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1.
Acta Pharm ; 59(3): 273-88, 2009 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-19819824

RESUMO

The purpose of the present investigation was to produce a quick/slow biphasic delivery system for metoclopramide hydrochloride using the superdisintegrant Ac-di-sol for the fast release layer and hydroxypropyl methylcellulose K100M and Ucarflock 302 to modulate the release of the drug. A dual component tablet made up of a sustained release and an immediate release layer was prepared by direct compression. A 3(2) full factorial design was applied to systematically optimize the drug release profile of the sustained release layer. The results of the full factorial design indicate that a small amount of HPMC K100M and a large amount of Ucarflock 302 favor sustained release of the metoclopramide hydrochloride vaginal dual component system. The ex vivo residence time reveals that the formulation was retained for more than 10 h. The formulation gave an initial burst effect to provide the loading dose of the drug followed by sustained release for 12 h, thus solving the problem of repeated administration, especially in pregnancy.


Assuntos
Sistemas de Liberação de Medicamentos/métodos , Metoclopramida/administração & dosagem , Administração Intravaginal , Animais , Celulose/administração & dosagem , Celulose/farmacocinética , Força Compressiva , Preparações de Ação Retardada , Feminino , Derivados da Hipromelose , Metilcelulose/administração & dosagem , Metilcelulose/análogos & derivados , Metilcelulose/farmacocinética , Metoclopramida/farmacocinética , Coelhos
2.
J Drug Target ; 14(2): 63-7, 2006 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-16608733

RESUMO

Miniaturizing in chip technology, optics, micro mechanics, medicine, gene and biotechnology requires highly precise positioning techniques. The motivation for the new manipulation technology is the desire to enter the micro- and nanoworld not only by viewing but also acting, altering micro- and nanosized objects. A new era on medicine are expected to happen in the coming years. Due to the advances in the field of nanotechnology, nanodevice manufacturing has been growing gradually. From such achievements in nanotechnology and recent results in biotechnology and genetics, the first operating biological nanorobots are expected to appear in the coming 5 years and more complex diamondoid based nanorobots will become available in about 10 years. In terms of time, it means a very near better future with significant improvements in medicine.


Assuntos
Nanotecnologia/instrumentação , Robótica/instrumentação , Materiais Biocompatíveis , Comunicação , Humanos , Sistema Imunitário , Nanoestruturas/efeitos adversos
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