Department of Biomaterials, Faculty of Dental Science, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Department of Biomaterials, Faculty of Dental Science, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Biomater Adv. 2022 Apr;135:212751. doi: 10.1016/j.bioadv.2022.212751. Epub 2022 Mar 17.
Osteomyelitis is a potentially devastating inflammatory bone disease that leads to bone destruction and loss. Treatment of osteomyelitis requires the removal of residual bacteria as well as osteogenesis with angiogenesis at the site of treatment. Use of an appropriate amount of copper (Cu) in treatment scaffolds may achieve these goals without the risk of toxicity. In this study, the surface of the carbonate apatite honeycomb scaffold was functionalized with Cu through a dissolution-precipitation reaction. The resulting scaffolds retained the honeycomb structure after immersion in CuCl solution, and Cu was precipitated on the surface as libethenite [Cu(OH)PO]. The surface Cu concentration was controlled by the concentration of the CuCl solution. Scaffolds with a surface Cu concentration of 23.8 wt% exhibited antibacterial and cytotoxic effects, whereas those with concentrations of ≤4.6 wt% exerted antibacterial effects without negatively affecting the cellular adhesion, proliferation, differentiation, and calcification of osteoblast-like cells. Furthermore, scaffolds with a surface Cu concentration of 4.6 wt% Cu inhibited bacterial growth for at least 28 days and displayed proangiogenic and pro-osteogenic activities in vivo. These data confirm the success in functionalizing scaffolds with Cu that may be utilized as an innovative osteomyelitis therapy.
骨髓炎是一种潜在的破坏性炎症性骨病,可导致骨破坏和丧失。骨髓炎的治疗需要清除残留的细菌,并在治疗部位成骨和血管生成。在治疗支架中使用适量的铜(Cu)可能会实现这些目标,而不会有中毒的风险。在这项研究中,通过溶解沉淀反应将 Cu 功能化到碳酸磷灰石蜂窝支架的表面。将所得支架浸入 CuCl 溶液后,保留了蜂窝结构,并且 Cu 作为羟磷铜石 [Cu(OH)PO] 沉淀在表面上。表面 Cu 浓度可通过 CuCl 溶液的浓度来控制。表面 Cu 浓度为 23.8wt%的支架表现出抗菌和细胞毒性作用,而浓度≤4.6wt%的支架则具有抗菌作用,而不会对成骨样细胞的细胞黏附、增殖、分化和钙化产生负面影响。此外,表面 Cu 浓度为 4.6wt%的支架可抑制细菌生长至少 28 天,并在体内显示出促血管生成和促成骨作用。这些数据证实了成功地对支架进行 Cu 功能化,这可能是一种创新的骨髓炎治疗方法。