Huang Dan, Ma Kena, Cai Xinjie, Yang Xu, Hu Yinghui, Huang Pin, Wang Fushi, Jiang Tao, Wang Yining
The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei- MOST) & Key Laboratory of Oral Biomedicine Ministry of Education, School & Hospital of Stomatology, Wuhan University.
Department of Prosthodontics, Hospital of Stomatology, Wuhan University, Wuhan, China.
Int J Nanomedicine. 2017 Oct 11;12:7483-7500. doi: 10.2147/IJN.S141272. eCollection 2017.
Titanium (Ti) and its alloys have been widely used in clinics for years. However, their bio-inert surface challenges application in patients with compromised surgical conditions. Numerous studies were conducted to modify the surface topography and chemical composition of Ti substrates, for the purpose of obtaining antibacterial, angiogenic, and osteogenic activities. In this study, using green electrophoretic deposition method, we fabricated gap-bridging chitosan-gelatin (CSG) nanocomposite coatings incorporated with different amounts of copper (Cu; 0.01, 0.1, 1, and 10 mM for Cu I, II, III, and IV groups, respectively) on the Ti substrates. Physicochemical characterization of these coatings confirmed that Cu ions were successfully deposited into the coatings in a metallic status. After rehydration, the coatings swelled by 850% in weight. Mechanical tests verified the excellent tensile bond strength between Ti substrates and deposited coatings. All Cu-containing CSG coatings showed antibacterial property against both Gram-negative and Gram-positive . The antibacterial property was positively correlated with the Cu concentration. In vitro cytocompatibility evaluation demonstrated that activities of bone marrow stromal cells were not impaired on Cu-doped coatings except for the Cu IV group. Moreover, enhanced angiogenic and osteogenic activities were observed on Cu II and Cu III groups. Overall, our results suggested that Cu-doped CSG nanocomposite coating is a promising candidate to functionalize Ti materials with antibacterial, angiogenic, and osteogenic properties.
钛(Ti)及其合金多年来一直在临床中广泛应用。然而,它们的生物惰性表面对手术条件不佳的患者的应用构成了挑战。为了获得抗菌、促血管生成和成骨活性,人们进行了大量研究来改变钛基底的表面形貌和化学成分。在本研究中,我们采用绿色电泳沉积法,在钛基底上制备了掺入不同量铜(分别为Cu I、II、III和IV组,铜含量为0.01、0.1、1和10 mM)的间隙桥接壳聚糖-明胶(CSG)纳米复合涂层。这些涂层的物理化学表征证实铜离子以金属状态成功沉积到涂层中。复水后,涂层重量膨胀了850%。力学测试验证了钛基底与沉积涂层之间具有优异的拉伸粘结强度。所有含铜的CSG涂层对革兰氏阴性菌和革兰氏阳性菌均表现出抗菌性能。抗菌性能与铜浓度呈正相关。体外细胞相容性评估表明,除Cu IV组外,骨髓基质细胞的活性在掺铜涂层上未受到损害。此外,在Cu II和Cu III组中观察到促血管生成和成骨活性增强。总体而言,我们的结果表明,掺铜的CSG纳米复合涂层是一种有望使钛材料具有抗菌、促血管生成和成骨特性的功能化材料。