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铈掺杂生物活性玻璃纳米颗粒的离子溶解产物促进人骨髓间充质基质细胞的细胞成骨分化和细胞外基质形成。

Ionic dissolution products of Cerium-doped bioactive glass nanoparticles promote cellular osteogenic differentiation and extracellular matrix formation of human bone marrow derived mesenchymal stromal cells.

作者信息

Westhauser F, Rehder F, Decker S, Kunisch E, Moghaddam A, Zheng K, Boccaccini A R

机构信息

Center of Orthopedics, Traumatology, and Spinal Cord Injury, Heidelberg University Hospital, Schlierbacher Landstraße 200a, 69118 Heidelberg, Germany.

ATORG-Aschaffenburg Trauma and Orthopedic Research Group, Center for Trauma Surgery, Orthopedics, and Sports Medicine, Klinikum Aschaffenburg-Alzenau, Am Hasenkopf 1, 63739 Aschaffenburg, Germany.

出版信息

Biomed Mater. 2021 Mar 5;16(3). doi: 10.1088/1748-605X/abcf5f.

Abstract

Cerium (Ce) is a promising candidate ion for application in bone tissue engineering (BTE) since it reduces the presence of reactive oxygen species. Ce-doped mesoporous bioactive glass nanoparticles (MBGNs) serving as vectors for the local application of Ce already demonstrated stimulating effects on the expression of pro-osteogenic genes in Saos-2 cells. So far, there is no evidence available about the effects of Ce-doped MBGNs on the viability, osteogenic differentiation and the formation of the osseous extracellular matrix (ECM) of primary human bone marrow-derived mesenchymal stromal cells (BMSCs). Therefore, in this study, the biocompatibility of the ionic dissolution products (IDPs) of MBGNs containing increasing concentrations of CeO(0.05 MCe-MBGNs, composition in mol%: 86.6SiO-12.1CaO-1.3CeO; and 0.2 MCe-MBGNs, composition in mol%: 86.0SiO-11.8CaO-2.2CeO) and unmodified MBGNs (composition in mol%: 86SiO-14CaO) was evaluated using human BMSCs. Eventually, the impact of the MBGNs' IDPs on the cellular osteogenic differentiation and their ability to build and mature a primitive osseous ECM was assessed. The Ce-doped MBGNs had a positive influence on the viability and stimulated the cellular osteogenic differentiation of human BMSCs evaluated by analyzing the activity of alkaline phosphate as a marker enzyme for osteoblasts in the present setting. Furthermore, the formation and calcification of a primitive osseous ECM was significantly stimulated in the presence of Ce-doped MBGNs in a positive concentration-dependent manner as demonstrated by an elevated presence of collagen and increased ECM calcification. The results of thisstudy show that Ce-doped MBGNs are attractive candidates for further application in BTE.

摘要

铈(Ce)是骨组织工程(BTE)应用中一种很有前景的候选离子,因为它能减少活性氧的存在。铈掺杂的介孔生物活性玻璃纳米颗粒(MBGNs)作为铈局部应用的载体,已显示出对Saos-2细胞中成骨基因表达的刺激作用。到目前为止,尚无证据表明铈掺杂的MBGNs对原代人骨髓间充质基质细胞(BMSCs)的活力、成骨分化及骨细胞外基质(ECM)形成的影响。因此,在本研究中,使用人BMSCs评估了含不同浓度CeO的MBGNs(0.05 M Ce-MBGNs,摩尔百分比组成:86.6SiO-12.1CaO-1.3CeO;和0.2 M Ce-MBGNs,摩尔百分比组成:86.0SiO-11.8CaO-2.2CeO)以及未修饰的MBGNs(摩尔百分比组成:86SiO-14CaO)的离子溶解产物(IDPs)的生物相容性。最终,评估了MBGNs的IDPs对细胞成骨分化的影响及其构建和成熟原始骨ECM的能力。在本实验中,通过分析作为成骨细胞标志物酶的碱性磷酸酶活性评估,铈掺杂的MBGNs对人BMSCs的活力有积极影响,并刺激了其细胞成骨分化。此外,如胶原蛋白含量升高和ECM钙化增加所示,在铈掺杂的MBGNs存在下,原始骨ECM的形成和钙化以正浓度依赖性方式受到显著刺激。本研究结果表明,铈掺杂的MBGNs是BTE进一步应用的有吸引力的候选物。

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