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G/β-磷酸三钙复合支架材料促进骨髓间充质干细胞的成骨分化。

G/ β- TCP composite scaffold material promotes osteogenic differentiation of bone marrow mesenchymal stem cells.

作者信息

Su Hairong, Liao Yong, Yuan Xiaolu, Huang Jianhui, Chen Ya, Zhao Binxiu

机构信息

Department of Traditional Chinese Medicine, Maoming People's Hospital, Maoming, Guandong, China.

Department of Pharmacy, Maoming People's Hospital, Maoming, Guandong, China.

出版信息

J Biomed Mater Res B Appl Biomater. 2023 Dec;111(12):2025-2031. doi: 10.1002/jbm.b.35302. Epub 2023 Aug 2.

Abstract

To explore self-made graphene/β Graphene (G)/β- tricalcium phosphate, G/β- The effect of TCP composite scaffold material on osteogenic differentiation of BMSC. Preparation of G/β- TCP composite material was used to investigate the effect of composite material on bone marrow mesenchymal stem cell ossification/β- TCP material was used to treat primary BMSCs of rats. Cell morphology changes were observed under scanning electron microscopy, cell cycle and proliferation were detected by flow cytometry, and gene expression of chondrogenic genes Fibronectin, collagen I, collagen II, ICAM, and VCAM was detected by q-PCR. In addition, using osteogenic induction medium and G/β- TCP composite materials were co treated with BMSCs, and ALP and alizarin red staining were used to observe the effect of the materials on osteogenic differentiation. q-PCR was used to detect the gene expression of osteogenic related genes Runx2, OCN, and OPN. G/ β- After the TCP composite was co cultured with BMSC, the proportion of G0/G1 phase of BMSC cells was significantly increased, the cell proliferation ability was enhanced, and the gene expression of fibronectin, collagen I, collagen II, ICAM, and VCAM were significantly increased. The ALP staining results indicate that BMSC in G/β- After treatment with TCP composite material, significant enhancement of osteogenic ability was observed at 7,14 and 21 days. In addition, BMSC in G/β- A significant increase in calcium deposition was observed at 7,14 and 21 days after treatment with TCP composite materials. The effect of different time points on the expression of osteogenic related genes varies. At 7 and 14 days, the expression of RUNX2 was significantly reduced compared to the control, but significantly increased at 21 days; OCN significantly increased on the 21st day; OPN significantly increased at 14 days. G/β- TCP materials significantly promote the osteogenic differentiation of BMSCs.

摘要

为探究自制的石墨烯/β-磷酸三钙(G/β-TCP)复合支架材料对骨髓间充质干细胞(BMSC)成骨分化的影响。采用G/β-TCP复合材料制备方法,研究该复合材料对大鼠原代BMSC成骨的影响;采用β-TCP材料处理大鼠原代BMSC。通过扫描电子显微镜观察细胞形态变化,采用流式细胞术检测细胞周期和增殖情况,并通过q-PCR检测软骨生成基因纤连蛋白、I型胶原、II型胶原、细胞间黏附分子(ICAM)和血管细胞黏附分子(VCAM)的基因表达。此外,使用成骨诱导培养基,将G/β-TCP复合材料与BMSC共同处理,采用碱性磷酸酶(ALP)和茜素红染色观察材料对成骨分化的影响。采用q-PCR检测成骨相关基因Runx2、骨钙素(OCN)和骨桥蛋白(OPN)的基因表达。G/β-TCP复合材料与BMSC共培养后,BMSC细胞G0/G1期比例显著增加,细胞增殖能力增强,纤连蛋白、I型胶原、II型胶原、ICAM和VCAM的基因表达显著增加。ALP染色结果表明,G/β-TCP复合材料处理后的BMSC在第7、14和21天观察到成骨能力显著增强。此外,G/β-TCP复合材料处理后的BMSC在第7、14和21天观察到钙沉积显著增加。不同时间点对成骨相关基因表达的影响各不相同。在第7天和14天,与对照组相比,Runx2的表达显著降低,但在第21天显著增加;OCN在第21天显著增加;OPN在第14天显著增加。G/β-TCP材料显著促进BMSC的成骨分化。

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