在经氨基修饰的Si O 2微球表面包裹氧化石墨烯,制备核壳结构的 SiO2-NH2@GO 复合微球。采用傅立叶转换-红外光谱仪(FT-IR)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和紫外分光光度计(UV)等对样品进行表征与分析。结果表明,SiO2-NH2@GO 复合微球具有良好的单分散性(粒径约为550 nm),并且 GO 均匀地包裹在 SiO2表面。与纯SiO2相比,SiO2-NH2@GO 通过布洛芬溶液浸泡载药的载药率有了较大提高,从42.9%提高到了68.8%,并且表现出更好的缓释性,24 h 累积释药量达到92%,给药时间延长20 h左右。表明 SiO2-NH2@GO复合微球有望成为一种新的药物载体。
The silica@graphene oxide (SiO2-NH2@GO)microspheres with core-shell structure were synthesized through the electrostatic interactions by encapsulation of graphene oxide on the surface of amino modified silica microspheres.The as-prepared microspheres were characterized by FT-IR,SEM,TEM and UV,etc.The re-sults show that the SiO2-NH2@GO microspheres are monodispersed with the diameter of 550 nm.GO wrapped on SiO2 surface evenly which were examined by SEM and TEM.Compared with pure SiO2 ,the drug loading of SiO2-NH2@GO microspheres was increased highly from 42.9% to 68.8% after immersed in ibuprofen solu-tion,the 92% drug was released after soaked for 24 h and the administration time was prolonged about 20 h. This implies that the monodispersed SiO2-NH2@GO microspheres synthesized in this work have potential usage as drug carriers in the biomedical fields.
参考文献
[1] | Xiaoying Yang;Xiaoyan Zhang;Zunfeng Liu .High-Efficiency Loading and Controlled Release of Doxorubicin Hydrochloride on Graphene Oxide[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2008(45):17554-17558. |
[2] | Dhar, S.;Kolishetti, N.;Lippard, S.J.;Farokhzad, O.C. .Targeted delivery of a cisplatin prodrug for safer and more effective prostate cancer therapy in vivo[J].Proceedings of the National Academy of Sciences of the United States of America,2011(5):1850-1855. |
[3] | Fang J;Nakamura H;Maeda H .The EPR effect: Unique features of tumor blood vessels for drug delivery, factors involved, and limitations and augmentation of the effect.[J].Advanced drug delivery reviews,2011(3):136-151. |
[4] | Mistry S;Kundu D;Datta S;Basu D .Comparison of bioactive glass coated and hydroxyapatite coated titanium dental implants in the human jaw bone.[J].Australian Dental Journal,2011(1):68-75. |
[5] | Zhao X S;Lu G Q;Whittaker A K et al.Comprehen-sive study of surface chemistry of MCM-41 using 29 Si CP/MAS NMR,FT-IR,pyridine-TPD,and TGA[J].Journal of Physical Chemistry B,1997,101(33):6525-6531. |
[6] | Novoselov K S;Geim A K;Morozov S V .Electric field effect in atomically thin carbon films[J].SCIENCE,2004,306(5696):666-669. |
[7] | Eda G;Chhowalla M .Graphene-based Composite Thin Films for Electronics[J].Nano letters,2009(2):814-818. |
[8] | Changsheng Shan;Huafeng Yang;Jiangfeng Song;Dongxue Han;Ari Ivaska;Li Niu .Direct Electrochemistry of Glucose Oxidase and Biosensing for Glucose Based on Graphene[J].Analytical chemistry,2009(6):2378-2382. |
[9] | 何春兰,刘成伦,谢太平,王媛,张静,张良.石墨烯的制备及石墨烯修饰电极对p-苯二酚的催化氧化[J].高等学校化学学报,2012(06):1290-1294. |
[10] | Zhang, R.;Olin, H. .Carbon nanomaterials as drug carriers: Real time drug release investigation[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2012(5):1247-1252. |
[11] | 柏嵩,沈小平.石墨烯基无机纳米复合材料[J].化学进展,2010(11):2106-2118. |
[12] | Stober W;Fink A .Controlled growth of monodisperse silica spheres in the micron size range[J].J Colloid In-terface Sci,1968,26(1):62-69. |
[13] | Hummers W S .Preparation of graphitic oxide[J].Journal of the American Chemical Society,1958,80(6):1339-1339. |
[14] | Kokubo T;Takadama H .How useful is SBF in predicting in vivo bone bioactivity?[J].Biomaterials,2006(15):2907-2915. |
[15] | Liu, J.-W.;Zhang, Q.;Chen, X.-W.;Wang, J.-H. .Surface assembly of graphene oxide nanosheets on SiO_2 particles for the selective isolation of hemoglobin[J].Chemistry: A European journal,2011(17):4864-4870. |
[16] | Ni, M.;Xu, Q.-Q.;Yin, J.-Z. .Preparation of controlled release nanodrug ibuprofen supported on mesoporous silica using supercritical carbon dioxide[J].Journal of Materials Research,2012(22):2902-2910. |
[17] | Yang YJ;Tao X;Hou Q .Fluorescent mesoporous silica nanotubes incorporating CdS quantum dots for controlled release of ibuprofen.[J].Acta biomaterialia,2009(9):3488-3496. |
[18] | 李晓,赵东林,白利忠,李峰,赵海静,高龙飞.盐酸阿霉素在纳米载体氧化石墨烯上的可控负载与释放[J].功能材料,2013(01):96-98,102. |
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