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1. Role of Cholesterol in Interaction of Ionic Liquids with Model Lipid Membranes and Associated Permeability.

2. Conformation of Pyroglutamated Amyloid β (3-40) and (11-40) Fibrils - Extended or Hairpin?

3. The small-molecule kinase inhibitor ceritinib, unlike imatinib, causes a significant disturbance of lipid membrane integrity: A combined experimental and MD study.

4. Natamycin interferes with ergosterol-dependent lipid phases in model membranes.

5. Conformational State of Fenamates at the Membrane Interface: A MAS NOESY Study.

6. How 1, n -Bis(3-alkylimidazolium-1-yl) Alkane Interacts with the Phospholipid Membrane and Impacts the Toxicity of Dicationic Ionic Liquids.

7. Natamycin sequesters ergosterol and interferes with substrate transport by the lysine transporter Lyp1 from yeast.

8. Predicting 2 H NMR acyl chain order parameters with graph neural networks.

9. Effects of the RNA-Polymerase Inhibitors Remdesivir and Favipiravir on the Structure of Lipid Bilayers-An MD Study.

10. Drug-Membrane Interactions: Effects of Virus-Specific RNA-Dependent RNA Polymerase Inhibitors Remdesivir and Favipiravir on the Structure of Lipid Bilayers.

11. Impact of Lipid Ratio on the Permeability of Mixed Phosphatidylcholine/Phosphatidylglycerol Membranes in the Presence of 1-Dodecyl-3-methylimidazolium Bromide Ionic Liquid.

12. Probing the Influence of Single-Site Mutations in the Central Cross-β Region of Amyloid β (1-40) Peptides.

13. Membrane-water partitioning - Tackling the challenges of poorly soluble drugs using chaotropic co-solvents.

14. Interaction of the pitavastatin with model membranes.

15. Impact of Selected Small-Molecule Kinase Inhibitors on Lipid Membranes.

16. Altered Membrane Mechanics Provides a Receptor-Independent Pathway for Serotonin Action.

17. Role of cationic head-group in cytotoxicity of ionic liquids: Probing changes in bilayer architecture using solid-state NMR spectroscopy.

18. Binding of the small-molecule kinase inhibitor ruxolitinib to membranes does not disturb membrane integrity.

19. Light-induced lipid mixing implies a causal role of lipid splay in membrane fusion.

20. Interaction of the small-molecule kinase inhibitors tofacitinib and lapatinib with membranes.

21. Integration of Cell-Free Expression and Solid-State NMR to Investigate the Dynamic Properties of Different Sites of the Growth Hormone Secretagogue Receptor.

22. Membrane Interaction of Ibuprofen with Cholesterol-Containing Lipid Membranes.

23. Structural characteristics of oligomers formed by pyroglutamate-modified amyloid β peptides studied by solid-state NMR.

24. Bicelles Rich in both Sphingolipids and Cholesterol and Their Use in Studies of Membrane Proteins.

25. Effect of the Alkyl Chain Length of Amphiphilic Ionic Liquids on the Structure and Dynamics of Model Lipid Membranes.

26. Membrane Localization and Lipid Interactions of Common Lipid-Conjugated Fluorescence Probes.

27. Shiga toxin binding alters lipid packing and the domain structure of Gb 3 -containing membranes: a solid-state NMR study.

28. Interaction of statins with phospholipid bilayers studied by solid-state NMR spectroscopy.

29. Bexarotene Binds to the Amyloid Precursor Protein Transmembrane Domain, Alters Its α-Helical Conformation, and Inhibits γ-Secretase Nonselectively in Liposomes.

30. Amphiphilic Ionic Liquid-Induced Membrane Permeabilization: Binding Is Not Enough.

31. Transmembrane Helix Induces Membrane Fusion through Lipid Binding and Splay.

32. Improved in Vitro Folding of the Y 2 G Protein-Coupled Receptor into Bicelles.

33. Pyroglutamate-Modified Amyloid β (11- 40) Fibrils Are More Toxic than Wildtype Fibrils but Structurally Very Similar.

34. The Potential of α-Spinasterol to Mimic the Membrane Properties of Natural Cholesterol.

35. Membrane properties of hydroxycholesterols related to the brain cholesterol metabolism.

36. Expression, Functional Characterization, and Solid-State NMR Investigation of the G Protein-Coupled GHS Receptor in Bilayer Membranes.

37. N-terminal lipid conjugation of amyloid β(1-40) leads to the formation of highly ordered N-terminally extended fibrils.

38. The interaction of sorafenib and regorafenib with membranes is modulated by their lipid composition.

39. Fibrils of Truncated Pyroglutamyl-Modified Aβ Peptide Exhibit a Similar Structure as Wildtype Mature Aβ Fibrils.

40. A Detailed Analysis of the Morphology of Fibrils of Selectively Mutated Amyloid β (1-40).

41. A preliminary technical study on sodium dodecyl sulfate-induced changes of the nano-structural and macro-mechanical properties in human iliotibial tract specimens.

42. The adrenal specific toxicant mitotane directly interacts with lipid membranes and alters membrane properties depending on lipid composition.

43. Acellularization-Induced Changes in Tensile Properties Are Organ Specific - An In-Vitro Mechanical and Structural Analysis of Porcine Soft Tissues.

44. Structure and dynamics of the aliphatic cholesterol side chain in membranes as studied by (2)H NMR spectroscopy and molecular dynamics simulation.

45. Micro- and nano-tubules built from loosely and tightly rolled up thin sheets.

46. Structural Thermodynamics of myr-Src(2-19) Binding to Phospholipid Membranes.

47. Unwinding of the C-Terminal Residues of Neuropeptide Y is critical for Y₂ Receptor Binding and Activation.

48. The dynamics of the G protein-coupled neuropeptide Y2 receptor in monounsaturated membranes investigated by solid-state NMR spectroscopy.

49. Structural characterization of amyloid fibrils from the human parathyroid hormone.

50. Integrating solid-state NMR and computational modeling to investigate the structure and dynamics of membrane-associated ghrelin.

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