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一类天然来源的无磷生物活性玻璃的成骨和血管生成作用

osteogenic and angiogenic effects of a family of natural origin PO-free bioactive glasses.

作者信息

Nikody Martyna, Kessels Lilian, Morejón Lizette, Schumacher Matthias, Wolfs Tim G A M, Rademakers Timo, Delgado José A, Habibovic Pamela, Moroni Lorenzo, Balmayor Elizabeth R

机构信息

Complex Tissue Regeneration, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University 6229 ER Maastricht The Netherlands.

Department of Instructive Biomaterials Engineering, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University Maastricht The Netherlands.

出版信息

RSC Adv. 2024 Oct 30;14(47):34708-34717. doi: 10.1039/d4ra04731a. eCollection 2024 Oct 29.

Abstract

Bioactive glasses (BGs) belong to a group of ceramic biomaterials having numerous applications due to their excellent biocompatibility and bioactivity. Depending on their composition, properties of BGs can be finely tuned. In this study, we investigated both angiogenic and osteogenic properties of a novel family of BGs from the SiO-CaO-NaO system. Three BGs were synthesised from calcite minerals and silica sands extracted from natural deposits. Silica sands used for the synthesis of each glass were obtained from different depths of the deposit, resulting in a different colour and elemental composition. The composition and structural properties of the obtained BGs were determined. Direct culture of human mesenchymal stromal cells (hMSCs) with BG particles at different concentrations was used to investigate the biocompatibility as well as the osteogenic and angiogenic properties of the BGs. In addition, BGs' effect on angiogenesis was further studied in a chick chorioallantoic membrane (CAM) model. Material characterisation confirmed the amorphous character of BGs. Investigated BGs were biocompatible and stimulated early upregulation of , , , , and . All BGs tested in a CAM model positively influenced the number, distribution, and branching of the blood vessels. Furthermore, our study revealed that the depth of sand deposit, at which the raw material was collected, had an impact on the osteogenic and angiogenic properties of the resulting glasses. On the one hand, silica sand collected at the deepest layer of the deposit, featuring a higher content of FeO and AlO, originated BGs with potent stimulative capacity of osteogenic and angiogenic gene expression. On the other hand, sand with high silica content and titanium ions resulted in a glass that better supported vessel structure. The BGs presented in this study showed the potential to promote osteogenesis and angiogenesis during bone tissue regeneration, and thus, they will be further studied as part of composite materials for the development of 3D implantable scaffolds.

摘要

生物活性玻璃(BGs)属于一类陶瓷生物材料,因其优异的生物相容性和生物活性而有众多应用。根据其组成,BGs的性能可以进行精细调节。在本研究中,我们研究了SiO-CaO-NaO体系中一类新型BGs的血管生成和成骨特性。三种BGs由从天然矿床中提取的方解石矿物和硅砂合成。用于合成每种玻璃的硅砂取自矿床的不同深度,导致颜色和元素组成不同。测定了所得BGs的组成和结构性能。将人骨髓间充质基质细胞(hMSCs)与不同浓度的BG颗粒直接培养,以研究BGs的生物相容性以及成骨和血管生成特性。此外,在鸡胚绒毛尿囊膜(CAM)模型中进一步研究了BGs对血管生成的影响。材料表征证实了BGs的无定形特性。所研究的BGs具有生物相容性,并刺激了、、、和的早期上调。在CAM模型中测试的所有BGs均对血管的数量、分布和分支产生了积极影响。此外,我们的研究表明,收集原材料的砂矿床深度对所得玻璃的成骨和血管生成特性有影响。一方面,从矿床最深层收集的硅砂,其FeO和AlO含量较高,所产生的BGs具有强大的成骨和血管生成基因表达刺激能力。另一方面,高硅含量和含钛离子的砂产生了一种能更好支持血管结构的玻璃。本研究中呈现的BGs显示出在骨组织再生过程中促进成骨和血管生成的潜力,因此,它们将作为用于开发3D可植入支架的复合材料的一部分进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8cd/11523078/820d16777d51/d4ra04731a-f1.jpg

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