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从小鼠致密骨来源细胞自发形成的球体保留了具有增强分化能力的高效能干细胞。

Spontaneously Formed Spheroids from Mouse Compact Bone-Derived Cells Retain Highly Potent Stem Cells with Enhanced Differentiation Capability.

作者信息

Chen Kai, Li Xianqi, Li Ni, Dong Hongwei, Zhang Yiming, Yoshizawa Michiko, Kagami Hideaki

机构信息

Department of Hard Tissue Research, Graduate School of Oral Medicine, Matsumoto Dental University, Shiojiri 399-0781, Japan.

Department of Oral and Maxillofacial Surgery, School of Dentistry, Matsumoto Dental University, Shiojiri 399-0781, Japan.

出版信息

Stem Cells Int. 2019 May 5;2019:8469012. doi: 10.1155/2019/8469012. eCollection 2019.

Abstract

The results from our recent study showed the presence of two distinct spheroid-forming mechanisms, i.e., spontaneous and mechanical. In this study, we focused on the spontaneously formed spheroids, and the character of spontaneously formed spheroids from mouse compact bone-derived cells (CBDCs) was explored. Cells from (C57BL/6J) mouse leg bones were isolated, and compact bone-derived cells were cultured after enzymatic digestion. Spontaneous spheroid formation was achieved on a culture plate with specific water contact angle as reported. The expression levels of embryonic stem cell markers were analyzed using immunofluorescence and quantitative reverse transcription polymerase chain reaction. Then, the cells from spheroids were induced into osteogenic and neurogenic lineages. The spontaneously formed spheroids from CBDCs were positive for ES cell markers such as SSEA1, Sox2, Oct4, and Nanog. Additionally, the expressions of fucosyltransferase 4/FUT4 (SSEA1), Sox2, and Nanog were significantly higher than those in monolayer cultured cells. The gene expression of mesenchymal stem cell markers was almost identical in both spheroids and monolayer-cultured cells, but the expression of Sca-1 was higher in spheroids. Spheroid-derived cells showed significantly higher osteogenic and neurogenic marker expression than monolayer-cultured cells after induction. Spontaneously formed spheroids expressed stem cell markers and showed enhanced osteogenic and neurogenic differentiation capabilities than cells from the conventional monolayer culture, which supports the superior stemness.

摘要

我们最近的研究结果表明存在两种不同的球体形成机制,即自发机制和机械机制。在本研究中,我们聚焦于自发形成的球体,并探究了从小鼠致密骨来源细胞(CBDCs)自发形成的球体的特征。分离来自(C57BL/6J)小鼠腿部骨骼的细胞,经酶消化后培养致密骨来源细胞。如报道的那样,在具有特定水接触角的培养板上实现了自发球体形成。使用免疫荧光和定量逆转录聚合酶链反应分析胚胎干细胞标志物的表达水平。然后,将球体中的细胞诱导分化为成骨谱系和神经谱系。CBDCs自发形成的球体对ES细胞标志物如SSEA1、Sox2、Oct4和Nanog呈阳性。此外,岩藻糖基转移酶4/FUT4(SSEA1)、Sox2和Nanog的表达明显高于单层培养细胞。间充质干细胞标志物的基因表达在球体和单层培养细胞中几乎相同,但Sca-1在球体中的表达更高。诱导后,球体来源的细胞比单层培养细胞显示出明显更高的成骨和神经标志物表达。自发形成的球体表达干细胞标志物,并且比传统单层培养的细胞表现出更强的成骨和神经分化能力,这支持了其卓越的干性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7cc/6525826/31963b45858e/SCI2019-8469012.001.jpg

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