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用于药物输送载体应用的自荧光介孔 ZnO 纳米球。

Auto-fluorescent mesoporous ZnO nanospheres for drug delivery carrier application.

机构信息

Industrial Chemistry Laboratory, Central Leather Research Institute (Council of Scientific and Industrial Research), Chennai 600 020, India.

Industrial Chemistry Laboratory, Central Leather Research Institute (Council of Scientific and Industrial Research), Chennai 600 020, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2015 Nov 1;56:335-40. doi: 10.1016/j.msec.2015.06.042. Epub 2015 Jun 23.

Abstract

The zinc oxide (ZnO) nanostructures are very interesting materials because of their practical bio-applications in various areas such as drug delivery, construction of biomaterial, optical and acoustic devices as well as their bactericidal properties. Herein, we have prepared spheroidal mesoporous auto-fluorescent ZnO nanospheres by modified continuous distillation method, showed a blue emission in the concentration of 2mg/ml at 444nm. The auto-fluorescent property of ZnO nanospheres can be used in biomaterials for target sites of tissues/cells, thereby enabling site drug delivery especially in cancer therapy. Initially, the auto-fluorescent property of the ZnO material was characterized by different techniques like PXRD, FESEM with EDAX graph, TEM, ICP-OES, particle sizes, zeta potentials and BET analysis. The mesoporous ZnO nanospheres has attracted well for their crystalline, functionalized and intensified fluorescent properties. The surface of the ZnO nanospheres was porous, spherical and nanometric in size. The synthesized material has enormous potential as a nano-drug-carrier. Preliminary studies indicated that the material prepared has an excellent scope for detection and delivery at the site of therapeutic action.

摘要

氧化锌 (ZnO) 纳米结构是非常有趣的材料,因为它们在药物输送、生物材料构建、光学和声学器件以及杀菌性能等各个领域具有实际的生物应用。在此,我们通过改良的连续蒸馏法制备了具有球形介孔的自荧光 ZnO 纳米球,在 2mg/ml 的浓度下在 444nm 处显示出蓝色发射。ZnO 纳米球的自荧光性质可用于生物材料中的组织/细胞靶位,从而能够实现靶向药物输送,特别是在癌症治疗中。最初,通过 PXRD、FESEM 与 EDAX 图谱、TEM、ICP-OES、粒径、Zeta 电位和 BET 分析等不同技术对 ZnO 材料的自荧光性质进行了表征。介孔 ZnO 纳米球因其结晶、功能化和增强的荧光性质而受到广泛关注。ZnO 纳米球的表面具有多孔、球形和纳米级尺寸。所合成的材料作为纳米药物载体具有巨大的潜力。初步研究表明,所制备的材料在治疗作用部位的检测和输送方面具有出色的应用前景。

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