Kadhim Tamara R, Oleiwi Jawad K, Hamad Qahtan A
Materials Engineering Department, University of Technology, Baghdad, Iraq.
Int J Biomater. 2023 Jan 12;2023:4219841. doi: 10.1155/2023/4219841. eCollection 2023.
Bone plates are essential for bone fracture healing because they modify the biomechanical microenvironment at the fracture site to provide the necessary mechanical fixation for fracture fragments. The objective of this study was to determine cell availability, antibacterial activity, and wettability through a contact angle test. However, biocomposites that involve UHMWPE reinforced with n-HA and n-TiO particles at different fractions (0, 1.5, 2.5, 3.5, and 4.5%) and 5% from carbon and Kevlar fibers were fabricated by hot pressing technique. In vitro studies revealed good cell viability on the surface of the hybrid biocomposite even after 72 hr. The UHMEPE nanocomposite reinforced with carbon showed better cell attachment for fibroblasts than other UHMWPE nanocomposite materials reinforced with Kevlar fiber. The results of the contact angle measurements indicated that the incorporation of nanoparticles and the fiber reinforcement increased the wettability due to the hydrophilic character of nanobiocomposite, and also (UHMWPE-4.5% wt. TiO-CF) biocomposite was the best wettability (∼48% as compared to neat UHMWPE). Antibacterial experiments involving Gram-positive bacteria, confirm excellent bactericidal property for (UHMWPE-4.5% wt. TiO-CF) biocomposite. Thermal analysis of the produced nanocomposites revealed that they had higher melting and crystallinity temperatures than pure UHMWPE.
接骨板对于骨折愈合至关重要,因为它们可改变骨折部位的生物力学微环境,为骨折碎片提供必要的机械固定。本研究的目的是通过接触角测试确定细胞可用性、抗菌活性和润湿性。然而,采用热压技术制备了不同比例(0%、1.5%、2.5%、3.5%和4.5%)的n-HA和n-TiO颗粒以及5%的碳和芳纶纤维增强的UHMWPE生物复合材料。体外研究表明,即使在72小时后,混合生物复合材料表面仍具有良好的细胞活力。与其他芳纶纤维增强的UHMWPE纳米复合材料相比,碳增强的UHMEPE纳米复合材料对成纤维细胞表现出更好的细胞附着性。接触角测量结果表明,由于纳米生物复合材料的亲水性,纳米颗粒的掺入和纤维增强提高了润湿性,并且(UHMWPE-4.5% wt. TiO-CF)生物复合材料具有最佳润湿性(与纯UHMWPE相比约为48%)。涉及革兰氏阳性菌的抗菌实验证实(UHMWPE-4.5% wt. TiO-CF)生物复合材料具有优异的杀菌性能。对制备的纳米复合材料进行热分析表明,它们具有比纯UHMWPE更高的熔点和结晶温度。