Zhang Hao, Wang Guangchao, Liu Peizhao, Tong Dake, Ding Chen, Zhang Zequan, Xie Youtao, Tang Hao, Ji Fang
Department of Orthopedics, Changhai Hospital, The Second Military Medical University No. 168 Changhai Road 200433 Shanghai China
Key Laboratory of Inorganic Coating Materials, Shanghai Institute of Ceramics, Chinese Academy of Sciences Shanghai China.
RSC Adv. 2018 Mar 2;8(17):9223-9231. doi: 10.1039/c7ra12347g. eCollection 2018 Feb 28.
Titanium (Ti) and its alloys are widely applied as orthopedic implants for hip and knee prostheses, fixation, and dental implants. However, Ti and its alloys are bioinert and susceptible to bacteria and biofilm formation. Thus, surface biofunctionalisation of Ti is essential for improving the biofunction of Ti. The current study indicated that calcium phosphate bone cement with vancomycin doped on micro-patterned Ti with a grid-like structure surface could preserve the property of inhibition of bacterial adhesion and biofilm formation while not affecting the osteogenic differentiation. The present study investigated whether the biological performance of the bactericidal effect is preserved . The rabbit osteomyelitis model with tibial medullary cavity placement of Ti rods was employed to analyze the antibacterial effect of vancomycin-loaded Ti coatings with interconnected micro-patterned structure (TV). Thirty female rabbits ( = 10) were used to establish the implant-associated infection. Prior to implanting the T0 and TV rods into the medullary cavity of the left tibia of the rabbits, 10 CFU mL methicillin-resistant (MRSA) was injected into the medullary cavity of the left tibia of the rabbits. The sterile Ti rod (NT) was used as the blank control. After 3 weeks, bone pathology was evaluated using X-ray and micro-CT. The study proposed that TV has the potential for prophylaxis against MRSA infection. Thus, the interconnected micro-patterned structured Ti rods loaded with vancomycin could be applied for preventing Ti implant-associated infections.
钛(Ti)及其合金被广泛用作髋关节和膝关节假体、固定装置以及牙科植入物的骨科植入材料。然而,钛及其合金具有生物惰性,易受细菌感染并形成生物膜。因此,钛的表面生物功能化对于改善其生物功能至关重要。当前研究表明,在具有网格状结构表面的微图案化钛上掺杂万古霉素的磷酸钙骨水泥,在不影响成骨分化的情况下,能够保持抑制细菌粘附和生物膜形成的特性。本研究调查了杀菌效果的生物学性能是否得以保留。采用在兔胫骨骨髓腔植入钛棒的兔骨髓炎模型,来分析具有相互连接的微图案结构的载万古霉素钛涂层(TV)的抗菌效果。使用30只雌性兔子(每组 = 10只)建立植入相关感染模型。在将T0和TV棒植入兔子左胫骨骨髓腔之前,先向兔子左胫骨骨髓腔内注射10 CFU/mL耐甲氧西林金黄色葡萄球菌(MRSA)。无菌钛棒(NT)用作空白对照。3周后,使用X射线和微型计算机断层扫描(micro-CT)评估骨病理学情况。该研究表明TV具有预防MRSA感染的潜力。因此,载有万古霉素的相互连接的微图案结构化钛棒可用于预防钛植入相关感染。