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镁-羟基磷灰石-碳/碳复合材料通过抑制miR-16促进成骨分化并修复骨缺损。

Mg-HA-C/C Composites Promote Osteogenic Differentiation and Repair Bone Defects Through Inhibiting miR-16.

作者信息

Qi Hong, Liu Yang, Wu Lu, Liu Chun, Ni Su, Liu Qizhan, Ni Xinye, Sun Qiang

机构信息

Center for Global Health, The Key Laboratory of Modern Toxicology, Ministry of Education, School of Public Health, Nanjing Medical University, Nanjing, China.

Department of Orthopedics, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.

出版信息

Front Bioeng Biotechnol. 2022 Feb 4;10:838842. doi: 10.3389/fbioe.2022.838842. eCollection 2022.

Abstract

The hydroxyapatite (HA) coating on carbon/carbon (C/C) is reasonable and feasible to obtain bone graft materials with appropriate mechanical and biological properties. However, improvement of the physical and chemical properties of HA-C/C composites to promote bone regeneration and healing remains a challenge. In our present study, the HA coatings on C/C with magnesium (Mg) (Mg-HA-C/C) composites were synthesized that Ca (NO), Mg (NO), and NHHPO were mixed and coatings were made by electromagnetic induction deposition's heating. As determined with experiments, Mg-HA-C/C composites containing 10 and 20% Mg decreased miR-16 levels, increased cell viability, elevated the levels of osteogenesis-related genes, and promoted osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) seeded on their surfaces. In a rat model of skull defects, compared to the control group, at 4 and 12 weeks after the operation, the bone volume fraction (BV/TV) of Mg-HA-C/C composite group was increased by 8.439 ± 2.681% and 23.837 ± 7.845%, as well as the trabecular thickness (Tb.Th) was 56.247 ± 24.238 μm and 114.911 ± 34.015 μm more. These composites also increased the levels of ALP and RUNX2 in skull. The Mg-HA-C/C composite-enhanced bone regeneration and healing were blocked by injection of an miR-16 mimic lentivirus vector. Thus, Mg-HA-C/C composites promote osteogenic differentiation and repair bone defects through inhibiting miR-16.

摘要

在碳/碳(C/C)材料上制备羟基磷灰石(HA)涂层以获得具有合适机械性能和生物学性能的骨移植材料是合理且可行的。然而,改善HA-C/C复合材料的物理和化学性质以促进骨再生和愈合仍然是一个挑战。在我们目前的研究中,合成了含镁(Mg)的C/C上的HA涂层(Mg-HA-C/C)复合材料,即将Ca(NO)、Mg(NO)和NHHPO混合,并通过电磁感应沉积加热制备涂层。实验测定,含10%和20%Mg的Mg-HA-C/C复合材料降低了miR-16水平,提高了细胞活力,升高了成骨相关基因的水平,并促进了接种在其表面的骨髓间充质干细胞(BMSC)的成骨分化。在大鼠颅骨缺损模型中,与对照组相比,术后4周和12周时,Mg-HA-C/C复合材料组的骨体积分数(BV/TV)分别增加了8.439±2.681%和23.837±7.845%,小梁厚度(Tb.Th)分别增加了56.247±24.238μm和114.911±34.015μm。这些复合材料还提高了颅骨中碱性磷酸酶(ALP)和RUNX2的水平。注射miR-16模拟慢病毒载体可阻断Mg-HA-C/C复合材料增强的骨再生和愈合。因此,Mg-HA-C/C复合材料通过抑制miR-16促进成骨分化并修复骨缺损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9300/8854763/0f7157fd13f3/fbioe-10-838842-g001.jpg

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