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Production of Loratadine drug nanoparticles using ultrasonic-assisted Rapid expansion of supercritical solution into aqueous solution (US-RESSAS) Sodeifian G, Sajadian SA, Ardestani NS, Razmimanesh F Journal of Supercritical Fluids, 147, 241, 2019 |
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Solubility measurement of an antihistamine drug (Loratadine) in supercritical carbon dioxide: Assessment of qCPA and PCP-SAFT equations of state Sodeifian G, Razmimanesh F, Sajadian SA, Panah HS Fluid Phase Equilibria, 472, 147, 2018 |
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Continuous nanoparticles production through a combination of a micro electro mechanical system and an electromagnetic resonator cavity Yousefi-Seyf J, Zarghami R, Haririan I Particulate Science and Technology, 36(6), 666, 2018 |
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Dissolution evaluation in vitro and bioavailability in vivo of self-microemulsifying drug delivery systems for pH-sensitive drug loratadine Li HY, Tan YG, Yang LX, Gao LJ, Wang T, Yang X, Quan DQ Journal of Microencapsulation, 32(2), 175, 2015 |
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Physicochemical characterization and dissolution enhancement of loratadine by solid dispersion technique Bandari S, Jadav S, Eedara BB, Jukanti R, Veerareddy PR Korean Journal of Chemical Engineering, 30(1), 238, 2013 |
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Dissolution rate enhancement of loratadine in polyvinylpyrrolidone K-30 solid dispersions by solvent methods Frizon F, Eloy JD, Donaduzzi CM, Mitsui ML, Marchetti JM Powder Technology, 235, 532, 2013 |
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Bioconversion of the antihistaminc drug loratadine by tobacco cell suspension cultures expressing human cytochrome P450 3A4 Warzecha H, Ferme D, Peer M, Frank A, Unger M Journal of Bioscience and Bioengineering, 109(3), 288, 2010 |
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Preparation and coating of finely dispersed drugs 4. Loratadine and danazol Skapin SD, Matijevic E Journal of Colloid and Interface Science, 272(1), 90, 2004 |