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Authors:
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Citation: A. Streubel et al., pH-independent release of a weakly basic drug from water-insoluble and -soluble matrix tablets, J CONTR REL, 67(1), 2000, pp. 101-110
Authors:
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Citation: Mh. Perez et al., The preparation and evaluation of poly(epsilon-caprolactone) microparticles containing both a lipophilic and a hydrophilic drug, J CONTR REL, 65(3), 2000, pp. 429-438
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Authors:
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Citation: J. Siepmann et al., HPMC-matrices for controlled drug delivery: A new model combining diffusion, swelling, and dissolution mechanisms and predicting the release kinetics, PHARM RES, 16(11), 1999, pp. 1748-1756
Citation: I. Krogel et R. Bodmeier, Floating or pulsatile drug delivery systems based on coated effervescent cores, INT J PHARM, 187(2), 1999, pp. 175-184
Citation: I. Krogel et R. Bodmeier, Development of a multifunctional matrix drug delivery system surrounded byan impermeable cylinder, J CONTR REL, 61(1-2), 1999, pp. 43-50
Citation: J. Siepmann et al., Diffusion-controlled drug delivery systems: calculation of the required composition to achieve desired release profiles, J CONTR REL, 60(2-3), 1999, pp. 379-389
Authors:
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Bodmeier, R
Citation: J. Siepmann et al., A new model describing the swelling and drug release kinetics from hydroxypropyl methylcellulose tablets, J PHARM SCI, 88(1), 1999, pp. 65-72