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评价近红外激光辐射的碳纳米管-羟基磷灰石纳米复合材料作为生物活性植入涂层。

Evaluation of carbon nanotubes-hydroxyapatite nanocomposites as bioactive implant coats radiated by near infrared laser.

机构信息

Dental Biomaterials Department, Faculty of Dentistry, Alexandria University, Alexandria, Egypt.

Polymeric Materials Research Department, Advanced Technology and New Materials Research Institute, City of Scientific Research and Technological Applications, New Borg Al-Arab City, Alexandria, Egypt.

出版信息

Eur J Oral Sci. 2022 Aug;130(4):e12873. doi: 10.1111/eos.12873. Epub 2022 Jun 7.

Abstract

This study aimed to evaluate carbon nanotubes-hydroxyapatite nanocomposites as bioactive titanium implant coats and to assess the effect of near-infrared radiation on these nanocomposites. Carbon nanotubes were acid-functionalized, and hydroxyapatite was prepared by the wet-chemical precipitation method. Both precursors were used to prepare the carbon nanotubes-hydroxyapatite nanocomposites in two concentrations of hydroxyapatite (0.5 and 1 wt.%). The formed nanocomposites were characterized and used to coat silanized titanium discs and cylinders. Half the specimens of each group were radiated by near-infrared laser, then wettability and shear bond strength were tested for all specimens. Bioactivity was tested by monitoring the formation of calcium phosphate compounds after soaking in simulated body fluid. A significant increase in wettability and bond strength was found in the radiated coats compared to the non-radiated ones with the 1% hydroxyapatite group showing the highest values followed by 0.5% hydroxyapatite then the carbon nanotubes group. The two-way ANOVA test showed that both the difference in material and the laser treatment have had a statistically significant contribution to the increase in wettability and bond strength. The radiated groups also contributed to the formation of more calcium phosphate crystals of larger sizes and higher degrees of crystallinity.

摘要

本研究旨在评估碳纳米管-羟基磷灰石纳米复合材料作为生物活性钛植入物涂层,并评估近红外辐射对这些纳米复合材料的影响。碳纳米管经过酸功能化处理,羟基磷灰石通过湿化学沉淀法制备。两种前体均用于在两种羟基磷灰石浓度(0.5 和 1wt%)下制备碳纳米管-羟基磷灰石纳米复合材料。对形成的纳米复合材料进行了表征,并用于涂覆硅烷化钛圆盘和圆柱。每个组别的一半标本接受近红外激光辐射,然后测试所有标本的润湿性和剪切结合强度。通过监测在模拟体液中浸泡后磷酸钙化合物的形成来测试生物活性。与未辐射的涂层相比,辐射后的涂层的润湿性和结合强度显著增加,其中 1%羟基磷灰石组显示出最高的值,其次是 0.5%羟基磷灰石组,然后是碳纳米管组。双因素方差分析表明,材料差异和激光处理都对润湿性和结合强度的增加有统计学意义。辐射组还促进了更大尺寸和更高结晶度的更多磷酸钙晶体的形成。

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