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纳米生物活性玻璃与嵌段聚氨酯复合材料的制备及其生物活性特性

Preparation and bioactive properties of nano bioactive glass and segmented polyurethane composites.

作者信息

Aguilar-Pérez Fernando J, Vargas-Coronado Rossana F, Cervantes-Uc Jose M, Cauich-Rodríguez Juan V, Covarrubias Cristian, Pedram-Yazdani Merhdad

机构信息

Unidad de Materiales, Centro de Investigación Científica de Yucatán, Merida, México Facultad de Odontología, Universidad Autónoma de Yucatán, Merida, México.

Unidad de Materiales, Centro de Investigación Científica de Yucatán, Merida, México.

出版信息

J Biomater Appl. 2016 Apr;30(9):1362-72. doi: 10.1177/0885328215626361. Epub 2016 Jan 14.

Abstract

Composites of glutamine-based segmented polyurethanes with 5 to 25 wt.% bioactive glass nanoparticles were prepared, characterized, and their mineralization potential was evaluated in simulated body fluid. Biocompatibility with dental pulp stem cells was assessed by MTS to an extended range of compositions (1 to 25 wt.% of bioactive glass nanoparticles). Physicochemical characterization showed that composites retained many of the matrix properties, i.e. those corresponding to semicrystalline elastomeric polymers as they exhibited a glass transition temperature (Tg) between -41 and -36℃ and a melting temperature (Tm) between 46 and 49℃ in agreement with X-ray reflections at 23.6° and 21.3°. However, with bioactive glass nanoparticles addition, tensile strength and strain were reduced from 22.2 to 12.2 MPa and 667.2 to 457.8%, respectively with 25 wt.% of bioactive glass nanoparticles. Although Fourier transform infrared spectroscopy did not show evidence of mineralization after conditioning of these composites in simulated body fluid, X-ray diffraction, scanning electron microscopy, and energy dispersive X-ray microanalysis showed the formation of an apatite layer on the surface which increased with higher bioactive glass concentrations and longer conditioning time. Dental pulp stem cells proliferation at day 5 was improved in bioactive glass nanoparticles composites containing lower amounts of the filler (1-2.5 wt.%) but it was compromised at day 9 in composites containing high contents of nBG (5, 15, 25 wt.%). However, Runx2 gene expression was particularly upregulated for the dental pulp stem cells cultured with composites loaded with 15 and 25 wt.% of bioactive glass nanoparticles. In conclusion, low content bioactive glass nanoparticles and segmented polyurethanes composites deserve further investigation for applications such as guided bone regeneration membranes, where osteoconductivity is desirable but not a demanding mechanical performance.

摘要

制备了含有5至25 wt.%生物活性玻璃纳米颗粒的谷氨酰胺基嵌段聚氨酯复合材料,对其进行了表征,并在模拟体液中评估了它们的矿化潜力。通过MTS评估了其与牙髓干细胞在更广泛组成范围(1至25 wt.%生物活性玻璃纳米颗粒)下的生物相容性。物理化学表征表明,复合材料保留了许多基体性能,即那些对应于半结晶弹性体聚合物的性能,因为它们表现出玻璃化转变温度(Tg)在-41至-36℃之间,熔点温度(Tm)在46至49℃之间,这与23.6°和21.3°处的X射线反射一致。然而,随着生物活性玻璃纳米颗粒的添加,当生物活性玻璃纳米颗粒含量为25 wt.%时,拉伸强度和应变分别从22.2 MPa降至12.2 MPa,从667.2%降至457.8%。尽管傅里叶变换红外光谱在这些复合材料在模拟体液中处理后未显示矿化迹象,但X射线衍射、扫描电子显微镜和能量色散X射线微分析表明,表面形成了磷灰石层,其随着生物活性玻璃浓度的增加和处理时间的延长而增加。含有较低填充量(1 - 2.5 wt.%)的生物活性玻璃纳米颗粒复合材料在第5天牙髓干细胞增殖得到改善,但在含有高含量nBG(5、15、25 wt.%)的复合材料中,第9天增殖受到损害。然而,对于用含有15和25 wt.%生物活性玻璃纳米颗粒的复合材料培养的牙髓干细胞,Runx2基因表达特别上调。总之,低含量生物活性玻璃纳米颗粒与嵌段聚氨酯复合材料在引导骨再生膜等应用中值得进一步研究,在这些应用中,骨传导性是理想的,但对机械性能要求不高。

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