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负载镁离子和铜离子的核壳型球霰石-方解石碳酸钙颗粒具有促进成骨和血管生成的缓释作用。

Encapsulated vaterite-calcite CaCO particles loaded with Mg and Cu ions with sustained release promoting osteogenesis and angiogenesis.

作者信息

Fan Lu, Körte Fabian, Rudt Alexander, Jung Ole, Burkhardt Claus, Barbeck Mike, Xiong Xin

机构信息

NMI Natural and Medical Sciences Institute at the University of Tübingen, Reutlingen, Germany.

Experimental Medicine, Faculty of Medicine, University of Tübingen, Tübingen, Germany.

出版信息

Front Bioeng Biotechnol. 2022 Aug 11;10:983988. doi: 10.3389/fbioe.2022.983988. eCollection 2022.

Abstract

Bioactive cations, including calcium, copper and magnesium, have shown the potential to become the alternative to protein growth factor-based therapeutics for bone healing. Ion substitutions are less costly, more stable, and more effective at low concentrations. Although they have been shown to be effective in providing bone grafts with more biological functions, the precise control of ion release kinetics is still a challenge. Moreover, the synergistic effect of three or more metal ions on bone regeneration has rarely been studied. In this study, vaterite-calcite CaCO particles were loaded with copper (Cu) and magnesium (Mg). The polyelectrolyte multilayer (PEM) was deposited on CaCuMg-CO particles layer-by-layer technique to further improve the stability and biocompatibility of the particles and to enable controlled release of multiple metal ions. The PEM coated microcapsules were successfully combined with collagen at the outmost layer, providing a further stimulating microenvironment for bone regeneration. The release studies showed remarkably stable release of Cu in 2 months without initial burst release. Mg was released in relatively low concentration in the first 7 days. Cell culture studies showed that CaCuMg-PEM-Col microcapsules stimulated cell proliferation, extracellular maturation and mineralization more effectively than blank control and other microcapsules without collagen adsorption (Ca-PEM, CaCu-PEM, CaMg-PEM, CaCuMg-PEM). In addition, the CaCuMg-PEM-Col microcapsules showed positive effects on osteogenesis and angiogenesis in gene expression studies. The results indicate that such a functional and controllable delivery system of multiple bioactive ions might be a safer, simpler and more efficient alternative of protein growth factor-based therapeutics for bone regeneration. It also provides an effective method for functionalizing bone grafts for bone tissue engineering.

摘要

包括钙、铜和镁在内的生物活性阳离子已显示出有潜力成为基于蛋白质生长因子的骨愈合疗法的替代品。离子替代成本更低、更稳定,且在低浓度下更有效。尽管已证明它们能有效赋予骨移植更多生物学功能,但精确控制离子释放动力学仍是一项挑战。此外,三种或更多金属离子对骨再生的协同作用鲜有研究。在本研究中,球霰石 - 方解石碳酸钙(CaCO)颗粒负载了铜(Cu)和镁(Mg)。采用逐层技术在CaCuMg - CO颗粒上沉积聚电解质多层膜(PEM),以进一步提高颗粒的稳定性和生物相容性,并实现多种金属离子的可控释放。PEM包覆的微胶囊在最外层成功与胶原蛋白结合,为骨再生提供了更具刺激性的微环境。释放研究表明,铜在2个月内释放非常稳定,无初始突释现象。镁在最初7天以相对较低的浓度释放。细胞培养研究表明,CaCuMg - PEM - Col微胶囊比空白对照和其他未吸附胶原蛋白的微胶囊(Ca - PEM、CaCu - PEM、CaMg - PEM、CaCuMg - PEM)更有效地刺激细胞增殖、细胞外成熟和矿化。此外,CaCuMg - PEM - Col微胶囊在基因表达研究中对成骨和血管生成显示出积极作用。结果表明,这种多功能且可控的多种生物活性离子递送系统可能是基于蛋白质生长因子的骨再生疗法更安全、更简单且更有效的替代品。它还为骨组织工程中骨移植的功能化提供了一种有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e40/9403055/0e69033cb012/fbioe-10-983988-g001.jpg

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