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新型具有超高表面积的树枝状 TiO2 纳米纤维的简便合成、微观结构、形成机制、体外生物相容性和药物传递性能。

Facile synthesis, microstructure, formation mechanism, in vitro biocompatibility, and drug delivery property of novel dendritic TiO nanofibers with ultrahigh surface area.

机构信息

College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, China.

College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Oct;115:111100. doi: 10.1016/j.msec.2020.111100. Epub 2020 May 19.

DOI:10.1016/j.msec.2020.111100
PMID:32600704
Abstract

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.

摘要

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。

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