Nanostructured liquid crystalline particles provide long duration sustained-release effect for a poorly water soluble drug after oral administration.
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Ben J. Boyd | Tracey Hanley | Christopher J. H. Porter | T. Hanley | B. Boyd | C. Porter | Tri-Hung Nguyen | Tri-Hung Nguyen
[1] Paolo Mariani,et al. Cubosome Dispersions as Delivery Systems for Percutaneous Administration of Indomethacin , 2005, Pharmaceutical Research.
[2] M. Fantini,et al. Reverse Hexagonal Phase Nanodispersion of Monoolein and Oleic Acid for Topical Delivery of Peptides: in Vitro and in Vivo Skin Penetration of Cyclosporin A , 2006, Pharmaceutical Research.
[3] Almgren,et al. Phase Behavior and Aggregate Structure in Aqueous Mixtures of Sodium Cholate and Glycerol Monooleate. , 1999, Journal of colloid and interface science.
[4] I. Larson,et al. Phytantriol and glyceryl monooleate cubic liquid crystalline phases as sustained-release oral drug delivery systems for poorly water soluble drugs I. Phase behaviour in physiologically-relevant media. , 2010, The Journal of pharmacy and pharmacology.
[5] H. Ekberg,et al. Bioavailability of cyclosporine in rats after intragastric administration: a comparative study of the L2-phase and two other lipid-based vehicles. , 1996, Transplant immunology.
[6] B. Boyd,et al. A novel cubic phase of medium chain lipid origin for the delivery of poorly water soluble drugs. , 2004, Journal of controlled release : official journal of the Controlled Release Society.
[7] Ben J Boyd,et al. Phytantriol and glyceryl monooleate cubic liquid crystalline phases as sustained-release oral drug delivery systems for poorly water-soluble drugs II. In-vivo evaluation. , 2010, The Journal of pharmacy and pharmacology.
[8] K. Kelly,et al. Gastric emptying of liquids and solids: roles of proximal and distal stomach. , 1980, The American journal of physiology.
[9] S. Saraf,et al. Cubosomes: an overview. , 2007, Biological & pharmaceutical bulletin.
[10] B. Boyd,et al. Drug Solubilization Behavior During in Vitro Digestion of Suspension Formulations of Poorly Water-Soluble Drugs in Triglyceride Lipids , 2004, Pharmaceutical Research.
[11] Allan Svendsen,et al. Lipase action on a monoolein/sodium oleate aqueous cubic liquid crystalline phase—a NMR and X-ray diffraction study , 2002 .
[12] Ali Hossain Khan,et al. Phase Behavior and Aggregate Formation for the Aqueous Monoolein System Mixed with Sodium Oleate and Oleic Acid , 2001 .
[13] Ben J Boyd,et al. Stimuli responsive liquid crystals provide 'on-demand' drug delivery in vitro and in vivo. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[14] R. Hinder,et al. Canine gastric emptying of solids and liquids. , 1977, The American journal of physiology.
[15] C. Porter,et al. Characterisation and quantification of medium chain and long chain triglycerides and their in vitro digestion products, by HPTLC coupled with in situ densitometric analysis. , 2001, Journal of pharmaceutical and biomedical analysis.
[16] Dong Li,et al. Studies of Cubosomes as a Sustained Drug Delivery System , 2005 .
[17] H. Bunjes,et al. Preparation and structural investigations of colloidal dispersions prepared from cubic monoglyceride-water phases. , 2002, International journal of pharmaceutics.
[18] H. Bunjes,et al. Drug release from differently structured monoolein/poloxamer nanodispersions studied with differential pulse polarography and ultrafiltration at low pressure. , 2007, Journal of pharmaceutical sciences.
[19] G. Amidon,et al. Gastric emptying of nondigestible solids in dogs: a hydrodynamic correlation. , 1990, The American journal of physiology.
[20] D M Chilukuri,et al. Cubic phase gels as drug delivery systems. , 2001, Advanced drug delivery reviews.
[21] P. Holt,et al. A liquid crystalline phase in human intestinal contents during fat digestion , 1986, Lipids.
[22] N. K. Jain,et al. Enhanced Oromucosal Delivery of Progesterone Via Hexosomes , 2007, Pharmaceutical Research.
[23] I. Larson,et al. Bulk and dispersed aqueous phase behavior of phytantriol: effect of vitamin E acetate and F127 polymer on liquid crystal nanostructure. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[24] V. Stella,et al. A novel prodrug approach for tertiary amines. 3. In vivo evaluation of two N-phosphonooxymethyl prodrugs in rats and dogs. , 1999, Journal of pharmaceutical sciences.
[25] S. Young,et al. Water quantitatively induces the mucoadhesion of liquid crystalline phases of glyceryl monooleate , 2001, The Journal of pharmacy and pharmacology.
[26] S. Andersson,et al. Structure of the cubosome - a closed lipid bilayer aggregate , 1995 .
[27] E. Khalil,et al. Formulation of an oral dosage form utilizing the properties of cubic liquid crystalline phases of glyceryl monooleate. , 2002, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[28] D. Attwood,et al. The release of drugs from monoglyceride-water liquid crystalline phases , 1994 .
[29] B. Boyd,et al. Hexosomes formed from glycerate surfactants--formulation as a colloidal carrier for irinotecan. , 2006, International journal of pharmaceutics.
[30] B. Boyd. Characterisation of drug release from cubosomes using the pressure ultrafiltration method. , 2003, International journal of pharmaceutics.
[31] B. Boyd,et al. A lipid-based liquid crystalline matrix that provides sustained release and enhanced oral bioavailability for a model poorly water soluble drug in rats. , 2007, International journal of pharmaceutics.
[32] S Engström,et al. Cubic phases for studies of drug partition into lipid bilayers. , 1999, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[33] Calum J. Drummond,et al. Surfactant self-assembly objects as novel drug delivery vehicles , 1999 .
[34] A. Nilsson,et al. Hydrolysis of the cubic liquid-crystalline phase of glyceryl monooleate by human pancreatic lipases , 2002 .
[35] B. Borgström,et al. Aqueous lipid phases of relevance to intestinal fat digestion and absorption , 1981, Lipids.
[36] M. Nakano,et al. Interaction of cubosomes with plasma components resulting in the destabilization of cubosomes in plasma. , 2004, Colloids and surfaces. B, Biointerfaces.
[37] I. Larson,et al. Nonequilibrium effects in self-assembled mesophase materials: unexpected supercooling effects for cubosomes and hexosomes. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[38] Leon Shargel,et al. Applied biopharmaceutics and pharmacokinetics , 1980 .