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1.
Eur J Pharm Sci ; 120: 40-52, 2018 Jul 30.
Artículo en Inglés | MEDLINE | ID: mdl-29678613

RESUMEN

Fused Deposition Modelling (a.k.a. FDM-3D printing) has been previously employed in the development of personalized medicines with unique properties and release behavior. In the present work, a bilayer dosage form containing two anti-diabetic drugs with different daily dosage regimens; i.e. metformin and glimepiride, was manufactured via FDM 3D printing, studied using a variety of techniques and characterized in vitro. Metformin and glimepiride were embedded in Eudragit® RL sustained release layer and polyvinyl alcohol (PVA) layer respectively. Incorporation of more than one API's into the formulation is desirable, as it increases patient compliance and reduces cost of treatment, especially when distinct dosages of API's can be adjusted individually in situ, in order to meet each patient's specific needs, a capability provided by 3D printing. A number of different preparation methods, which involved different plasticizers and extruders, were tested on manufacturing Eudragit® RL drug-loaded filaments for printing the sustained release layer. The properties of the produced filaments were assessed by means of mechanical and physicochemical characterization techniques and the filaments with the optimum properties were used for printing. Microfocus computed tomography (µCT) imaging-based actual/nominal comparison analysis showed a printing accuracy ranging between -100, +200 µm, while X-ray (XRD) diffractograms revealed the incorporation of the (initially crystalline) API's as amorphous dispersions into polymer matrices. Dissolution tests showed sufficient drug release for both drugs in desired time frames (75 min for glimepiride and 480 min for metformin). The results from the current study emphasize the potentiality of 3D printing technology for tailor-made solid dosage forms for combined pharmacotherapy, even at the cases when API's with different desirable release profiles are employed.


Asunto(s)
Hipoglucemiantes/química , Metformina/química , Impresión Tridimensional , Compuestos de Sulfonilurea/química , Tecnología Farmacéutica/métodos , Administración Oral , Cristalización , Cristalografía por Rayos X , Preparaciones de Acción Retardada , Formas de Dosificación , Portadores de Fármacos , Combinación de Medicamentos , Composición de Medicamentos , Liberación de Fármacos , Hipoglucemiantes/administración & dosificación , Cinética , Metformina/administración & dosificación , Polímeros/química , Alcohol Polivinílico/química , Solubilidad , Compuestos de Sulfonilurea/administración & dosificación , Microtomografía por Rayos X
2.
Enzyme Res ; 2014: 159809, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-25328684

RESUMEN

This work proposes the purification of an active and efficient enzyme, extracellular poly(3-hydroxybutyrate) (PHB)-depolymerase, suitable for industrial applications. This is achieved by the application of an easy, fast, and cheap route, skipping the chromatography step. Chromatography with one or two columns is a common step in the purification procedure, which however renders the isolation of the enzyme a time consuming and an expensive process. A strain of the fungus Penicillium pinophilum (ATCC 9644) is used for the isolation of extracellular PHB-depolymerase. The molecular weight of the purified enzyme is about 35 kDa and is estimated by gel electrophoresis (SDS-PAGE, 12% polyacrylamide). The enzymatic activity of the isolated enzyme is determined to be 3.56-fold similar to that found by other researchers that have used chromatography for the isolation. The as-isolated enzyme disintegrates the poly(3-hydroxybutyrate) (PHB) films successfully, as it is demonstrated by the biodegradation test results provided here.

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