44 results on '"Denes, Adam"'
Search Results
2. Contactomics of Microglia and Intercellular Communication
3. Microglia states and nomenclature: A field at its crossroads
4. Microglia rescue neurons from aggregate-induced neuronal dysfunction and death through tunneling nanotubes
5. Microglial Inflammatory Mechanisms in Stroke: The Jury Is Still Out
6. Endothelial cells and macrophages as allies in the healthy and diseased brain
7. Perinatal asphyxia leads to acute kidney damage and increased renal susceptibility in adulthood.
8. Microglial Inflammatory Mechanisms in Stroke: The Jury is Still Out
9. Transfer of complex regional pain syndrome to mice via human autoantibodies is mediated by interleukin-1–induced mechanisms
10. Interleukin-1 mediates ischaemic brain injury via distinct actions on endothelial cells and cholinergic neurons
11. Novel therapeutic potential of angiotensin receptor 1 blockade in a rat model of diabetes-associated depression parallels altered BDNF signalling
12. Microglial cell loss after ischemic stroke favors brain neutrophil accumulation
13. Emerging roles of the acute phase protein pentraxin-3 during central nervous system disorders
14. AIM2 and NLRC4 inflammasomes contribute with ASC to acute brain injury independently of NLRP3
15. Citalopram Neuroendocrine Challenge Shows Altered Tryptophan and Kynurenine Metabolism in Migraine
16. Microglia states and nomenclature: A field at its crossroads.
17. Microglia states and nomenclature: A field at its crossroads.
18. Modeling Risk Factors and Confounding Effects in Stroke
19. A cross-laboratory preclinical study on the effectiveness of interleukin-1 receptor antagonist in stroke
20. Delayed Reperfusion Deficits after Experimental Stroke Account for Increased Pathophysiology
21. Chronic T cell proliferation in brains after stroke could interfere with the efficacy of immunotherapies
22. MO1016MULTIPLE-ORGAN DAMAGE FOLLOWING PERINATAL ASPHYXIA IN RAT MODEL
23. P0556MULTI-ORGAN DAMAGE FOLLOWING PERINATAL ASPHYXIA IN RAT MODEL
24. Microglial cell loss after ischemic stroke favors brain neutrophil accumulation
25. Interleukin-1 mediates ischaemic brain injury via distinct actions on endothelial cells and cholinergic neurons
26. Editorial for the Special Issue: Microglia-Neuron interactions in health and disease - novel perspectives for translational research
27. Microglial cell loss after ischemic stroke favors brain neutrophil accumulation
28. Neutrophil infiltration to the brain is platelet‐dependent, and is reversed by blockade of platelet GPIbα
29. Referee report. For: A pocket guide to electronic laboratory notebooks in the academic life sciences [version 1; referees: 4 approved]
30. Mitochondrial Ultrastructure Is Coupled to Synaptic Performance at Axonal Release Sites
31. Delayed reperfusion deficits after experimental stroke account for increased pathophysiology
32. Requirement for interleukin-1 to drive brain inflammation reveals tissue-specific mechanisms of innate immunity
33. σ1-Receptor Agonism Protects against Renal Ischemia-Reperfusion Injury
34. A cross-laboratory preclinical study on the effectiveness of interleukin-1 receptor antagonist in stroke
35. Interleukin‐1α and brain inflammation
36. Phase II anti-inflammatory and immune-modulating drugs for acute ischaemic stroke
37. Pentraxin 3 mediates neurogenesis and angiogenesis after cerebral ischaemia
38. Brain-immune interactions in health and disease
39. Requirement for interleukin-1 to drive brain inflammation reveals tissue-specific mechanisms of innate immunity
40. Delayed Reperfusion Deficits after Experimental Stroke Account for Increased Pathophysiology
41. Pyrrolidine Dithiocarbamate Prevents Neuroinflammation and Cognitive Dysfunction after Endotoxemia in Rats.
42. Requirement for interleukin-1 to drive brain inflammation reveals tissue-specific mechanisms of innate immunity.
43. Selective deletion of interleukin-1 alpha in microglia does not modify acute outcome but regulates neurorepair processes after experimental ischemic stroke.
44. σ1-Receptor Agonism Protects against Renal Ischemia-Reperfusion Injury.
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