Salomonowitz et al., “Hydrophilic-Lipophilic Balance as Predictor of Mucus Coating with Barium Sulfate” Gastrointest Radio, vol. 11, pp. 93-96 (1986). |
Chen-Chow et al., “In Vitro Release of Lidocaine From Pluronic F-127 Gels”, International Journal of Pharmaceutics, vol. 8, pp. 89-99 (1981). |
Nurnberg et al., “Poloxamere-was ist das? Eigenschaften und Anwendungsmoglichkeiten”, Deutsche Apotheker Zeitung, vol. 129, No. 41, pp. 2183-2187, (1989). |
Reeve, “The Poloxamers: Their Chemistry and Medical Applications”, Handbook of Biodegreadable Polymers, Editors: A. J. Domb, J. Kost and D. M. Wiseman, Harwood Acaemic Publishers, Chapter 12, pp. 231-249. |
Juhasz et al., “Adhesion of Ploxamer 407 Formulations on Dog Ileal in Vitro”, Eur J Pharm Biopharm, vol. 37, No. 4, pp. 262-265, (1991). |
Pandit et al., “Cosolvent Effects on the Gel Formation and Gel Melting Transitions of Pluronic F127 Gels”, Pharmaceutical Development and Technology, vol. 2, No. 2, pp. 181-184, (1997). |
Gilbert et al., “Drug release from Pluronic F-127 gels”, International Journal of Pharmaceutics, vol. 32, pp. 223-228, (1986). |
Lenaerts et al., “Temperature-dependent rheological behavior of Pluronic F-127 aqueous solutions” International Journal of Pharmaceutics, vol. 39, pp. 121-127, (1987). |
Suh et al., “Pharmacokinetic and Local Tissue Disposition Studies of Naproxen Following Topical and Systemic Administration in Dogs and Rats”, Biopharmaceutics & Drug Disposition, vol. 18, No. 7, pp. 623-633, (1997). |
Cappel et al., “Effect of nonionic surfactants on transdermal drug delivery: II. Poloxamer and poloxamine surfactants”, International Journal of Pharmaceutics, vol. 69, pp. 155-167, (1991). |
Viegas et al., “Osmotic behavior of poloxamer 407 and other non-ionic surfactants in aqueous solutions” International Journal of Pharmaceutics, vol. 160, pp. 157-162, (1998). |
Lu et al., “Diffusion studies of methotrexate in Carbopol and Poloxamer gels”, International Journal of Pharmaceutics, vol. 160, pp. 1-9, (1998). |
Jewell et al., “Pharmacokinetics of RheothRx Injection in Healthy Male Volunteers”, Journal of Pharmaceutical Sciences, vol. 7, (1997). |
Bochot et al., “Liposomes Dispersed Within a Thermosensitive Gel: A new Dosage Form for Ocular Delivery of Oligonucleotides”, Pharmaceutical Research, vol. 15, No. 9, (1998). |
Edsman et al., “Rheological evaluation of poloxamer as an in situ gel for ophthalmic use”, European Journal of Pharmaceutical Sciences, vol. 6, pp. 105-112, (1998). |
Kim et al., “Trials of in situ-gelling and mucoadhesive acetaminophen liquid suppository in human subjects”, International Journal of Pharmaceutics, vol. 174, pp. 201-207, (1998). |
Brown et al., “Thermorheology of polaxamer 407: effect of alcohols and drugs”, J. Pharm. Pharmacol., vol. 50, Supplement: pp. 159. |
Gaisford et al., “Temperature induced aggregation in aqueous solution of a series of PEO-PPO-PEO copolymers”, International Journal of Pharmaceutics, vol. 174, pp. 39-46, (1998). |
Wang et al., “Kinetics of Sol-to-Gel Transition for Poloxamer Polyols”, Journal of Applied Polymer Science, vol. 43, pp. 283-292, (1991). |
Stratton et al., “Drug Delivery Matrix Containing Native Protein Precipitates Suspended in a Poloxamer Gel”, Journal of Pharmaceutical Sciences, vol. 86, No. 9, (1997). |