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dc.contributor.author Füredi, Petra
dc.contributor.author Pápay, Zsófia Edit
dc.contributor.author Kovacs K,
dc.contributor.author Dalmadiné Kiss, Borbála
dc.contributor.author Ludányi, Krisztina
dc.contributor.author Antal, István
dc.contributor.author Klebovich, Imre
dc.date.accessioned 2016-11-18T07:43:10Z
dc.date.available 2016-11-18T07:43:10Z
dc.date.issued 2017
dc.identifier.citation pagination=184-189; journalVolume=132; journalTitle=JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/3847
dc.identifier.uri doi:10.1016/j.jpba.2016.09.047
dc.description.abstract The number of topical fungal infections is growing, mostly owing to immunosuppressive therapy. Several topical fungal infections, such as eye mycoses, can be treated by local administration of antimycotic drugs. One major group of the antifungal agents is triazole, such as voriconazole (VCZ), which is used as the first line treatment of aspergillosis. A disadvantage of VCZ is its low water solubility making the drug difficult to administer in a liquid preparation. The lipid-based nanoparticles (LNP) have attracted increasing attention due to their advantageous properties. Contrarily to the conventional carrier systems, LNP can improve the poor solubility of topically used drugs, such as VCZ. Therefore, LNP represents promising alternatives to traditional carrier systems. The aim of the study was to formulate VCZ loaded lipid-based nanoparticles (VCZ-LNP) by high pressure homogenization (HPH). The developed LNPs were characterized by particle size analysis, IR spectroscopy, differential scanning calorimetry, dialysis test and antifungal efficacy studies. The particle size of the optimized nanoparticles from the selected lipid base, Witepsol(R) W35, was 182+/-4.1nm after five cycles of homogenization at 600bar. The antifungal study confirmed that the optimized VCZ-LNP inhibited the fungus reproduction.
dc.relation.ispartof urn:issn:0731-7085
dc.title Development and characterization of the voriconazole loaded lipid-based nanoparticles.
dc.type Journal Article
dc.date.updated 2016-11-18T07:41:18Z
dc.language.rfc3066 en
dc.identifier.mtmt 3133184
dc.identifier.pubmed 27750101


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