首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Ga and Ce ion-doped phosphate glass fibres with antibacterial properties and their composite for wound healing applications
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Ga and Ce ion-doped phosphate glass fibres with antibacterial properties and their composite for wound healing applications

机译:Ga和Ce离子掺杂磷酸盐玻璃纤维,具有抗菌性能及其用于伤口愈合应用的复合材料

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Novel gallium/cerium-doped phosphate glass fibres (PGF) were successfully manufactured by the melt-quenching and melt-spinning process. The amorphous character of the materials produced was confirmed using X-ray powder diffraction (XRD), and the elemental composition was investigated with X-ray fluorescence confirming the presence of 2 mol% of Ga2O3 or CeO2. Fourier Transform Infrared Spectroscopy (FTIR) confirmed the presence of Q(1) and Q(2) structural phosphate species. Mechanical properties of the PGFs revealed tensile strength values of 428 +/- 94 MPa and 379 +/- 80 MPa, with elastic modulus values of 45 +/- 4 GPa and 54 +/- 9 GPa for Ce-PGF (diameter 25 mu m) and Ga-PGF (diameter 18 mu m), respectively. The influence of both dopants on the glass degradation properties was evaluated by tests in deionised water, which revealed a decreased dissolution rate for gallium-doped PGF in comparison to cerium-doped PGF. Inductively Coupled Plasma Optical Emission Spectroscopy (ICP-OES) measurements were used to explore ion release in cell culture medium, while ICP-mass spectrometry (ICP-MS) was used to measure ion release in deionised water. These techniques showed controlled release of therapeutic and antibacterial ions from the PGF. Antibacterial properties of Ce-PGF and Ga-PGF, based on turbidity measurements, were confirmed against Gram-positive bacteria. Moreover, Ce-doped phosphate glass fibres did not disturb the proliferation of human epidermal keratinocyte (HaCaT) cells or the mobility of mice embryonic fibroblasts (MEF). Applying an in vitro scratch assay showed full wound closure after 24 h of indirect incubation with Ga-PGF. Due to their superior processability as compared with Ga-PGFs, a fully degradable mesh based on Ce-PGF was designed and found to achieve high water uptake (up to 800%), suggesting its suitability for wound healing applications.
机译:通过熔融淬火和熔融纺丝方法成功制造了新型镓/铈掺杂的磷酸盐玻璃纤维(PGF)。使用X射线粉末衍射(XRD)确认所制备的材料的无定形特征,并用X射线荧光研究元素组合物,证实2mol%Ga2O3或CeO 2的存在。傅里叶变换红外光谱(FTIR)证实存在Q(1)和Q(2)结构磷酸盐物种。 PGFS的力学性能显示428 +/- 94MPa和379 +/- 80MPa的拉伸强度值,弹性模量值为45 +/- 4GPa和54 +/- 9 GPA,用于CE-PGF(直径25亩M)分别和GA-PGF(直径18μm)。通过去离子水的试验评估掺杂剂对玻璃降解性质的影响,并揭示了与铈掺杂的PGF相比镓掺杂PGF的溶解速率降低。电感耦合等离子体光发射光谱(ICP-OES)测量用于探索细胞培养基中的离子释放,而ICP质谱法(ICP-MS)用于测量去离子水中的离子释放。这些技术显示来自PGF的治疗性和抗菌离子的控制释放。基于浊度测量的CE-PGF和GA-PGF的抗菌性能得到革兰氏阳性细菌。此外,Ce掺杂的磷酸盐玻璃纤维没有干扰人表皮角蛋白细胞(HACAT)细胞的增殖或小鼠胚胎成纤维细胞(MEF)的迁移率。在与GA-PGF间接孵育24小时后,施加体外划痕测定显示出全伤口闭合。由于其与GA-PGF相比的卓越可加工性,设计了基于CE-PGF的完全可降解的网格,并发现了高水摄取(高达800%),表明其对伤口愈合应用的适用性。

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