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1. Starvation-induced regulation of carbohydrate transport at the blood–brain barrier is TGF-β-signaling dependent

2. A surface proton antenna in carbonic anhydrase II supports lactate transport in cancer cells

5. Transport activity of the sodium bicarbonate cotransporter NBCe1 is enhanced by different isoforms of carbonic anhydrase.

6. Role of carbonic anhydrase IV in the bicarbonate-mediated activation of murine and human sperm.

7. Picomolar fluorescent probes for compound affinity determination to carbonic anhydrase IX expressed in live cancer cells

8. Plasticity of Carbohydrate Transport at the Blood-Brain Barrier

9. Proton Transport in Cancer Cells: The Role of Carbonic Anhydrases

10. Carbonic anhydrase IX and acid transport in cancer

11. CAIX forms a transport metabolon with monocarboxylate transporters in human breast cancer cells

12. Catalytically inactive carbonic anhydrase‐related proteins enhance transport of lactate by MCT1

14. Experimental Approaches to Identify Selective Picomolar Inhibitors for Carbonic Anhydrase IX

15. Transport Metabolons and Acid/Base Balance in Tumor Cells

16. Energy Dynamics in the Brain: Contributions of Astrocytes to Metabolism and pH Homeostasis

17. Exploring the functionalisation of the thieno[2,3- d ]pyrimidinedione core: Late stage access to highly substituted 5-carboxamide-6-aryl scaffolds

18. The proteoglycan-like domain of carbonic anhydrase IX mediates non-catalytic facilitation of lactate transport in cancer cells

19. Branched‐chain ketoacids secreted by glioblastoma cells via <scp>MCT</scp> 1 modulate macrophage phenotype

20. Our hungry brain: Which role do glial cells play for the energy supply?

21. CAIX forms a transport metabolon with monocarboxylate transporters in human breast cancer cells

22. Efficacy of Novel CA IX Inhibitors in Biological Models

23. Catalytically inactive carbonic anhydrase-related proteins enhance transport of lactate by MCT1

24. Membrane-anchored carbonic anhydrase IV interacts with monocarboxylate transporters via their chaperones CD147 and GP70

25. Nitroimidazole-based inhibitors DTP338 and DTP348 are safe for zebrafish embryos and efficiently inhibit the activity of human CA IX in Xenopus oocytes

26. A surface proton antenna in carbonic anhydrase II supports lactate transport in cancer cells

27. Novel fluorinated carbonic anhydrase IX inhibitors reduce hypoxia-induced acidification and clonogenic survival of cancer cells

28. Interruption of lactate uptake by inhibiting mitochondrial pyruvate transport unravels direct antitumor and radiosensitizing effects

29. Reduction of epileptiform activity in ketogenic mice: The role of monocarboxylate transporters

30. Unser hungriges Gehirn: Welche Rolle spielen Gliazellen bei der Energieversorgung?

31. Functional interaction between bicarbonate transporters and carbonic anhydrase modulates lactate uptake into mouse cardiomyocytes

32. Intracellular and Extracellular Carbonic Anhydrases Cooperate Non-enzymatically to Enhance Activity of Monocarboxylate Transporters

33. Three-Dimensional Model for the Human Cl−/HCO3− Exchanger, AE1, by Homology to the E. coli ClC Protein

34. Selective inhibition of human carbonic anhydrase IX in Xenopus oocytes and MDA-MB-231 breast cancer cells

35. Integration of a 'proton antenna' facilitates transport activity of the monocarboxylate transporter MCT4

36. Lactate flux in astrocytes is enhanced by a non-catalytic action of carbonic anhydrase II

37. Nonenzymatic Augmentation of Lactate Transport via Monocarboxylate Transporter Isoform 4 by Carbonic Anhydrase II

38. Enzymatic Suppression of the Membrane Conductance Associated with the Glutamine Transporter SNAT3 Expressed in Xenopus Oocytes by Carbonic Anhydrase II

39. Carbonic Anhydrase II Increases the Activity of the Human Electrogenic Na+/ HCO3- Cotransporter

40. Catalytic activity of human carbonic anhydrase isoform IX is displayed both extra- and intracellularly

41. Targeting of astrocytic glucose metabolism by beta-hydroxybutyrate

43. Effects of CAII/CAIV double knockout on fertility

44. Inhibition of monocarboxylate transporter by N-cyanosulphonamide S0859

45. Analysis of the Binding Moiety Mediating the Interaction between Monocarboxylate Transporters and Carbonic Anhydrase II*

46. Hypoxia-induced carbonic anhydrase IX facilitates lactate flux in human breast cancer cells by non-catalytic function

47. Transport Activity of MCT1 Expressed in Xenopus Oocytes Is Increased by Interaction with Carbonic Anhydrase

48. Voltage Dependence of H+ Buffering Mediated by Sodium Bicarbonate Cotransport Expressed in Xenopus Oocytes

50. Carbonic Anhydrases and Their Interplay with Acid/Base-Coupled Membrane Transporters

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