Multigner Marta, Morales Irene, Muñoz Marta, Bonache Victoria, Giacomone Fernando, de la Presa Patricia, Benavente Rosario, Torres Belén, Mantovani Diego, Rams Joaquín
Department of Applied Mathematics, Materials Science and Engineering and Electronic Technology, Universidad Rey Juan Carlos, 28933 Madrid, Spain.
Instituto de Magnetismo Aplicado, UCM-ADIF-CSIC, A6 22,500 Km, 28230 Las Rozas, Spain.
Materials (Basel). 2021 Jul 31;14(15):4300. doi: 10.3390/ma14154300.
To modulate the properties of degradable implants from outside of the human body represents a major challenge in the field of biomaterials. Polylactic acid is one of the most used polymers in biomedical applications, but it tends to lose its mechanical properties too quickly during degradation. In the present study, a way to reinforce poly-L lactic acid (PLLA) with magnetic nanoparticles (MNPs) that have the capacity to heat under radiofrequency electromagnetic fields (EMF) is proposed. As mechanical and degradation properties are related to the crystallinity of PLLA, the aim of the work was to explore the possibility of modifying the structure of the polymer through the heating of the reinforcing MNPs by EMF within the biological limit range · < 5·× 10 Am·s. Composites were prepared by dispersing MNPs under sonication in a solution of PLLA. The heat released by the MNPs was monitored by an infrared camera and changes in the polymer were analyzed with differential scanning calorimetry and nanoindentation techniques. The crystallinity, hardness, and elastic modulus of nanocomposites increase with EMF treatment.
从人体外部调节可降解植入物的性能是生物材料领域的一项重大挑战。聚乳酸是生物医学应用中最常用的聚合物之一,但在降解过程中它往往会过快地失去其机械性能。在本研究中,提出了一种用磁性纳米颗粒(MNPs)增强聚-L-乳酸(PLLA)的方法,该磁性纳米颗粒能够在射频电磁场(EMF)下发热。由于机械性能和降解性能与PLLA的结晶度有关,这项工作的目的是探索在生物极限范围·<5·×10 A m·s内通过EMF加热增强型MNPs来改变聚合物结构的可能性。通过在超声处理下将MNPs分散在PLLA溶液中来制备复合材料。用红外热像仪监测MNPs释放的热量,并用差示扫描量热法和纳米压痕技术分析聚合物的变化。纳米复合材料的结晶度、硬度和弹性模量随EMF处理而增加。