Egyszerű nézet

dc.contributor.author Fulop V
dc.contributor.author Jakab Géza
dc.contributor.author Bozó Tamás
dc.contributor.author Tóth Balázs
dc.contributor.author Endresik D
dc.contributor.author Bertalanné Balogh Emese
dc.contributor.author Kellermayer Miklós
dc.contributor.author Antal István
dc.date.accessioned 2018-07-30T12:49:45Z
dc.date.available 2018-07-30T12:49:45Z
dc.date.issued 2018
dc.identifier 85050148466
dc.identifier.citation pagination=70-78; journalVolume=123; journalTitle=EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/6027
dc.identifier.uri doi:10.1016/j.ejps.2018.07.027
dc.description.abstract The aim of the study was to improve the solubility and dissolution rate of the poorly water soluble drug albendazole via surfactant assisted media milling process. Preparation of a nanosuspension and then post-processing with a solidification technique applied to improve the applicability of nanosuspension in a solid dosage forms carrier. The dry nanosuspension was obtained using microcrystalline cellulose as solid carrier after tray drying at 40 degrees C. Both reconstitution from the solid carrier and dissolution profile studies were investigated in biorelevant Artificial Rumen Fluid (ARF) at pH=6.50 and dissolution media at pH=1.20 and pH=6.80. Reconstitution studies have demonstrated that the mean hydrodynamic diameter values of albendazole crystals released from the dry suspension were nanosized (intensity weighted hydrodynamic diameter values: 200.40+/-2.318nm in ARF at pH=6.50, 197.17+/-0.208nm in dissolution medium at pH=6.80). Thermodynamic solubility studies have indicated a 2.98 times increase in water solubility (144.41+/-0.09mug/ml milled, 48.38+/-0.01mug/ml unmilled, 8.21+/-0.02mug/ml albendazole powder) in ARF at pH=6.50, and 2.33 times in dissolution medium at pH=6.8: (146.27+/-0.28mug/ml milled, 62.71+/-0.04mug/ml unmilled, 9.00+/-0.01mug/ml albendazole powder), and 13.65% increase at pH=1.20 (1728.31+/-3.31mug/ml milled, 1559.41+/-0.40mug/ml unmilled, 1520.70+/-1.39mug/ml albendazole powder), dissolution rates have also increased. Atomic Force Microscopy (AFM) and Scanning Electron Microscopy (SEM) imaging investigations detected no albendazole nanocrystals on the surface of the carrier, which demonstrated the incorporation of albendazole into the microcrystalline cellulose solid carrier structure.
dc.relation.ispartof urn:issn:0928-0987
dc.title Study on the dissolution improvement of albendazole using reconstitutable dry nanosuspension formulation.
dc.type Journal Article
dc.date.updated 2018-07-30T12:08:04Z
dc.language.rfc3066 en
dc.identifier.mtmt 3400121
dc.identifier.pubmed 30010031
dc.contributor.department SE/GYTK/Gyógyszerészeti Intézet
dc.contributor.department SE/AOK/I/Biofizikai és Sugárbiológiai Intézet
dc.contributor.institution Semmelweis Egyetem


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