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dc.contributor.authorKaialy, W
dc.contributor.authorNokhodchi, A
dc.date.accessioned2018-08-26T08:03:43Z
dc.date.available2018-08-26T08:03:43Z
dc.date.issued2013
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/49343
dc.description.abstractTo show for the first time the superior dry powder inhaler (DPI) performance of freeze dried mannitol in comparison to spray dried mannitol and commercial mannitol. Different mannitol powders were sieved to collect 63-90 mu m particles and then analyzed in terms of size, shape, surface morphology, solid state, density, flowability. Salbutamol sulphate-mannitol aerosol formulations were evaluated in terms of homogeneity, SS-mannitol adhesion, and in vitro aerosolization performance. Freeze dried mannitol demonstrated superior DPI performance with a fine particle fraction believed to be highest so far reported in literature for salbutamol sulphate under similar protocols (FPF = 46.9%). To lesser extent, spray dried mannitol produced better aerosolization performance than commercial mannitol. Freeze dried mannitol demonstrated elongated morphology, alpha-+beta-+delta- polymorphic forms, and poor flowability whereas spray dried mannitol demonstrated spherical morphology, alpha-+beta- polymorphic forms, and excellent flowability. Commercial mannitol demonstrated angular morphology, beta- polymorphic form, and good flowability. Freeze dried mannitol demonstrated smoother surface than spray dried mannitol which in turn demonstrated smoother surface than commercial mannitol. FPF of SS increased as mannitol powder porosity increase. Freeze drying under controlled conditions can be used as a potential technique to generate aerodynamically light mannitol particles for superior DPI performance.
dc.language.isoEnglish
dc.relation.ispartofPHARMACEUTICAL RESEARCH
dc.subjectaerosol
dc.subjectfreeze dried mannitol
dc.subjectmorphology
dc.subjectporosity
dc.subjectspray dried mannitol
dc.titleFreeze-Dried Mannitol for Superior Pulmonary Drug Delivery via Dry Powder Inhaler
dc.typeArticle
dc.citation.volume30
dc.citation.issue2
dc.citation.spage458
dc.citation.epage477
dc.citation.indexWeb of science
dc.identifier.DOIhttps://doi.org/10.1007/s11095-012-0892-4


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