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2. The Use of Capsule Endoscopy to Determine Tablet Disintegration In Vivo

3. Toward the Establishment of Standardized In Vitro Tests for Lipid-Based Formulations. 5. Lipolysis of Representative Formulations by Gastric Lipase

4. Toward the Establishment of Standardized In Vitro Tests for Lipid-Based Formulations, Part 6: Effects of Varying Pancreatin and Calcium Levels

5. Rhamnogalacturonan-I Based Microcapsules for Targeted Drug Release.

6. Toward the Establishment of Standardized In Vitro Tests for Lipid-Based Formulations, Part 3: Understanding Supersaturation Versus Precipitation Potential During the In Vitro Digestion of Type I, II, IIIA, IIIB and IV Lipid-Based Formulations

8. Adding a Gastric Step to the Intestinal In VitroDigestion Model Improves the Prediction of Pharmacokinetic Data in Beagle Dogs of Two Lipid-Based Drug Delivery Systems

11. In VivoPrecipitation of Poorly Soluble Drugs from Lipid-Based Drug Delivery Systems

12. Elucidating the Molecular Interactions Occurring during Drug Precipitation of Weak Bases from Lipid-Based Formulations: A Case Study with Cinnarizine and a Long Chain Self-Nanoemulsifying Drug Delivery System

13. Toward the Establishment of Standardized in VitroTests for Lipid-Based Formulations. 2. The Effect of Bile Salt Concentration and Drug Loading on the Performance of Type I, II, IIIA, IIIB, and IV Formulations during in VitroDigestion

14. Rhamnogalacturonan-I Based Microcapsules for Targeted Drug Release.

15. Development of a high-throughput in vitro intestinal lipolysis model for rapid screening of lipid-based drug delivery systems.

16. In vitro and in vivo evaluations of the performance of an indirubin derivative, formulated in four different self-emulsifying drug delivery systems.

17. Toward the establishment of standardized in vitro tests for lipid-based formulations, part 4: proposing a new lipid formulation performance classification system.

18. Toward the establishment of standardized in vitro tests for lipid-based formulations. 2. The effect of bile salt concentration and drug loading on the performance of type I, II, IIIA, IIIB, and IV formulations during in vitro digestion.

19. Toward the establishment of standardized in vitro tests for lipid-based formulations, part 1: method parameterization and comparison of in vitro digestion profiles across a range of representative formulations.

20. In vitro lipolysis models as a tool for the characterization of oral lipid and surfactant based drug delivery systems.

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