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系统生物学分析犬骨髓和牙髓间充质干细胞成骨分化行为。

Systems biology analysis of osteogenic differentiation behavior by canine mesenchymal stem cells derived from bone marrow and dental pulp.

机构信息

Graduate Program in Veterinary Bioscience, Faculty of Veterinary Science, Chulalongkorn University, Bangkok, Thailand.

Veterinary Clinical Stem Cell and Bioengineering Research Unit, Faculty of Veterinary Science, Chulalongkorn University, Bangkok, Thailand.

出版信息

Sci Rep. 2020 Nov 26;10(1):20703. doi: 10.1038/s41598-020-77656-0.

Abstract

Utilization of canine mesenchymal stem cells (cMSCs) for regenerating incorrigible bone diseases has been introduced. However, cMSCs harvested from different sources showed distinct osteogenicity. To clarify this, comparative proteomics-based systems biology analysis was used to analyze osteogenic differentiation behavior by cMSCs harvested from bone marrow and dental pulp. The results illustrated that canine dental pulp stem cells (cDPSCs) contained superior osteogenicity comparing with canine bone marrow-derived MSCs (cBM-MSCs) regarding alkaline phosphatase activity, matrix mineralization, and osteogenic marker expression. Global analyses by proteomics platform showed distinct protein clustering and expression pattern upon an in vitro osteogenic induction between them. Database annotation using Reactome and DAVID revealed contrast and unique expression profile of osteogenesis-related proteins, particularly on signaling pathways, cellular components and processes, and cellular metabolisms. Functional assay and hierarchical clustering for tracking protein dynamic change confirmed that cBM-MSCs required the presences of Wnt, transforming growth factor (TGF)-beta, and bone-morphogenetic protein (BMP) signaling, while cDPSCs mainly relied on BMP signaling presentation during osteogenic differentiation in vitro. Therefore, these findings illustrated the comprehensive data regarding an in vitro osteogenic differentiation behavior by cBM-MSCs and cDPSCs which is crucial for further mechanism study and the establishment of cMSC-based bone tissue engineering (BTE) for veterinary practice.

摘要

犬间充质干细胞(cMSCs)在再生不可治愈的骨疾病方面的应用已经被提出。然而,从不同来源采集的 cMSCs 显示出不同的成骨能力。为了阐明这一点,我们使用基于比较蛋白质组学的系统生物学分析方法,分析了从骨髓和牙髓中采集的 cMSCs 的成骨分化行为。结果表明,与犬骨髓来源的间充质干细胞(cBM-MSCs)相比,犬牙髓干细胞(cDPSCs)在碱性磷酸酶活性、基质矿化和成骨标志物表达方面具有更高的成骨能力。蛋白质组学平台的全局分析表明,它们在体外成骨诱导过程中有明显的蛋白聚类和表达模式。使用 Reactome 和 DAVID 进行数据库注释揭示了成骨相关蛋白的对比和独特表达谱,特别是在信号通路、细胞成分和过程以及细胞代谢方面。功能分析和层次聚类用于跟踪蛋白质动态变化,证实 cBM-MSCs 在体外成骨分化过程中需要 Wnt、转化生长因子(TGF)-β和骨形态发生蛋白(BMP)信号的存在,而 cDPSCs 主要依赖 BMP 信号的表达。因此,这些发现说明了关于 cBM-MSCs 和 cDPSCs 体外成骨分化行为的全面数据,这对于进一步的机制研究和基于 cMSC 的兽医骨组织工程(BTE)的建立至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/218b/7692528/ad5f6c00dbaa/41598_2020_77656_Fig1_HTML.jpg

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