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1. Cristallisation oscillante d’un composé chiral en milieu quasi-racémique : croissance cristalline par multi-épitaxie et rôle de l’agitation

2. Oscillating Crystallisation of a Chiral Compounds in Quasi-racemic Solution ; Evidence of a Multiepitaxy Crystal Growth Mechanism and Influence of Stirring

3. Oscillating nucleation and crystal growth of 5-ethyl-5-methylhydantoin enantiomers in aqueous solution

4. R-S epitaxy as a limiting factor in the entrainment of the () 5-ethyl-5-methylhydantoin by means of auto-seeded programmed polythermic preferential crystallization (A.S.3.P.C.)

5. Topotactic polymorphic transition of the 7-alpha-12-alpha-diacetoxycyclo[3]cholate

6. Analysis of a two-step release of two different solvents by heating crystals of cyclocholate

7. Influence of the counter enantiomer during crystal growth in water of a conglomerate : ()-5-ethyl-5-methylhydantoin

8. Oscillating Crystallization in Solution between (+)- and (−)-5-Ethyl-5-methylhydantoin under the Influence of Stirring

10. IMI - Oral biopharmaceutics tools project - Evaluation of bottom-up PBPK prediction success part 4: Prediction accuracy and software comparisons with improved data and modelling strategies.

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

12. Lipid Compositions in Infant Formulas Affect the Solubilization of Antimalarial Drugs Artefenomel (OZ439) and Ferroquine during Digestion.

13. Low-Frequency Raman Scattering Spectroscopy as an Accessible Approach to Understand Drug Solubilization in Milk-Based Formulations during Digestion.

14. Application of Low-Frequency Raman Scattering Spectroscopy to Probe in Situ Drug Solubilization in Milk during Digestion.

15. Impact of Ferroquine on the Solubilization of Artefenomel (OZ439) during in Vitro Lipolysis in Milk and Implications for Oral Combination Therapy for Malaria.

16. IMI - oral biopharmaceutics tools project - evaluation of bottom-up PBPK prediction success part 1: Characterisation of the OrBiTo database of compounds.

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