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Erschienen in: Journal of Nanoparticle Research 3/2013

01.03.2013 | Research Paper

Facile fabrication of mesoporous ZnO nanospheres for the controlled delivery of captopril

verfasst von: Haja Bava Bakrudeen, John Tsibouklis, Boreddy S. R. Reddy

Erschienen in: Journal of Nanoparticle Research | Ausgabe 3/2013

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Abstract

In the present study, to formulate captopril in a hierarchical porous structure of ZnO nanospheres by means of the soluble-starch-insertion method, state of drug carrier delivery toward oral route and the mode of delivery in suitable medium. Mesoporous ZnO nanospheres were synthesized by simple soluble-starch-insertion method, followed by loading of captopril using ultrasonic force. The materials were characterized by PXRD, SEM, FESEM, TEM, TGA, FT-IR, and BET analyses, and biocompatibility studies. Captopril-loaded porous ZnO nanospheres were evaluated as in vitro drug-release studies and its kinetic models. Crystallite plane arrangement, functional groups, materials morphology, and porosity of porous ZnO nanospheres were confirmed. Larger surface area and distribution in constrained pores on its surface make the nanospheres suitable for high drug loading of captopril. The ZnO nanocrystallites have given porous properties on the spherical surface leads to the drug adsorption. The loading and release studies (in vitro in simulated gastric and intestinal fluids) have shown that both were affected by the mesoporous nanospheres’ surface properties of the ZnO materials and its biocompatibility has also been proved. Therefore, the in vitro experiments have indicated the considerable promise of mesoporous ZnO nanospheres, fabricated by the soluble-starch-insertion method acting as a biocompatible carrier for the controlled delivery of captopril in oral route of administration.

Graphical Abstract

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Metadaten
Titel
Facile fabrication of mesoporous ZnO nanospheres for the controlled delivery of captopril
verfasst von
Haja Bava Bakrudeen
John Tsibouklis
Boreddy S. R. Reddy
Publikationsdatum
01.03.2013
Verlag
Springer Netherlands
Erschienen in
Journal of Nanoparticle Research / Ausgabe 3/2013
Print ISSN: 1388-0764
Elektronische ISSN: 1572-896X
DOI
https://doi.org/10.1007/s11051-013-1505-9

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