4.6 Article

Facile methodology of nanoemulsion preparation using oily polymer for the delivery of poorly soluble drugs

期刊

DRUG DELIVERY AND TRANSLATIONAL RESEARCH
卷 10, 期 5, 页码 1228-1240

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s13346-019-00703-5

关键词

Nanoemulsion; Poly(delta-decalactone); Polymeric nanoemulsion; Stability; Aqueous solubility

资金

  1. Academy of Finland (AKA) [309794, 309794] Funding Source: Academy of Finland (AKA)
  2. Academy of Finland [309794, 309374] Funding Source: Medline

向作者/读者索取更多资源

Aqueous solubility of an active pharmaceutical ingredient (API) is a determining factor that has a direct impact on formulation strategies and overall bioavailability. Fabrication of nanoemulsions of poorly soluble drugs is one of the widely utilized approaches to overcome this problem. However, thermodynamic instability and tedious manufacturing processes of nanoemulsions limit their clinical translation. Therefore, this study was focused on circumventing the abovementioned hurdles by utilizing the polymer as an oil phase, instead of conventional oils. The nanoemulsion was prepared via a facile low-energy nanoprecipitation method using renewable poly(delta-decalactone) (PDL), as an oil phase and Pluronic F-68 as surfactant. The prepared nanoemulsions were characterized in terms of size, drug encapsulation efficiency, stability, and toxicity. Five different hydrophobic drugs were utilized to evaluate the drug delivery capability of the PDL nanoemulsion. The prepared nanoemulsions with sizes less than 200 nm were capable to enhance the aqueous solubility of the drugs by 3 to 10 times compared with the well-established Pluronic F-68 micelles. No phase separation or significant changes in size and drug content was observed with PDL nanoemulsions after high-speed centrifugation and 3 months of storage at two different temperatures (20 degrees C and 50 degrees C). PDL nanoemulsions were found to be non-heamolytic up to concentrations of 1 mg/mL, and the cell cytotoxicity studies on MDA-MB-231 and MEF cells suggest a concentration and time-dependent toxicity, where the PDL polymer itself induced no cytotoxicity. The results from this study clearly indicate that the PDL polymer has a tremendous potential to be utilized as an oil phase to prepare stable nanoemulsions via a facile methodology, ultimately favouring clinical translations. TOC graphic

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