Egyszerű nézet

dc.contributor.author Vasvári, Gábor
dc.contributor.author Haimhoffer, Ádám
dc.contributor.author Horváth, László
dc.contributor.author Budai, István
dc.contributor.author Trencsényi, György
dc.contributor.author Béresová, Monika
dc.contributor.author Dobó-Nagy, Csaba
dc.contributor.author Váradi, Judit
dc.contributor.author Bácskay, Ildikó
dc.contributor.author Ujhelyi, Zoltán
dc.contributor.author Fehér, Pálma
dc.contributor.author Sinka, Dávid
dc.contributor.author Vecsernyés, Miklós
dc.contributor.author Fenyvesi, Ferenc
dc.date.accessioned 2019-10-04T10:57:46Z
dc.date.available 2019-10-04T10:57:46Z
dc.date.issued 2019
dc.identifier.citation journalVolume=20;journalIssueNumber=7;journalTitle=AAPS PHARMSCITECH;pagination=290, pages: 11;;journalAbbreviatedTitle=AAPS PHARMSCITECH;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/7586
dc.identifier.uri doi:10.1208/s12249-019-1500-2
dc.description.abstract Dosage forms with increased gastric residence time are promising tools to increase bioavailability of drugs with narrow absorption window. Low-density floating formulations could avoid gastric emptying; therefore, sustained drug release can be achieved. Our aim was to develop a new technology to produce low-density floating formulations by melt foaming. Excipients were selected carefully, with the criteria of low gastric irritation, melting range below 70°C and well-known use in oral drug formulations. PEG 4000, Labrasol and stearic acid type 50 were used to create metronidazole dispersion which was foamed by air on atmospheric pressure using in-house developed apparatus at 53°C. Stearic acid was necessary to improve the foamability of the molten dispersion. Additionally, it reduced matrix erosion, thus prolonging drug dissolution and preserving hardness of the moulded foam. Labrasol as a liquid solubiliser can be used to increase drug release rate and drug solubility. Based on the SEM images, metronidazole in the molten foam remained in crystalline form. MicroCT scans with the electron microscopic images revealed that the foam has a closed-cell structure, where spherical voids have smooth inner wall, they are randomly dispersed, while adjacent voids often interconnected with each other. Drug release from all compositions followed Korsmeyer-Peppas kinetic model. Erosion of the matrix was the main mechanism of the release of metronidazole. Texture analysis confirmed that stearic acid plays a key role in preserving the integrity of the matrix during dissolution in acidic buffer. The technology creates low density and solid matrix system with micronsized air-filled voids.
dc.relation.ispartof urn:issn:1530-9932
dc.title Development and Characterisation of Gastroretentive Solid Dosage Form Based on Melt Foaming
dc.type Journal Article
dc.date.updated 2019-09-04T19:17:30Z
dc.language.rfc3066 en
dc.rights.holder NULL
dc.identifier.mtmt 30772174
dc.identifier.pubmed 31428895
dc.contributor.department SE/FOK/Orális Diagnosztikai Tanszék
dc.contributor.institution Semmelweis Egyetem


Kapcsolódó fájlok:

A fájl jelenleg csak egyetemi IP címről érhető el.

Megtekintés/Megnyitás

Ez a rekord az alábbi gyűjteményekben szerepel:

Egyszerű nézet