Majumdar Ujjayan, Bose Susmita
W. M. Keck Biomedical Materials Research Laboratory, School of Mechanical and Materials Engineering, Washington State University, Pullman, Washington, 99164-2920, USA.
Mater Chem Phys. 2024 Feb 1;313. doi: 10.1016/j.matchemphys.2023.128622. Epub 2023 Nov 17.
Titanium alloys are widely used as implant materials due to their biocompatibility and superior mechanical properties for high-load-bearing applications. However, one of the major challenges is their inferior bioactivity and osseoconductivity. Hydroxyapatite is widely used as an alternative material for bone implants due to its compositional similarity to natural bone. In this study, hydroxyapatite is coated on Ti6Al4V discs to enhance its bioactivity. The coated discs are drop-casted with curcumin in the lower layer and vitamin C in the upper layer. This study aims to evaluate the effects of this dual drug delivery system on osteoblast cell proliferation, inhibition of osteoclastogenesis, chemo-preventive and infection control properties. The coating strength obtained is 22 ± 2 MPa. The release from the dual delivery system shows a 1.5-fold increase in osteoblast cell viability, a 1.5-fold reduction in osteoclast cell differentiation, a 2-fold decrease in osteosarcoma growth. The release of curcumin demonstrates a 94% antibacterial efficacy, while the release of vitamin C exhibits an efficacy of 98.6% aganist . This multifunctional system can be used as a potential implant for load-bearing applications.
钛合金因其生物相容性和适用于高负荷应用的优异机械性能而被广泛用作植入材料。然而,其主要挑战之一是生物活性和骨传导性较差。羟基磷灰石由于其成分与天然骨相似,被广泛用作骨植入物的替代材料。在本研究中,羟基磷灰石被涂覆在Ti6Al4V圆盘上以增强其生物活性。涂覆的圆盘下层滴铸姜黄素,上层滴铸维生素C。本研究旨在评估这种双药递送系统对成骨细胞增殖、抑制破骨细胞生成、化学预防和感染控制特性的影响。获得的涂层强度为22±2MPa。双递送系统的释放显示成骨细胞活力增加1.5倍,破骨细胞分化减少1.5倍,骨肉瘤生长减少2倍。姜黄素的释放显示出94%的抗菌功效,而维生素C的释放显示出98.6%的功效。这种多功能系统可作为承重应用的潜在植入物。