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Ovrednotenje granulatov mezoporozne silike z različnimi razgrajevali za izdelavo orodisperzibilnih tablet
ID Kralj, Tilen (Author), ID Planinšek, Odon (Mentor) More about this mentor... This link opens in a new window

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Abstract
Koloidna silika je amorfen material, ki zaradi svojih lastnosti, kot so inertnost, visoka specifična površina, velika poroznost in nizka gostota, najde široko uporabo v proizvodnji zdravil kot drsilo, mazivo ter dostavni sistem za težko topne učinkovine. Zaradi slabih pretočnih lastnosti pa je njena uporaba otežena. V tej magistrski nalogi smo preučevali lastnosti granulatov Syloid® 244 FP izdelanih z različnimi vezivi. Formulacije smo izboljšali z dodatkom L-HPC LH 22. Preverili smo tudi vpliv uporabe kombinacije dveh veziv. Nastalim fomulacijam smo ovrednotili pretočne lastnosti, velikost delcev, elastično relaksacijo, kompresibilnost in kompaktibilnost. Z granulacijo smo izboljšali pretočne lastnosti izhodnih surovin, z večanjem praškaste komponente pa so se pretočni lastnosti slabšale. Izboljšali smo kompresibilnost in kompaktibilnost začetnih granulatov. Končne tablete so prestale farmakopejske preizkuse enakomernosti mase, krušljivosti in razpadnega časa.

Language:Slovenian
Keywords:silika, kompresibilnost, kompaktibilnost, orodisperzibilne tablete
Work type:Master's thesis/paper
Organization:FFA - Faculty of Pharmacy
Year:2024
PID:20.500.12556/RUL-164390 This link opens in a new window
Publication date in RUL:24.10.2024
Views:44
Downloads:4
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Secondary language

Language:English
Title:Evaluation of mesoporous silica granules with various disintegrants for orodispersible tablets production
Abstract:
Colloidal silica is an amorphous material that, due to its properties such as inertness, high specific surface area, high porosity, and low density, finds wide use in pharmaceutical production as a glidant, lubricant, and delivery system for poorly soluble active ingredients. However, its poor flow properties hinder its application. In this master's thesis, we studied the properties of Syloid® 244 FP granulates produced with various binders. We improved the formulations by adding L-HPC LH 22. We also examined the impact of using a combination of two binders. The resulting formulations were evaluated for flow properties, particle size, elastic relaxation, compressibility, and compactibility. Through granulation, we improved the flow properties of the starting materials, but as the amount of powdered component increased, the flow properties deteriorated. We enhanced the compressibility and compactibility of the initial granulates. The final tablets passed pharmacopoeial tests for uniformity of mass, friability, and disintegration time.

Keywords:silica, compressibility, compactibility, orodispersible tablets

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