5ed61c5e4b1a/BMRI2021-5540877.001.jpg

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