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Preparation and characterization of a novel bioactive bone cement: Glass based nanoscale hydroxyapatite bone cement

机译:新型生物活性骨水泥的制备和表征:玻璃基纳米羟基磷灰石骨水泥

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摘要

A novel type of glass-based nanoscale hydorxypatite (HAP) bioactive bone cement (designed as GBNHAPC) was synthesized by adding nanoscale hydroxyapatite (HAP) crystalline (20-40 nm), into the self-setting glass-based bone cement (GBC). The inhibition rate of nanoscale HAP and micron HAP on osteosarcoma U2-OS cells was examined. The effects of nanoscale HAP on the crystal phase, microstructure and compressive strength of GBNHAPC were studied respectively. It was concluded that nanoscale HAP could inhibit the cell proliferation, while micron HAP could not, and that nanoscale HAP could be dispersed in the cement evenly and the morphology did not change significantly after a longer immersion time. XRD and FTIR results show nanoscale HAP did not affect the setting reaction of the cement. Furthermore, GBNHAPC had a higher compressive strength (92 MPa) than GBC. It was believed that GBNHAPC might be a desirable biomaterial that could not only fill bone defects but also inhibit cancer cell growth.
机译:通过将纳米级羟基磷灰石(HAP)晶体(20-40 nm)添加到自固化玻璃基骨水泥(GBC)中,合成了新型的玻璃基纳米级羟基磷灰石(HAP)生物活性骨水泥(设计为GBNHAPC)。 。研究了纳米级HAP和微米级HAP对骨肉瘤U2-OS细胞的抑制率。分别研究了纳米级HAP对GBNHAPC晶相,微观结构和抗压强度的影响。结论是,纳米级的HAP可以抑制细胞的增殖,而微米级的HAP则不能,并且纳米级的HAP可以均匀地分散在水泥中,并且经过更长的浸泡时间后其形态没有明显改变。 XRD和FTIR结果表明,纳米级HAP不会影响水泥的固化反应。此外,GBNHAPC的抗压强度(92 MPa)比GBC高。人们认为,GBNHAPC可能是一种理想的生物材料,它不仅可以填充骨骼缺损,而且可以抑制癌细胞的生长。

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