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1. Optogenetic targeting of astrocytes restores slow brain rhythm function and slows Alzheimer’s disease pathology

2. Neuroinflammation: The Abused Concept

3. Multi-transcriptomic analysis points to early organelle dysfunction in human astrocytes in Alzheimer's disease

4. Sex-dependent calcium hyperactivity due to lysosomal-related dysfunction in astrocytes from APOE4 versus APOE3 gene targeted replacement mice

5. CREB Regulates Distinct Adaptive Transcriptional Programs in Astrocytes and Neurons

6. Neurons and neuronal activity control gene expression in astrocytes to regulate their development and metabolism

7. Correction: Author Correction: Neurons and neuronal activity control gene expression in astrocytes to regulate their development and metabolism

8. Astrocyte strategies in the energy-efficient brain

9. Microglia states and nomenclature

10. Defective neuritogenesis in Abcd1/2 deficient rat neurons due to intrinsic and astrocyte-dependent mechanisms

11. Defining Microglial States and Nomenclature: A Roadmap to 2030

12. Multi-transcriptomic analysis points to early organelle dysfunction in human astrocytes in Alzheimer's disease

13. Multi-transcriptomic analysis points to early organelle dysfunction in human astrocytes in Alzheimer’s disease

14. Cover Image, Volume 69, Issue 4

15. Reactive astrocyte nomenclature, definitions, and future directions

16. Amyloid-β impairs the phagocytosis of dystrophic synapses by astrocytes in Alzheimer's disease

18. Should We Stop Saying ‘Glia’ and ‘Neuroinflammation’?

19. A roadmap to integrate astrocytes into Systems Neuroscience

20. Targeted activation of CREB in reactive astrocytes is neuroprotective in focal acute cortical injury

21. Topological analyses in APP/PS1 mice reveal that astrocytes do not migrate to amyloid-β plaques

22. Correction: Author Correction: Neurons and neuronal activity control gene expression in astrocytes to regulate their development and metabolism

23. GSEA of mouse and human mitochondriomes reveals fatty acid oxidation in astrocytes

24. Neuroprotective drug for nerve trauma revealed using artificial intelligence

25. Phagocytic clearance of presynaptic dystrophies by reactive astrocytes in Alzheimer's disease

26. CREB Regulates Distinct Adaptive Transcriptional Programs in Astrocytes and Neurons

27. [P4–431]: MITOCHONDRION HYPERFUSION AND HYPERMOTILITY IN APOE4 ASTROCYTES

28. Pioglitazone halts axonal degeneration in a mouse model of X-linked adrenoleukodystrophy

29. Tauroursodeoxycholic bile acid arrests axonal degeneration by inhibiting the unfolded protein response in X-linked adrenoleukodystrophy

30. CREB decreases astrocytic excitability by modifying subcellular calcium fluxes via the sigma-1 receptor

31. JNK/ERK/FAK Mediate Promigratory Actions of Basic Fibroblast Growth Factor in Astrocytes via CCL2 and COX2

32. Oxidative stress underlying axonal degeneration in adrenoleukodystrophy: A paradigm for multifactorial neurodegenerative diseases?

33. Secretase-Independent and RhoGTPase/PAK/ERK-Dependent Regulation of Cytoskeleton Dynamics in Astrocytes by NSAIDs and Derivatives

34. Functional genomic analysis unravels a metabolic-inflammatory interplay in adrenoleukodystrophy

35. Noradrenergic depletion potentiates β-amyloid induced cortical inflammation: implications for Alzheimer's disease

36. Induction of Nitric Oxide Synthase in Rat C6 Glioma Cells

37. Molecular targets of non-steroidal anti-inflammatory drugs in neurodegenerative diseases

38. Targeted activation of CREB in reactive astrocytes is neuroprotective in focal acute cortical injury

39. Degeneration of noradrenergic fibres from the locus coeruleus causes tight-junction disorganisation in the rat brain

40. Peroxisome Proliferator-activated Receptor γ Thiazolidinedione Agonists Increase Glucose Metabolism in Astrocytes

41. [Untitled]

42. Agmatinase Activity in Rat Brain: A Metabolic Pathway for the Degradation of Agmatine

43. Estrogen inhibits NF??B-dependent inflammationin brain endothelium without interfering withI??B degradation

44. Unique aspects of NO-related cerebrovascular regulation: influence of estrogen and caveolin-1

45. Peroxisome proliferator-activated receptor-? agonists prevent experimental autoimmune encephalomyelitis

46. The Key Role of Caveolin-1 in Estrogen-Mediated Regulation of Endothelial Nitric Oxide Synthase Function in Cerebral Arterioles In vivo

47. Estrogen and Cerebrovascular Physiology and Pathophysiology

48. Cerebellar stimulation reduces inducible nitric oxide synthase expression and protects brain from ischemia

49. Metabolism of agmatine in macrophages: modulation by lipopolysaccharide and inhibitory cytokines

50. Central Neurogenic Neuroprotection: Central Neural Systems That Protect the Brain from Hypoxia and Ischemia

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