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Publication
Featured researches published by Mazen Hanna.
Journal of Pharmaceutical Sciences | 2011
Miranda L. Cheney; David R. Weyna; Ning Shan; Mazen Hanna; Lukasz Wojtas; Michael J. Zaworotko
Meloxicam is a nonsteroidal anti-inflammatory drug with low aqueous solubility and high permeability. Because of its low solubility under acidic conditions (e.g., pH 1-5), it can take more than 2 h for meloxicam to reach its therapeutic concentration in humans. Although the slow onset of meloxicam does not necessarily impact the current label indications, the slow onset does prevent meloxicam from its potential application for the relief of mild-to-medium-level acute pain. Pharmaceutical cocrystallization of meloxicam, which represents a promising approach to generate diverse novel crystal forms, could be used to improve the aqueous solubility and accelerate the onset of action. In this contribution, we describe how a novel method can be used for coformer selection to enable the efficient and effective development of a pharmaceutical cocrystal with desired physicochemical and pharmacokinetic properties. Aspirin was selected as the coformer for meloxicam based upon this alternative route, which combines the supramolecular synthon approach with findings in the previous pharmacological and toxicological studies of meloxicam. The resulting cocrystal of meloxicam and aspirin exhibited superior kinetic solubility and possessed the potential to significantly decrease the time required to reach the human therapeutic concentration compared with the parent drug, meloxicam.
Molecular Pharmaceutics | 2012
David R. Weyna; Miranda L. Cheney; Ning Shan; Mazen Hanna; Michael J. Zaworotko; Vasyl Sava; Shijie Song; Juan Sanchez-Ramos
Meloxicam is a nonsteroidal anti-inflammatory drug prescribed for rheumatoid arthritis, osteoarthritis, postoperative pain and fever. Meloxicam exhibits low solubility in acidic aqueous media and a slow onset of action in biological subjects. An oral dosage form of meloxicam with enhanced aqueous solubility is desired to enable a faster onset of action and its use for mild-to-medium-level acute pain relief. With this in mind, we examine the solubility and pharmacokinetics of 12 meloxicam cocrystals with carboxylic acids. Dissolution studies of meloxicam and its cocrystals were performed in pH 6.5 phosphate buffer solutions at 37 °C. In addition, pharmacokinetic profiles over four hours were acquired after oral administration of a 10 mg/kg (meloxicam equivalent) solid suspension in rats. The majority of meloxicam cocrystals were found to achieve higher meloxicam concentrations in dissolution media and enhanced oral absorption compared to that of pure meloxicam. All meloxicam cocrystals were converted to meloxicam form I when the slurry reached equilibrium. To better understand how cocrystallization impacts the absorption of meloxicam after oral administration, correlations between the in vitro and in vivo data were explored. The results suggest that the meloxicam cocrystals with a faster dissolution rate would exhibit increased oral absorption and an earlier onset of action.
CrystEngComm | 2012
David R. Weyna; Miranda L. Cheney; Ning Shan; Mazen Hanna; Łukasz Wojtas; Michael J. Zaworotko
Pharmaceutical cocrystals of tadalafil with methylparaben, propylparaben and hydrocinnamic acid have been prepared and characterized. The crystal packing observed in the three resulting cocrystals reveals that tadalafil molecules form persistent hydrogen-bonded chains which accept additional hydrogen bonds from the OH moieties of the respective coformers.
Crystal Growth & Design | 2010
Miranda L. Cheney; Ning Shan; Elisabeth R. Healey; Mazen Hanna; Lukasz Wojtas; Michael J. Zaworotko; Vasyl Sava; Shijie Song; Juan Sanchez-Ramos
Crystal Growth & Design | 2010
Miranda L. Cheney; David R. Weyna; Ning Shan; Mazen Hanna; Lukasz Wojtas; Michael J. Zaworotko
Archive | 2010
Mazen Hanna; Ning Shan; Miranda L. Cheney; David R. Weyna; Raymond K. Houck
Archive | 2010
Mazen Hanna; Ning Shan; Miranda L. Cheney; David R. Weyna
Archive | 2011
Mazen Hanna; Ning Shan; Miranda L. Cheney; David R. Weyna; Paul K. Isbester; Xufeng Sun
Archive | 2010
Mazen Hanna; Ning Shan; Miranda L. Cheney; David R. Weyna
Archive | 2008
Mazen Hanna; Ning Shan; Miranda L. Cheney