Literature DB >> 21374616

Tadalafil inclusion in microporous silica as effective dissolution enhancer: optimization of loading procedure and molecular state characterization.

Mohammed M Mehanna1, Adel M Motawaa, Magda W Samaha.   

Abstract

Tadalafil is an efficient drug used to treat erectile dysfunction characterized by poor water solubility, which has a negative influence on its bioavailability. Utilization of microporous silica represents an effective and facile technology to increase the dissolution rate of poorly soluble drugs. Our strategy involved directly introducing tadalafil as guest molecule into microporous silica as host material by incipient wetness impregnation method. To optimize tadalafil inclusion, response surface methodology (RSM) using 3(3) factorial design was utilized. Furthermore, to investigate the molecular state of tadalafil, Fourier-transform infrared spectroscopy, differential scanning calorimetery, thermal gravimetrical analysis, nitrogen adsorption, and powder X-ray diffraction (PXRD) were carried out. The results obtained pointed out that the quantity of microporous silica was the predominant factor that increased the loading efficiency. For the optimized formula, the loading efficiency was 42.50 wt %. Adsorption-desorption experiments indicated that tadalafil has been introduced into the micropores. Powder XRD and differential scanning calorimetry analyses revealed that tadalafil is arranged in amorphous form. In addition, the dissolution rate of tadalafil from the microporous silica was faster than that of free drug. Amorphous tadalafil occluded in microporous silica did not crystallize over 3 months. These findings contributed in opening a new strategy concerning the utilization of porous silica for the dissolution rate enhancement.
Copyright © 2010 Wiley-Liss, Inc.

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Year:  2010        PMID: 21374616     DOI: 10.1002/jps.22420

Source DB:  PubMed          Journal:  J Pharm Sci        ISSN: 0022-3549            Impact factor:   3.534


  6 in total

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3.  Optimizing Prednisolone Loading into Distiller's Dried Grain Kafirin Microparticles, and In vitro Release for Oral Delivery.

Authors:  Esther T L Lau; Stuart K Johnson; Barbara A Williams; Deirdre Mikkelsen; Elizabeth McCourt; Roger A Stanley; Ram Mereddy; Peter J Halley; Kathryn J Steadman
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4.  Bioenhanced advanced third generation solid dispersion of tadalafil: Repurposing with improved therapy in pyelonephritis.

Authors:  Prashant P Mande; Sagar S Bachhav; Padma V Devarajan
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5.  Development on porous particles of Pueraria lobatae Radix for improving its compactibility and dissolution.

Authors:  MiaoMiao Zhou; YouJie Wang; Fei Wu; Lan Shen; Xiao Lin; Yi Feng
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6.  Enhanced Dissolution Rate of Tadalafil Nanoparticles Prepared by Sonoprecipitation Technique: Optimization and Physicochemical Investigation.

Authors:  Rayehe Teymouri Rad; Seyed Alireza Mortazavi; Alireza Vatanara; Simin Dadashzadeh
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  6 in total

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