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开发含正磷酸盐和焦磷酸盐的多孔玻璃微球;结构与细胞相容性表征

Developing Porous Ortho- and Pyrophosphate-Containing Glass Microspheres; Structural and Cytocompatibility Characterisation.

作者信息

Milborne Ben, Murrell Lauren, Cardillo-Zallo Ian, Titman Jeremy, Briggs Louise, Scotchford Colin, Thompson Alexander, Layfield Robert, Ahmed Ifty

机构信息

Advanced Materials Research Group, Faculty of Engineering, University of Nottingham, Nottingham NG7 2RD, UK.

School of Chemistry, University of Nottingham, Nottingham NG7 2RD, UK.

出版信息

Bioengineering (Basel). 2022 Oct 25;9(11):611. doi: 10.3390/bioengineering9110611.

Abstract

Phosphate-based glasses (PBGs) are promising materials for bone repair and regeneration as they can be formulated to be compositionally similar to the inorganic components of bone. Alterations to the PBG formulation can be used to tailor their degradation rates and subsequent release of biotherapeutic ions to induce cellular responses, such as osteogenesis. In this work, novel invert-PBGs in the series xPO·(56 - )CaO·24MgO·20NaO (mol%), where is 40, 35, 32.5 and 30 were formulated to contain pyro (Q) and orthophosphate (Q) species. These PBGs were processed into highly porous microspheres (PMS) via flame spheroidisation, with ~68% to 75% porosity levels. Compositional and structural analysis using EDX and P-MAS NMR revealed that significant depolymerisation occurred with reducing phosphate content which increased further when PBGs were processed into PMS. A decrease from 50% to 0% in Q species and an increase from 6% to 35% in Q species was observed for the PMS when the phosphate content decreased from 40 to 30 mol%. Ion release studies also revealed up to a four-fold decrease in cations and an eight-fold decrease in phosphate anions released with decreasing phosphate content. In vitro bioactivity studies revealed that the orthophosphate-rich PMS had favourable bioactivity responses after 28 days of immersion in simulated body fluid (SBF). Indirect and direct cell culture studies confirmed that the PMS were cytocompatible and supported cell growth and proliferation over 7 days of culture. The P30 PMS with ~65% pyro and ~35% ortho phosphate content revealed the most favourable properties and is suggested to be highly suitable for bone repair and regeneration, especially for orthobiologic applications owing to their highly porous morphology.

摘要

基于磷酸盐的玻璃(PBGs)是用于骨修复和再生的有前景的材料,因为它们可以被配制得在成分上与骨的无机成分相似。对PBG配方的改变可用于调整其降解速率以及随后生物治疗离子的释放,以诱导细胞反应,如骨生成。在这项工作中,制备了系列为xPO·(56 - )CaO·24MgO·20NaO(摩尔%)的新型倒置PBGs,其中 为40、35、32.5和30,其含有焦磷酸(Q)和正磷酸盐(Q)物种。这些PBGs通过火焰球化法加工成高孔隙率的微球(PMS),孔隙率水平约为68%至75%。使用能谱仪(EDX)和磷的固体核磁共振(P-MAS NMR)进行的成分和结构分析表明,随着磷酸盐含量的降低发生了显著的解聚,当PBGs被加工成PMS时解聚进一步增加。当磷酸盐含量从40摩尔%降至30摩尔%时,观察到PMS中Q物种从50%降至0%,而Q物种从6%增至35%。离子释放研究还表明,随着磷酸盐含量的降低,阳离子释放最多降低四倍,磷酸盐阴离子释放最多降低八倍。体外生物活性研究表明,富含正磷酸盐的PMS在模拟体液(SBF)中浸泡28天后具有良好的生物活性反应。间接和直接细胞培养研究证实,PMS具有细胞相容性,并在7天的培养过程中支持细胞生长和增殖。焦磷酸含量约为65%、正磷酸盐含量约为35%的P30 PMS表现出最有利的性能,由于其高度多孔的形态,被认为非常适合骨修复和再生,特别是用于骨科生物应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/887e/9687370/879518b9efdd/bioengineering-09-00611-g001.jpg

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