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244 results on '"Lipid-based formulations"'

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1. Lipid-Based Formulation of Baricitinib for the Topical Treatment of Psoriasis.

2. Histidine-based ionizable cationic surfactants: novel biodegradable agents for hydrophilic macromolecular drug delivery.

3. 3D‐Printed Lipid Mesophases for the Treatment of Chronic Liver Disease.

4. Lipid-Based Formulation of Baricitinib for the Topical Treatment of Psoriasis

5. The Development of Lipid-Based Sorafenib Granules to Enhance the Oral Absorption of Sorafenib.

6. Intrinsic lipolysis rate for systematic design of lipid-based formulations.

8. Development of polymer-encapsulated microparticles of a lipophilic API-IL and its lipid based formulations for enhanced solubilisation.

9. A novel sodium caseinate lipid-based auto-emulsifying delivery system to increase resveratrol intestinal permeation: Characterization and in vitro assessment.

10. Anticancer drug delivery: Investigating the impacts of viscosity on lipid-based formulations for pulmonary targeting.

11. The Development of Lipid-Based Sorafenib Granules to Enhance the Oral Absorption of Sorafenib

12. Biocompatible Cationic Lipoamino Acids as Counterions for Oral Administration of API-Ionic Liquids.

13. Benefits of combining supersaturating and solubilizing formulations - Is two better than one?

14. Small-volume in vitro lipid digestion measurements for assessing drug dissolution in lipid-based formulations using SAXS

15. Benefits of combining supersaturating and solubilizing formulations - Is two better than one?

16. Heparin: A simplistic repurposing to prevent SARS-CoV-2 transmission in light of its in-vitro nanomolar efficacy.

17. Lipophilic Salts and Lipid-Based Formulations: Enhancing the Oral Delivery of Octreotide.

18. Development of self-microemulsifying lipid-based formulations of trans-resveratrol by systematically constructing lipid-surfactant-water phase diagrams using long-chain lipids.

19. Current challenges and future perspectives in oral absorption research: An opinion of the UNGAP network.

20. Applying Computational Predictions of Biorelevant Solubility Ratio Upon Self-Emulsifying Lipid-Based Formulations Dispersion to Predict Dose Number.

21. In-Silico Screening of Lipid-Based Drug Delivery Systems.

22. Characterization of solid lipid dispersions prepared by hot fusion containing a double-fixed dose combination of artemether and lumefantrine.

23. Hydrophobic ion pairing (HIP) of (poly)peptide drugs: Benefits and drawbacks of different preparation methods.

24. An in vitro dissolution–digestion–permeation assay for the study of advanced drug delivery systems.

25. Developing an in vitro lipolysis model for real-time analysis of drug concentrations during digestion of lipid-based formulations.

26. Assessing Lymphatic Uptake of Lipids Using Magnetic Resonance Imaging: A Feasibility Study in Healthy Human Volunteers with Potential Application for Tracking Lymph Node Delivery of Drugs and Formulation Excipients

27. Investigating In Vitro and Ex Vivo Properties of Artemether/Lumefantrine Double-Fixed Dose Combination Lipid Matrix Tablets Prepared by Hot Fusion

28. Nonionic surfactants modulate the transport activity of ATP-binding cassette (ABC) transporters and solute carriers (SLC): Relevance to oral drug absorption.

29. Bridging the gaps between academic research and industrial product developments of lipid-based formulations.

30. Unlocking the full potential of lipid-based formulations using lipophilic salt/ionic liquid forms.

31. Colloidal aspects of dispersion and digestion of self-dispersing lipid-based formulations for poorly water-soluble drugs.

32. Lipid Formulations and Bioconjugation Strategies for Indomethacin Therapeutic Advances

33. Self-emulsifying drug delivery systems (SEDDS) disrupt the gut microbiota and trigger an intestinal inflammatory response in rats.

34. Lipid based formulations as supersaturating oral delivery systems: From current to future industrial applications.

35. Zeta potential shifting nanoemulsions comprising single and gemini tyrosine-based surfactants.

36. Role of Silica Intrawall Microporosity on Abiraterone Acetate Solubilization and In Vivo Oral Absorption

37. In Vitro Performance and Chemical Stability of Lipid-Based Formulations Encapsulated in a Mesoporous Magnesium Carbonate Carrier

38. New delivery systems for amphotericin B applied to the improvement of leishmaniasis treatment

39. Application of in vitro lipolysis for the development of oral self-emulsified delivery system of nimodipine.

40. Synergistic effect of PLGA nanoparticles and submicron triglyceride droplets in enhancing the intestinal solubilisation of a lipophilic weak base.

41. Oral Delivery of Highly Lipophilic, Poorly Water-Soluble Drugs: Self-Emulsifying Drug Delivery Systems to Improve Oral Absorption and Enable High-Dose Toxicology Studies of a Cholesteryl Ester Transfer Protein Inhibitor in Preclinical Species.

42. Preformulation studies to guide the development of raloxifene lipid-based delivery systems.

43. Leveraging the use of in vitro and computational methods to support the development of enabling oral drug products: An InPharma commentary.

45. Small-volume in vitro lipid digestion measurements for assessing drug dissolution in lipid-based formulations using SAXS

46. Role of Silica Intrawall Microporosity on Abiraterone Acetate Solubilization and in Vivo Oral Absorption

47. Development of a New Ex Vivo Lipolysis-Absorption Model for Nanoemulsions

48. Freeze-Dried Lopinavir-Loaded Nanostructured Lipid Carriers for Enhanced Cellular Uptake and Bioavailability: Statistical Optimization, in Vitro and in Vivo Evaluations

49. Modulating the Lipase-Mediated Bioactivity of Particle-Lipid Conjugates Through Changes in Nanostructure and Surface Chemistry.

50. Gastrointestinal lipolysis of lipid-based excipients intended for the oral drug delivery of poorly water-soluble drugs

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