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定制焦磷酸盐和正磷酸盐物种以增强干细胞对磷酸盐玻璃的黏附。

Tailoring Pyro-and Orthophosphate Species to Enhance Stem Cell Adhesion to Phosphate Glasses.

机构信息

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

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

出版信息

Int J Mol Sci. 2021 Jan 15;22(2):837. doi: 10.3390/ijms22020837.

Abstract

Phosphate-based glasses (PBGs) offer significant therapeutic potential due to their bioactivity, controllable compositions, and degradation rates. Several PBGs have already demonstrated their ability to support direct cell growth and in vivo cytocompatibility for bone repair applications. This study investigated development of PBG formulations with pyro- and orthophosphate species within the glass system (40 - x)PO·(16 + x)CaO·20NaO·24MgO (x = 0, 5, 10 mol%) and their effect on stem cell adhesion properties. Substitution of phosphate for calcium revealed a gradual transition within the glass structure from Q to Q phosphate species. Human mesenchymal stem cells were cultured directly onto discs made from three PBG compositions. Analysis of cells seeded onto the discs revealed that PBG with higher concentration of pyro- and orthophosphate content (61% Q and 39% Q) supported a 4.3-fold increase in adhered cells compared to glasses with metaphosphate connectivity (49% Q and 51% Q). This study highlights that tuning the composition of PBGs to possess pyro- and orthophosphate species only, enables the possibility to control cell adhesion performance. PBGs with superior cell adhesion profiles represent ideal candidates for biomedical applications, where cell recruitment and support for tissue ingrowth are of critical importance for orthopaedic interventions.

摘要

基于磷酸盐的玻璃(PBGs)由于其生物活性、可控制的组成和降解速率,具有重要的治疗潜力。几种 PBG 已经证明了它们能够支持直接细胞生长和体内细胞相容性,适用于骨修复应用。本研究开发了一种玻璃系统内含有焦磷酸盐和正磷酸盐的 PBG 配方(40-x)PO·(16+x)CaO·20NaO·24MgO(x = 0、5、10 mol%),并研究了其对干细胞黏附特性的影响。用磷酸盐替代钙,玻璃结构中的 Q 向 Q 磷酸盐的转变逐渐发生。人骨髓间充质干细胞直接培养在由三种 PBG 组成的圆盘上。对接种到圆盘上的细胞进行分析,结果表明,与具有偏磷酸盐连接的玻璃(49% Q 和 51% Q)相比,具有较高焦磷酸盐和正磷酸盐含量(61% Q 和 39% Q)的 PBG 支持黏附细胞增加了 4.3 倍。本研究表明,通过调整 PBG 的组成使其仅具有焦磷酸盐和正磷酸盐,有可能控制细胞黏附性能。具有优越细胞黏附特性的 PBG 是生物医学应用的理想候选材料,因为细胞募集和支持组织向内生长对于骨科干预至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7204/7829838/c0e7eab9710d/ijms-22-00837-g001.jpg

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