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1. Decoupling astrocytes in adult mice impairs synaptic plasticity and spatial learning.

2. Permeation of Molecules through Astroglial Connexin 43 Hemichannels Is Modulated by Cytokines with Parameters Depending on the Permeant Species.

3. Connexin 43 deletion in astrocytes promotes CNS remyelination by modulating local inflammation.

4. Sibling astrocytes share preferential coupling via gap junctions.

5. Glucocorticoid receptor in astrocytes regulates midbrain dopamine neurodegeneration through connexin hemichannel activity.

6. Inhibition of astroglial connexin43 hemichannels with TAT-Gap19 exerts anticonvulsant effects in rodents.

7. Monitoring gap junctional communication in astrocytes from acute adult mouse brain slices using the gap-FRAP technique.

8. Contribution of Astroglial Cx43 Hemichannels to the Modulation of Glutamatergic Currents by D-Serine in the Mouse Prefrontal Cortex.

9. Cannabinoids prevent the amyloid β-induced activation of astroglial hemichannels: A neuroprotective mechanism.

10. Astroglial Connexins as a Therapeutic Target for Alzheimer's Disease.

11. Potentiation of Amitriptyline Anti-Hyperalgesic-Like Action By Astroglial Connexin 43 Inhibition in Neuropathic Rats.

12. Impact of Astroglial Connexins on Modafinil Pharmacological Properties.

13. Connexin-based channels contribute to metabolic pathways in the oligodendroglial lineage.

14. General anesthetics have differential inhibitory effects on gap junction channels and hemichannels in astrocytes and neurons.

15. Astroglial Connexin 43 Hemichannels Modulate Olfactory Bulb Slow Oscillations.

16. Activated microglia impairs neuroglial interaction by opening Cx43 hemichannels in hippocampal astrocytes.

17. Hypothalamic astroglial connexins are required for brain glucose sensing-induced insulin secretion.

18. The psychostimulant modafinil enhances gap junctional communication in cortical astrocytes.

19. β-amyloid and ATP-induced diffusional trapping of astrocyte and neuronal metabotropic glutamate type-5 receptors.

20. Connexin-based intercellular communication and astrocyte heterogeneity.

21. Reduced connexin43 expression correlates with c-Src activation, proliferation, and glucose uptake in reactive astrocytes after an excitotoxic insult.

22. Deletion of astroglial connexins weakens the blood-brain barrier.

23. Connexin-based channels in astrocytes: how to study their properties.

24. Increased interaction of connexin43 with zonula occludens-1 during inhibition of gap junctions by G protein-coupled receptor agonists.

25. Plasticity of astroglial networks in olfactory glomeruli.

26. ATP and glutamate released via astroglial connexin 43 hemichannels mediate neuronal death through activation of pannexin 1 hemichannels.

27. Astroglial networks scale synaptic activity and plasticity.

28. Inhibition of cytokine-induced connexin43 hemichannel activity in astrocytes is neuroprotective.

29. Astroglial networks: a step further in neuroglial and gliovascular interactions.

30. Hypoxia in high glucose followed by reoxygenation in normal glucose reduces the viability of cortical astrocytes through increased permeability of connexin 43 hemichannels.

31. Cannabinoids prevent the opposite regulation of astroglial connexin43 hemichannels and gap junction channels induced by pro-inflammatory treatments.

32. Electrical coupling between hippocampal astrocytes in rat brain slices.

33. Connexin43 is involved in the effect of endothelin-1 on astrocyte proliferation and glucose uptake.

34. Astroglial metabolic networks sustain hippocampal synaptic transmission.

35. Neurons control the expression of connexin 30 and connexin 43 in mouse cortical astrocytes.

36. Lysosomes are the major vesicular compartment undergoing Ca2+-regulated exocytosis from cortical astrocytes.

37. Gap junction-mediated astrocytic networks in the mouse barrel cortex.

38. Cx43 hemichannels and gap junction channels in astrocytes are regulated oppositely by proinflammatory cytokines released from activated microglia.

39. Systematic colocalization errors between acridine orange and EGFP in astrocyte vesicular organelles.

40. Astrocyte calcium waves: what they are and what they do.

41. Glucose metabolism and proliferation in glia: role of astrocytic gap junctions.

42. Proinflammatory cytokines released from microglia inhibit gap junctions in astrocytes: potentiation by beta-amyloid.

43. S1P inhibits gap junctions in astrocytes: involvement of G and Rho GTPase/ROCK.

44. Neurons set the tone of gap junctional communication in astrocytic networks.

45. Hydrogen peroxide increases gap junctional communication and induces astrocyte toxicity: regulation by brain macrophages.

46. Neurons and brain macrophages regulate connexin expression in cultured astrocytes.

47. Effect of endothelin-1 on astrocytic protein content.

49. Control and plasticity of intercellular calcium waves in astrocytes: a modeling approach.

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