4.7 Article

Supersaturation and Solubilization upon In Vitro Digestion of Fenofibrate Type I Lipid Formulations: Effect of Droplet Size, Surfactant Concentration and Lipid Type

期刊

PHARMACEUTICS
卷 13, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13081287

关键词

oral absorption; emulsion; precipitation; lipolysis

资金

  1. Bulgarian Science Fund [DCOST 01/12]
  2. Operational Program Science and Education for Smart Growth, Bulgaria [BG05M2OP001-1.002-0023]

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Shorter-chain triglycerides are crucial for faster drug release, while solubilization of long-chain triglycerides governs the release of fenofibrate. Additionally, the drop size and surfactant concentration of the lipid carrier also influence the rate of drug release.
Lipid-based formulations (LBF) enhance oral drug absorption by promoting drug solubilization and supersaturation. The aim of the study was to determine the effect of the lipid carrier type, drop size and surfactant concentration on the rate of fenofibrate release in a bicarbonate-based in vitro digestion model. The effect of the lipid carrier was studied by preparing type I LBF with drop size approximate to 2 mu m, based on medium-chain triglycerides (MCT), sunflower oil (SFO), coconut oil (CNO) and cocoa butter (CB). The drop size and surfactant concentration effects were assessed by studying MCT and SFO-based formulations with a drop size between 400 nm and 14 mu m and surfactant concentrations of 1 or 10%. A filtration through a 200 nm filter followed by HPLC analysis was used to determine the aqueous fenofibrate, whereas lipid digestion was followed by gas chromatography. Shorter-chain triglycerides were key in promoting a faster drug release. The fenofibrate release from long-chain triglyceride formulations (SFO, CNO and CB) was governed by solubilization and was enhanced at a smaller droplet size and higher surfactant concentration. In contrast, supersaturation was observed after the digestion of MCT emulsions. In this case, a smaller drop size and higher surfactant had negative effects: lower peak fenofibrate concentrations and a faster onset of precipitation were observed. The study provides new mechanistic insights on drug solubilization and supersaturation after LBF digestion, and may support the development of new in silico prediction models.

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