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镁通过调节骨免疫调节增强 BMSCs 的成骨作用。

Magnesium Enhances Osteogenesis of BMSCs by Tuning Osteoimmunomodulation.

机构信息

Department of Operative Dentistry and Endodontics, Guanghua School of Stomatology, Guangdong Province Key Laboratory of Stomatology, Sun Yat-sen University, Guangzhou 510055, China.

Department of General Dentistry and Oral Health, Guanghua School of Stomatology, Guangdong Province Key Laboratory of Stomatology, Sun Yat-sen University, Guangzhou 510055, China.

出版信息

Biomed Res Int. 2019 Nov 14;2019:7908205. doi: 10.1155/2019/7908205. eCollection 2019.

Abstract

In the process of bone tissue engineering, the osteoimmunomodulatory property of biomaterials is very important for osteogenic differentiation of stem cells, which determines the outcome of bone regeneration. Magnesium (Mg) is a biodegradable, biocompatible metal that has osteoconductive properties and has been regarded as a promising bone biomaterial. However, the high degradation rate of Mg leads to excessive inflammation, thereby restricting its application in bone tissue engineering. Importantly, different coatings or magnesium alloys have been utilized to lower the rate of degradation. In fact, a prior study proved that -TCP coating of Mg scaffolds can modulate the osteoimmunomodulatory properties of Mg-based biomaterials and create a favorable immune microenvironment for osteogenesis. However, the osteoimmunomodulatory properties of Mg ions themselves have not been explored yet. In this study, the osteoimmunomodulatory properties of Mg ions with involvement of macrophages and bone marrow stem cells (BMSCs) were systematically investigated. Microscale Mg ions (100 mg/L) were found to possess osteoimmunomodulatory properties that favor bone formation. Specifically, microscale Mg ions induced M2 phenotype changes of macrophages and the release of anti-inflammatory cytokines by inhibiting the TLR-NF-B signaling pathway. Microscale Mg ions also stimulated the expression of osteoinductive molecules in macrophages while Mg ions/macrophage-conditioned medium promoted osteogenesis of BMSCs through the BMP/SMAD signaling pathway. These findings indicate that manipulating Mg ion concentration can endow the Mg biomaterial with favorable osteoimmunomodulatory properties, thereby providing fundamental evidence for improving and modifying the effect of Mg-based bone biomaterials.

摘要

在骨组织工程中,生物材料的骨免疫调节特性对于干细胞的成骨分化非常重要,这决定了骨再生的结果。镁 (Mg) 是一种可生物降解、生物相容性的金属,具有骨诱导特性,已被视为一种有前途的骨生物材料。然而,Mg 的高降解率会导致过度炎症,从而限制了其在骨组织工程中的应用。重要的是,已经利用了不同的涂层或镁合金来降低降解率。事实上,先前的一项研究证明,Mg 支架的 TCP 涂层可以调节基于 Mg 的生物材料的骨免疫调节特性,并为成骨创造有利的免疫微环境。然而,Mg 离子本身的骨免疫调节特性尚未得到探索。在这项研究中,系统研究了 Mg 离子对巨噬细胞和骨髓基质细胞 (BMSCs) 的骨免疫调节特性。发现微尺度 Mg 离子(100mg/L)具有促进骨形成的骨免疫调节特性。具体来说,微尺度 Mg 离子通过抑制 TLR-NF-B 信号通路诱导巨噬细胞的 M2 表型变化和抗炎细胞因子的释放。微尺度 Mg 离子还刺激巨噬细胞中骨诱导分子的表达,而 Mg 离子/巨噬细胞条件培养基通过 BMP/SMAD 信号通路促进 BMSCs 的成骨作用。这些发现表明,操纵 Mg 离子浓度可以赋予 Mg 生物材料有利的骨免疫调节特性,从而为改善和修饰基于 Mg 的骨生物材料的效果提供了基础证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/150a/6885163/222c856a7459/BMRI2019-7908205.001.jpg

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