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Self-assembled Lyotropic Liquid Crystalline Phase Behavior of Monoolein-Capric Acid-Phospholipid Nanoparticulate Systems.
Zhai, Jiali; Tran, Nhiem; Sarkar, Sampa; Fong, Celesta; Mulet, Xavier; Drummond, Calum J.
Afiliación
  • Zhai J; School of Science, College of Science, Engineering and Health, RMIT University , Melbourne, Victoria 3000, Australia.
  • Tran N; School of Science, College of Science, Engineering and Health, RMIT University , Melbourne, Victoria 3000, Australia.
  • Sarkar S; School of Science, College of Science, Engineering and Health, RMIT University , Melbourne, Victoria 3000, Australia.
  • Fong C; School of Science, College of Science, Engineering and Health, RMIT University , Melbourne, Victoria 3000, Australia.
  • Mulet X; CSIRO Manufacturing , Clayton, Victoria 3168, Australia.
  • Drummond CJ; CSIRO Manufacturing , Clayton, Victoria 3168, Australia.
Langmuir ; 33(10): 2571-2580, 2017 03 14.
Article en En | MEDLINE | ID: mdl-28191966
ABSTRACT
We report here the lyotropic liquid crystalline phase behavior of two lipid nanoparticulate systems containing mixtures of monoolein, capric acid, and saturated diacyl phosphatidylcholines dispersed by the Pluronic F127 block copolymer. Synchrotron small-angle X-ray scattering (SAXS) was used to screen the phase behavior of a library of lipid nanoparticles in a high-throughput manner. It was found that adding capric acid and phosphatidylcholines had opposing effects on the spontaneous membrane curvature of the monoolein lipid layer and hence the internal mesophase of the final nanoparticles. By varying the relative concentration of the three lipid components, we were able to establish a library of nanoparticles with a wide range of mesophases including at least the inverse bicontinuous primitive and double diamond cubic phases, the inverse hexagonal phase, the fluid lamellar phase, and possibly other phases. Furthermore, the in vitro cytotoxicity assay showed that the endogenous phospholipid-containing nanoparticles were less toxic to cultured cell lines compared to monoolein-based counterparts, improving the potential of the nonlamellar lipid nanoparticles for biomedical applications.
Asunto(s)

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Glicéridos Idioma: En Revista: Langmuir Asunto de la revista: QUIMICA Año: 2017 Tipo del documento: Article País de afiliación: Australia

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Glicéridos Idioma: En Revista: Langmuir Asunto de la revista: QUIMICA Año: 2017 Tipo del documento: Article País de afiliación: Australia