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用于骨修复应用的生物活性和可生物降解的聚己内酯基纳米复合材料

Bioactive and Biodegradable Polycaprolactone-Based Nanocomposite for Bone Repair Applications.

作者信息

Emadi Hosein, Karevan Mehdi, Masoudi Rad Maryam, Sadeghzade Sorour, Pahlevanzadeh Farnoosh, Khodaei Mohammad, Khayatzadeh Saber, Lotfian Saeid

机构信息

School of Mechanical Engineering, College of Engineering, University of Tehran, Tehran 14176-14411, Iran.

Department of Mechanical Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran.

出版信息

Polymers (Basel). 2023 Aug 31;15(17):3617. doi: 10.3390/polym15173617.

Abstract

This study investigated the relationship between the structure and mechanical properties of polycaprolactone (PCL) nanocomposites reinforced with baghdadite, a newly introduced bioactive agent. The baghdadite nanoparticles were synthesised using the sol-gel method and incorporated into PCL films using the solvent casting technique. The results showed that adding baghdadite to PCL improved the nanocomposites' tensile strength and elastic modulus, consistent with the results obtained from the prediction models of mechanical properties. The tensile strength increased from 16 to 21 MPa, and the elastic modulus enhanced from 149 to 194 MPa with fillers compared to test specimens without fillers. The thermal properties of the nanocomposites were also improved, with the degradation temperature increasing from 388 °C to 402 °C when 10% baghdadite was added to PCL. Furthermore, it was found that the nanocomposites containing baghdadite showed an apatite-like layer on their surfaces when exposed to simulated body solution (SBF) for 28 days, especially in the film containing 20% nanoparticles (PB20), which exhibited higher apatite density. The addition of baghdadite nanoparticles into pure PCL also improved the viability of MG63 cells, increasing the viability percentage on day five from 103 in PCL to 136 in PB20. Additionally, PB20 showed a favourable degradation rate in PBS solution, increasing mass loss from 2.63 to 4.08 per cent over four weeks. Overall, this study provides valuable insights into the structure-property relationships of biodegradable-bioactive nanocomposites, particularly those reinforced with new bioactive agents.

摘要

本研究调查了一种新引入的生物活性剂——斜硅钙石增强的聚己内酯(PCL)纳米复合材料的结构与力学性能之间的关系。采用溶胶-凝胶法合成了斜硅钙石纳米颗粒,并通过溶液浇铸技术将其掺入PCL薄膜中。结果表明,向PCL中添加斜硅钙石可提高纳米复合材料的拉伸强度和弹性模量,这与力学性能预测模型得到的结果一致。与无填料的测试样品相比,添加填料后拉伸强度从16 MPa提高到21 MPa,弹性模量从149 MPa提高到194 MPa。纳米复合材料的热性能也得到了改善,当向PCL中添加10%斜硅钙石时,降解温度从388℃升高到402℃。此外,发现含有斜硅钙石的纳米复合材料在模拟体液(SBF)中暴露28天后,其表面会形成类似磷灰石的层,尤其是在含有20%纳米颗粒的薄膜(PB20)中,其磷灰石密度更高。向纯PCL中添加斜硅钙石纳米颗粒还提高了MG63细胞的活力,使第5天的活力百分比从PCL中的103提高到PB20中的136。此外,PB20在PBS溶液中显示出良好的降解速率,四周内质量损失从2.63%增加到4.08%。总的来说,本研究为可生物降解-生物活性纳米复合材料的结构-性能关系提供了有价值的见解,特别是那些用新型生物活性剂增强的复合材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac48/10490551/f89937b72a93/polymers-15-03617-g001.jpg

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