dot11通过调节Chac1的表达调控骨膜干细胞的自发骨再生。

IF 3.3 3区 医学 Q2 CELL & TISSUE ENGINEERING
Stem Cells International Pub Date : 2025-07-09 eCollection Date: 2025-01-01 DOI:10.1155/sci/1508850
Taoran Jiang, Bin Fang, Zheyuan Yu, Dejun Cao
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引用次数: 0

摘要

背景:骨膜在骨修复中起着不可或缺的作用,促进骨膜来源干细胞(periosteum-derived stem cells, PDSCs)的成骨分化是促进颌面部骨缺损骨自发再生的最有效策略之一。方法:建立保留骨膜的大鼠下颌骨缺损模型,探讨其骨再生能力及PDSC激活和成骨分化的可能机制。结果:颌骨缺损后保留骨膜的大鼠骨再生明显。为了探索其潜在的机制,我们从大鼠下颌骨骨膜中分离出PDSCs,并在这些PDSCs中高度表达干细胞标记物CD90和CD44。此外,RNA-seq、RT-qPCR和京都基因与基因组百科全书(KEGG)功能分析显示,模型组PDSCs中Dot1l基因的表达显著降低,Notch通路显著富集。成骨实验表明,过表达Dot1l可显著抑制PDSCs中碱性磷酸酶(ALP)活性、钙沉积和成骨相关基因(如RUNX2、OSX、ALP和OCN)的表达。此外,Dot1l显著影响基因本体(Gene Ontology, GO)通路中的Notch信号通路,并显著下调其中Chac1的表达。此外,Dot1l通过下调Chac1的表达,抑制了PDSCs中ALP活性、钙沉积和成骨相关基因的表达。结论:我们的研究提示,下颌缺损可诱导PDSCs的激活,抑制Dot1l的表达,可能影响Notch信号通路。通过Dot1l/Chac1通路调控PDSCs的成骨分化,为基于骨膜的颌面骨再生奠定坚实基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dot1l Regulates the Spontaneous Bone Regeneration of Periosteum-Derived Stem Cells by Regulating Chac1 Expression.

Background: The periosteum plays an indispensable role in bone repair, and promoting osteogenic differentiation of periosteum-derived stem cells (PDSCs) is one of the most effective strategies for enhancing spontaneous bone regeneration in maxillofacial bone defects. Methods: We established a rat model of mandibular defects with preserved periosteum to explore its bone regeneration capacity and the potential mechanisms of PDSC activation and osteogenic differentiation. Results: Significant bone regeneration was observed in rats with preserved periosteum after mandibular defects. To explore the underlying mechanisms, PDSCs were isolated from the periosteum of rat mandibles, and the stem cell markers CD90 and CD44 was highly expressed in these PDSCs. Further, RNA-seq, RT-qPCR, and Kyoto Encyclopedia of Genes and Genomes (KEGG) functional analyses revealed significantly reduced expression of the Dot1l gene, and the Notch pathway was significantly enriched in the PDSCs of the model group. Osteogenic assays demonstrated that the overexpression of Dot1l significantly inhibited the alkaline phosphatase (ALP) activity, calcium deposition, and the expression of osteogenic-related genes (such as RUNX2, OSX, ALP, and OCN) in PDSCs. Additionally, Dot1l significantly affects the Notch signaling pathway in the Gene Ontology (GO) pathways, and significantly downregulates the expression of Chac1 within it. Further, Dot1l inhibited ALP activity, calcium deposition, and the expression of osteogenic-related genes in PDSCs by downregulating Chac1 expression. Conclusions: Our study suggests that mandibular defects can induce the activation of PDSCs and inhibit the expression of Dot1l, potentially affecting the Notch signaling pathway. Targeting the Dot1l/Chac1 pathway to regulate the osteogenic differentiation of PDSCs lays a solid foundation for periosteum-based maxillofacial bone regeneration.

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来源期刊
Stem Cells International
Stem Cells International CELL & TISSUE ENGINEERING-
CiteScore
8.10
自引率
2.30%
发文量
188
审稿时长
18 weeks
期刊介绍: Stem Cells International is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies in all areas of stem cell biology and applications. The journal will consider basic, translational, and clinical research, including animal models and clinical trials. Topics covered include, but are not limited to: embryonic stem cells; induced pluripotent stem cells; tissue-specific stem cells; stem cell differentiation; genetics and epigenetics; cancer stem cells; stem cell technologies; ethical, legal, and social issues.
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