In vitro evaluation of dissolution behavior for a colon-specific drug delivery system (CODES™) in multi-pH media using United States Pharmacopeia apparatus II and III
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Jinhe Li | Jinhe Li | Libo Yang | Masataka Katsuma | Shunsuke Watanabe | Libo Yang | Sheila M. Ferguson | Tom J. Hudson | Joseph A. Fix | J. Fix | M. Katsuma | S. M. Ferguson | Shunsuke Watanabe | T. J. Hudson | S. Ferguson
[1] Jinhe Li,et al. Effect of Colonic Lactulose Availability on the Timing of Drug Release Onset in Vivo from a Unique Colon-Specific Drug Delivery System (CODES™) , 2003, Pharmaceutical Research.
[2] L. Vervoort,et al. Colonic drug targeting. , 1998, Journal of drug targeting.
[3] Yi Tsong,et al. In Vitro Dissolution Profile Comparison—Statistics and Analysis of the Similarity Factor, f2 , 1998, Pharmaceutical Research.
[4] Masao Kobayashi,et al. Preparation of enteric coated timed-release press-coated tablets and evaluation of their function by in vitro and in vivo tests for colon targeting. , 2000, International journal of pharmaceutics.
[5] J. Fell,et al. Targeting drugs to the colon: delivery systems for oral administration. , 1994, Journal of drug targeting.
[6] M. Z. Khan,et al. A pH-dependent colon targeted oral drug delivery system using methacrylic acid copolymers. I. Manipulation Of drug release using Eudragit L100-55 and Eudragit S100 combinations. , 1999, Journal of controlled release : official journal of the Controlled Release Society.
[7] J. Tremblay,et al. USP Dissolution Apparatus III (reciprocating cylinder) for screening of guar-based colonic delivery formulations , 1997 .
[8] K. Takada,et al. A Dissolution Test for a Pressure‐controlled Colon Delivery Capsule: Rotating Beads Method , 1999, The Journal of pharmacy and pharmacology.
[9] J. Aiache,et al. A new method of dissolution in vitro, the "Bio-Dis" apparatus: comparison with the rotating bottle method and in vitro: in vivo correlations. , 1991, Journal of pharmaceutical sciences.
[10] A. Dawson,et al. Effects of lactulose and other laxatives on ileal and colonic pH as measured by a radiotelemetry device , 1974, Gut.
[11] W. Verstraete,et al. Development of a 5-step multi-chamber reactor as a simulation of the human intestinal microbial ecosystem , 1993, Applied Microbiology and Biotechnology.
[12] Libo Yang,et al. Colon-specific drug delivery: new approaches and in vitro/in vivo evaluation. , 2002, International journal of pharmaceutics.
[13] Lawrence X. Yu,et al. Evaluation of USP apparatus 3 for dissolution testing of immediate-release products , 2008, AAPS PharmSci.
[14] V. Pillay,et al. Unconventional dissolution methodologies. , 1999, Journal of pharmaceutical sciences.
[15] S. Ugwu,et al. New and Extended Applications for USP Drug Release Apparatus 3. , 1997 .
[16] J. Rokem,et al. In Vitro Evaluation of Calcium Pectinate: A Potential Colon-Specific Drug Delivery Carrier , 1993, Pharmaceutical Research.
[17] Willy Verstraete,et al. Polymers for colon specific drug delivery. , 1996 .
[18] Hirofumi Takeuchi,et al. Spray-Dried Lactose Composite Particles Containing an Ion Complex of Alginate-Chitosan for Designing a Dry-Coated Tablet Having a Time-Controlled Releasing Function , 2001, Pharmaceutical Research.
[19] A. Rubinstein. Approaches and opportunities in colon-specific drug delivery. , 1995, Critical reviews in therapeutic drug carrier systems.
[20] S. Satyanarayana,et al. In vitro evaluation of guar gum as a carrier for colon-specific drug delivery. , 1998, Journal of controlled release : official journal of the Controlled Release Society.
[21] B. Rohrs,et al. USP dissolution apparatus 3 (reciprocating cylinder): instrument parameter effects on drug release from sustained release formulations. , 1995, Journal of pharmaceutical sciences.