4.7 Article Proceedings Paper

Fabrication and characterization of spearmint oil loaded nanoemulsions as cytotoxic agents against oral cancer cell

期刊

ASIAN JOURNAL OF PHARMACEUTICAL SCIENCES
卷 13, 期 5, 页码 425-437

出版社

SHENYANG PHARMACEUTICAL UNIV
DOI: 10.1016/j.ajps.2018.02.003

关键词

Nanoemulsions; Spearmint oil; Coconut oil; Surfactants; Anticancer; NMR

资金

  1. Silpakorn University Research and Development Institute
  2. Faculty of Pharmacy, Silpakorn University

向作者/读者索取更多资源

Spearmint oil (SMO), a commonly used essential oil for oral care products, possesses various interesting functions, especially for anticancer property. However, the application of SMO for cancer treatment is limited due to water insoluble. In the present study, nanoemulsions, which have been widely accepted as dosage forms for poorly water-soluble drugs, were selected as candidate carriers for SMO to inhibit oral cancer cell. The nanoemulsions were fabricated using phase inversion temperature method. The factors affecting formation and properties of nanoemulsions including type and amount of surfactants, oil loading and ratio of SMO to virgin coconut oil (VCO) were investigated. Among the surfactants used, the nanoemulsions containing polyoxyethylene castor oil derivatives (Kolliphor (R) EL; PC035, Cremophor (R) RH40; PC040, Eumulgin (R) C060; PC060) and polyoxyethylene sorbitan fatty acid esters (PSF80) showed 100% creaming after temperature cycling test indicating excellent physical stability while those containing PC040 demonstrated more transparency and better physical stability. With an increasing amount of PC040, the droplet size tended to decrease and was in the nano-size range (<1000 nm) after increasing to more than 5% (w/w). SMO-VCO loading also influenced on the droplet size. At 5% (w/w) PC040, the maximum SMO-VCO loading of 25% (w/w) to attain nanoemulsions was observed. Moreover, the composition of oils had an impact on size of emulsions. The transparent nanoemulsions were only prepared in the range of SMO-VCO from 40:60 to 80:20, suggesting the optimum ratio of SMO to surfactant and the composition of oils were the critical factors for formation of nanoemulsions. NMR study disclosed that the interaction between PC040 with both VCO and SMO should be a possible stabilization mechanism. Furthermore, the SMO-VCO nanoemulsions exhibited significant cytotoxic effect against oral carcinoma (KON) cell line using MTT assay. The finding, therefore, revealed the good feasibility of SMO-VCO nanoemulsions as novel carriers for treating of oral cancer. (C) 2018 Shenyang Pharmaceutical University. Published by Elsevier B.V.

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