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1. The Concise Guide to PHARMACOLOGY 2023/24: Ion channels.

2. THE CONCISE GUIDE TO PHARMACOLOGY 2021/22: Ion channels

3. The mechanisms of aquaporin expression and translocation in cerebral pathologies

4. The Concise Guide to PHARMACOLOGY 2023/24: Ion channels

8. The Concise Guide to PHARMACOLOGY 2023/24: Ion channels

9. Mechanisms of aquaporin-4 vesicular trafficking in mammalian cells

10. Astrocytes in functional recovery following central nervous system injuries

11. The Concise Guide to PHARMACOLOGY 2023/24:Ion channels

16. Assessing water permeability of aquaporins in a proteoliposome-based stopped-flow setup

17. High-yield overproduction and purification of human aquaporins from Pichia pastoris

18. Signaling Mechanisms and Pharmacological Modulators Governing Diverse Aquaporin Functions in Human Health and Disease

19. Characterization of human aquaporin protein-protein interactions using microscale thermophoresis (MST)

20. Molecular mechanisms governing aquaporin relocalisation

21. Recent breakthroughs and future directions in drugging aquaporins

22. Emerging roles for dynamic aquaporin-4 subcellular relocalization in CNS water homeostasis

23. Molecular mechanisms governing aquaporin relocalisation

27. Emerging roles for dynamic aquaporin-4 subcellular relocalization in CNS water homeostasis

28. Advances in Applying Computer-Aided Drug Design for Neurodegenerative Diseases

29. The concise guide to pharmacology 2021/22:Ion channels

30. Aquaporins in GtoPdb v.2021.3

33. Aquaporins (version 2020.4) in the IUPHAR/BPS Guide to Pharmacology Database

34. Calcein Fluorescence Quenching to Measure Plasma Membrane Water Flux in Live Mammalian Cells

35. Targeting Aquaporin-4 Subcellular Localization to Treat Central Nervous System Edema

37. Design and Validation of a Human Brain Endothelial Microvessel-on-a-Chip Open Microfluidic Model Enabling Advanced Optical Imaging

38. Targeting Aquaporin-4 Subcellular Localization to Treat Central Nervous System Edema

39. Emerging roles for dynamic aquaporin-4 subcellular relocalization in CNS water homeostasis.

40. Inhibitors of Mammalian Aquaporin Water Channels

43. Transcriptome Analysis of Gene Expression Provides New Insights into the Effect of Mild Therapeutic Hypothermia on Primary Human Cortical Astrocytes Cultured under Hypoxia

44. Hypothermia increases aquaporin 4 (AQP4) plasma membrane abundance in human primary cortical astrocytes via a calcium/transient receptor potential vanilloid 4 (TRPV4)- and calmodulin-mediated mechanism

45. Transcriptome analysis suggests a role for the differential expression of cerebral aquaporins and the MAPK signalling pathway in human temporal lobe epilepsy

46. Identification and molecular mechanisms of the rapid tonicity-induced relocalization of aquaporin 4 channel

47. Identification and molecular mechanisms of the rapid tonicity-induced relocalization of the aquaporin 4 channel

48. Beyond water homeostasis:diverse functional roles of mammalian aquaporins

50. Advances in Applying Computer-Aided Drug Design for Neurodegenerative Diseases

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