101 results on '"Scemes, Eliana"'
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2. List of contributors
3. Neuronal Panx1 drives peripheral sensitization in experimental plantar inflammatory pain
4. Aquaporin‐4 and transient receptor potential vanilloid 4 balance in early postnatal neurodevelopment
5. Differential activation of mouse and human Panx1 channel variants.
6. Gap Junction Proteins (Connexins, Pannexins, and Innexins)
7. Astrocyte and neuronal Panx1 support long-term reference memory in mice
8. Astrocyte and Neuronal Panx1 Support Long-Term Reference Memory in Mice
9. Activity and Stability of Panx1 Channels in Astrocytes and Neuroblastoma Cells Are Enhanced by Cholesterol Depletion
10. Adrenergic Receptors on Astrocytes Modulate Gap Junctions
11. List of Contributors
12. Cx43 carboxyl terminal domain determines AQP4 and Cx30 endfoot organization and blood brain barrier permeability
13. Pannexin-1 channel opening is critical for COVID-19 pathogenesis
14. Cx43 carboxyl terminal domain determines AQP4 and Cx30 endfoot organization and blood brain barrier permeability
15. Human immunodeficiency virus‐1/simian immunodeficiency virus infection induces opening of pannexin‐1 channels resulting in neuronal synaptic compromise: A novel therapeutic opportunity to prevent NeuroHIV
16. Gap Junction Proteins (Connexins, Pannexins, and Innexins)
17. Resident Neural Stem Cells
18. List of Contributors
19. Generation and Characterization of Immortalized Mouse Cortical Astrocytes From Wildtype and Connexin43 Knockout Mice
20. The contribution of astrocyte and neuronal Panx1 to seizures is model and brain region dependent
21. The Contribution of Astrocyte and Neuronal Panx1 to Seizures Is Model and Brain Region Dependent
22. Biomarkers of Astrocyte Microdomains
23. Live Imaging of Neural Cell Functions
24. Connexin Expression (Gap Junctions and Hemichannels) in Astrocytes
25. GENERATION AND CHARACTERIZATION OF IMMORTALIZED MOUSE CORTICAL ASTROCYTES FROM WILDTYPE AND CONNEXIN43 KNOCKOUT MICE
26. Cell–Cell Communication: An Overview Emphasizing Gap Junctions
27. Contributors
28. Gap Junctions
29. The astrocytic syncytium
30. Gap Junctions in Glia
31. Chapter 7: Intercellular Calcium Wave Communication via Gap Junction Dependent and Independent Mechanisms
32. Selective inhibition of Panx1 channels decreases hemostasis and thrombosis in vivo
33. Exciting and not so exciting roles of pannexins
34. Astrocyte and Neuronal Pannexin1 Contribute Distinctly to Seizures
35. Pannexin1 links lymphatic function to lipid metabolism and atherosclerosis
36. Connexin 43-Mediated Astroglial Metabolic Networks Contribute to the Regulation of the Sleep-Wake Cycle
37. Associations of cognitive function and pain in older adults
38. Glial pannexin1 contributes to tactile hypersensitivity in a mouse model of orofacial pain
39. Pannexin1 Channels Are Required for Chemokine-Mediated Migration of CD4+ T Lymphocytes: Role in Inflammation and Experimental Autoimmune Encephalomyelitis
40. The speed of swelling kinetics modulates cell volume regulation and calcium signaling in astrocytes: A different point of view on the role of aquaporins
41. Blockade of P2X7 Receptors or Pannexin-1 Channels Similarly Attenuates Postischemic Damage
42. Rethinking the Role of Cholinergic Neurotransmission in the Cnidaria
43. Inhibitors of the 5-lipoxygenase pathway activate pannexin1 channels in macrophages via the thromboxane receptor
44. ATP and potassium ions: a deadly combination for astrocytes
45. Correction: Contribution of Pannexin1 to Experimental Autoimmune Encephalomyelitis
46. Pannexin 1 involvement in bladder dysfunction in a multiple sclerosis model
47. Contribution of Pannexin1 to Experimental Autoimmune Encephalomyelitis
48. 36 A PUTATIVE MECHANISM FOR PANNEXIN 1 INVOLVEMENT IN BLADDER DYSFUNCTION IN AN ANIMAL MODEL OF MULTIPLE SCLEROSIS
49. A Comparative Antibody Analysis of Pannexin1 Expression in Four Rat Brain Regions Reveals Varying Subcellular Localizations
50. Promises and pitfalls of a Pannexin1 transgenic mouse line
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