College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
Mater Sci Eng C Mater Biol Appl. 2020 Oct;115:111100. doi: 10.1016/j.msec.2020.111100. Epub 2020 May 19.
In this study, novel dendritic TiO nanofibers (D-Ti NFs) with ultrahigh surface area were for the first time synthesized through in situ hydrothermal treatment of the electrospun TiO nanofibers (E-Ti NFs) and their microstructure, formation mechanism, in vitro biocompatibility and drug delivery property were investigated. SEM observations showed that D-Ti NFs had dendritic and fibrous morphology with the controllable diameter of 899 ± 26 nm to 1955 ± 64 nm. TEM observations showed the individual D-Ti NF was assembled by numerous primary nanowires with the diameter of 7 ± 1 nm. XRD pattern showed that the D-Ti NFs displayed the characteristic peaks at 24.1°, 28.1°, and 48.3°, all of which were assigned to hydrogen titanium oxide hydrate. BET measurement indicated that D-Ti NFs had the ultrahigh specific surface area of 213.41 m/g. D-Ti NFs showed good in vitro biocompatibility when exposed to Hela cells. After soaked in solution of tetracycline hydrochloride (TH, one of the representative antibiotics, model drug), D-Ti NFs supported the loading of TH with the loading efficiency of 63.73 ± 4.61%. TH-loaded D-Ti NFs supported a sustained release model for TH when immersed in the phosphate buffer saline. After separately incubated with two representative types of bacteria: Escherichia coli and Staphylococcus aureus, TH-loaded D-Ti NFs showed excellent antibacterial property to inhibit the growth of the bacteria, indicating that the released TH was biologically active.
在这项研究中,首次通过静电纺丝 TiO 纳米纤维(E-TiNFs)的原位水热处理合成了具有超高表面积的新型树枝状 TiO 纳米纤维(D-TiNFs),并研究了其微观结构、形成机制、体外生物相容性和药物传递性能。SEM 观察表明,D-TiNFs 具有树枝状和纤维状形态,可控直径为 899±26nm 至 1955±64nm。TEM 观察表明,单个 D-TiNF 由许多直径为 7±1nm 的初级纳米线组成。XRD 图谱表明,D-TiNFs 在 24.1°、28.1°和 48.3°处显示出特征峰,均归因于水合氢钛氧化物。BET 测量表明,D-TiNFs 具有 213.41m/g 的超高比表面积。当暴露于 Hela 细胞时,D-TiNFs 表现出良好的体外生物相容性。在浸入盐酸四环素(TH,一种代表性抗生素,模型药物)溶液后,D-TiNFs 支持 TH 的负载,载药效率为 63.73±4.61%。TH 负载的 D-TiNFs 在浸入磷酸盐缓冲盐水时支持 TH 的持续释放模型。分别与两种代表性细菌:大肠杆菌和金黄色葡萄球菌孵育后,负载 TH 的 D-TiNFs 表现出优异的抗菌性能,抑制了细菌的生长,表明释放的 TH 具有生物活性。