Predicting the precipitation of poorly soluble weak bases upon entry in the small intestine
- 1 January 2004
- journal article
- Published by Oxford University Press (OUP) in Journal of Pharmacy and Pharmacology
- Vol. 56 (1), 43-51
- https://doi.org/10.1211/0022357022511
Abstract
Solubility and dissolution relationships in the gastrointestinal tract can be critical for the oral bioavailability of poorly soluble drugs. In the case of poorly soluble weak bases, the possibility of drug precipitation upon entry into the small intestine may also affect the amount of drug available for uptake through the intestinal mucosa. To simulate the transfer out of the stomach into the intestine, a transfer model was devised, in which a solution of the drug in simulated gastric fluid is continuously pumped into a simulated intestinal fluid, and drug precipitation in the acceptor medium is examined via concentration–time measurements. The in-vitro precipitation of three poorly soluble weakly basic drugs, dipyridamole, BIBU 104 XX and BIMT 17 BS, was investigated. For all three, extensive supersaturation was achieved in the acceptor medium. Under simulated fasted-state conditions, precipitation occurred for all three compounds whereas under simulated fed-state conditions, the higher concentrations of bile components and the lower pH value in the acceptor medium inhibited precipitation at concentrations corresponding to usual doses in all cases. Comparison with pharmacokinetic data indicated that a combination of transfer model data with solubility and dissolution profiles should lead to better predictions of in-vivo behaviour of poorly soluble weak bases.Keywords
This publication has 16 references indexed in Scilit:
- Forecasting the Oral Absorption Behavior of Poorly Soluble Weak Bases Using Solubility and Dissolution Studies in Biorelevant MediaPharmaceutical Research, 2002
- Dissolution testing as a prognostic tool for oral drug absorption: dissolution behavior of glibenclamide.Pharmaceutical Research, 2000
- Forecasting the In Vivo Performance of Four Low Solubility Drugs from Their In Vitro Dissolution DataPharmaceutical Research, 1999
- Evaluation of Various Dissolution Media for Predicting In Vivo Performance of Class I and II DrugsPharmaceutical Research, 1998
- Estimation of the Increase in Solubility of Drugs as a Function of Bile Salt ConcentrationPharmaceutical Research, 1996
- Upper Gastrointestinal (GI) pH in Young, Healthy Men and WomenPharmaceutical Research, 1990
- Human postprandial gastric emptying of 1–3-millimeter spheresGastroenterology, 1988
- Ionic constituents and osmolality of gastric and small-intestinal fluids after eatingDigestive Diseases and Sciences, 1966
- Solubilizing Properties of Bile Salt Solutions IJournal of Pharmaceutical Sciences, 1966
- Theorie der Reaktionsgeschwindigkeit in heterogenen SystemenZeitschrift für Physikalische Chemie, 1904