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沈健教授、毛春教授课题组在ACS APPLIED MATERIALS & INTERFACES发表研究论文

发布时间:17-07-02 12:48:29 文章来源:1 浏览次数: [ 字号:


In Situ Growth of Mesoporous Silica with Drugs on Titanium Surface and Its Biomedical Applications
Wan, MM (Wan, Mimi)[ 1 ] ; Zhang, J (Zhang, Jin)[ 1 ] ; Wang, Q (Wang, Qi)[ 1 ] ; Zhan, SY (Zhan, Shuyue)[ 1 ] ; Chen, XD (Chen, Xudong)[ 1 ] ; Mao, C (Mao, Chun)[ 1 ]*(毛春); Liu, YH (Liu, Yuhong)[ 1 ] ; Shen, J (Shen, Jian)[ 1 ]*(沈健)

[ 1 ] Nanjing Normal Univ, Sch Chem & Mat Sci, Natl & Local Joint Engn Res Ctr Biomed Funct Mat, Nanjing 210046, Jiangsu, Peoples R China

ACS APPLIED MATERIALS & INTERFACES,201706,9(22),18609-18618

Mesoporous silica has been developed for the modification of titanium surfaces that are used as implant materials. Yet, the traditional modification methods failed to effectively construct mesoporous silica on the titanium surface evenly and firmly, in which the interaction between mesoporous silica and titanium was mainly physical. Here, in situ growth of mesoporous silica on a titanium surface was performed using a simple evaporation-induced self-assembly strategy. Meantime, in situ introduction of drugs (heparin and vancomycin) to mesoporous silica was also adopted to improve the drug-loading amount. Both the above-mentioned processes were completed at the same time. Transmission electron microscopy, N-2 adsorption-desorption isotherms, Fourier transform infrared spectroscopy, scanning electron microscopy, and water contact angle measurements were used to characterize the structure of the mesoporous silica film. Results indicated that the mesoporous silica film that in situ grew on the titanium surface was smooth, thin, transparent, and stable. Cytotoxicity, proliferation performance of osteoblast cells, and in vitro and in vivo studies of the antibacterial activity of the coating were tested. This is the first study to modify the titanium surface by the in situ growth of a mesoporous silica coating with two kinds of drugs. The stability of the mesoporous silica coating can be attributed to the chemical bonding between dopamine and silicon hydroxyl of the mesoporous silica coating, and the smooth surface of mesoporous silica is a result of the method of in situ growth. The large amount of drug-loading also could be ascribed to the in situ introduction of drugs during the synthetic process. The strategy proposed in this work will bring more possibilities for the preparation of advanced functional materials based on the combination of mesoporous structure and metallic materials.


文章链接:
http://pubs.acs.org/doi/abs/10.1021/acsami.7b05163
 


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