Development of a solid self-microemulsifying drug delivery system (SMEDDS) for solubility enhancement of naproxen.

Katja Čerpnjak, Alenka Zvonar, Franc Vrečer, Mirjana Gašperlin
Author Information
  1. Katja Čerpnjak: a Krka, d.d., Novo mesto , Novo Mesto , Slovenia and.

Abstract

CONTEXT: Comparative evaluation of liquid and solid self-microemulsifying drug delivery systems (SMEDDS) as promising approaches for solubility enhancement.
OBJECTIVE: The aim of this work was to develop, characterize, and evaluate a solid SMEDDS prepared via spray-drying of a liquid SMEDDS based on Gelucire® 44/14 to improve the solubility and dissolution rate of naproxen.
MATERIAL AND METHODS: Various oils and co-surfactants in combination with Gelucire® 44/14 were evaluated during excipient selection study, solubility testing, and construction of (pseudo)ternary diagrams. The selected system was further evaluated for naproxen solubility, self-microemulsification ability, and in vitro dissolution of naproxen. In addition, its transformation into a solid SMEDDS by spray-drying using maltodextrin as a solid carrier was performed. Scanning electron microscopy (SEM), differential scanning calorimetry (DSC), and X-ray diffraction (XRD) were used to evaluate the physical characteristics of the solid SMEDDS obtained.
RESULTS: The selected formulation of SMEDDS was comprised of Miglyol 812®, Peceol™, Gelucire® 44/14, and Solutol® HS 15. The liquid and solid SMEDDS formed a microemulsion after dilution with comparable average droplet size and exhibited uniform droplet size distribution. In the solid SMEDDS, liquid SMEDDS was adsorbed onto the surface of maltodextrin and formed smooth granular particles with the encapsulated drug predominantly in a dissolved state and partially in an amorphous state. Overall, incorporation of naproxen in SMEDDS, either liquid or solid, resulted in improved solubility and dissolution rate compared to pure naproxen.
CONCLUSION: This study indicates that a liquid and solid SMEDDS is a strategy for solubility enhancement in the future development of orally delivered dosage forms.

Keywords

MeSH Term

Anti-Inflammatory Agents, Non-Steroidal
Calorimetry, Differential Scanning
Chemistry, Pharmaceutical
Drug Delivery Systems
Emulsions
Excipients
Microscopy, Electron, Scanning
Naproxen
Oils
Polyethylene Glycols
Solubility
Surface-Active Agents
X-Ray Diffraction

Chemicals

Anti-Inflammatory Agents, Non-Steroidal
Emulsions
Excipients
Oils
Surface-Active Agents
gelucire 44-14
Polyethylene Glycols
Naproxen

Word Cloud

Created with Highcharts 10.0.0SMEDDSsolidsolubilityliquidnaproxendissolutionself-microemulsifyingdrugenhancementspray-dryingGelucire®44/14deliveryevaluaterateevaluatedstudyselectedsystemmaltodextrinformedmicroemulsiondropletsizestateCONTEXT:ComparativeevaluationsystemspromisingapproachesOBJECTIVE:aimworkdevelopcharacterizepreparedviabasedimproveMATERIALANDMETHODS:Variousoilsco-surfactantscombinationexcipientselectiontestingconstructionpseudoternarydiagramsself-microemulsificationabilityvitroadditiontransformationusingcarrierperformedScanningelectronmicroscopySEMdifferentialscanningcalorimetryDSCX-raydiffractionXRDusedphysicalcharacteristicsobtainedRESULTS:formulationcomprisedMiglyol812®Peceol™Solutol®HS15dilutioncomparableaverageexhibiteduniformdistributionadsorbedontosurfacesmoothgranularparticlesencapsulatedpredominantlydissolvedpartiallyamorphousOverallincorporationeitherresultedimprovedcomparedpureCONCLUSION:indicatesstrategyfuturedevelopmentorallydelivereddosageformsDevelopmentCrystallineproperties

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