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1. An integrated toolkit for human microglia functional genomics

2. 53 Inducing immune response with FLASH and conventional radiation in diffuse midline glioma (DMG)

3. Stat1 is an inducible transcriptional repressor of neural stem cells self-renewal program during neuroinflammation

4. A cortical immune network map identifies distinct microglial transcriptional programs associated with β-amyloid and Tau pathologies

5. Single cell RNA sequencing of human microglia uncovers a subset associated with Alzheimer’s disease

6. BIN1 protein isoforms are differentially expressed in astrocytes, neurons, and microglia: neuronal and astrocyte BIN1 are implicated in tau pathology

7. Chi3l3 induces oligodendrogenesis in an experimental model of autoimmune neuroinflammation

8. A transcriptomic atlas of aged human microglia

9. Tiam1/Rac1 complex controls Il17a transcription and autoimmunity

10. Increased White Matter Inflammation in Aging- and Alzheimer’s Disease Brain

11. Dynamic changes in Ezh2 gene occupancy underlie its involvement in neural stem cell self-renewal and differentiation towards oligodendrocytes.

12. FLASH and Conventional Radiation Induce Differential Immune Responses in Diffuse Intrinsic Pontine Glioma, Highlighting Potential for Combination Immunotherapy

13. Epigenomic features related to microglia are associated with attenuated effect of APOE ε4 on Alzheimer's disease risk in humans

14. A cross-disease human microglial framework identifies disease-enriched subsets and tool compounds for microglial polarization

15. TMIC-68. EVALUATING FLASH AND CONVENTIONAL DOSE-RATE RADIATION AND IMMUNE RESPONSE WITH SINGLE-CELL SEQUENCING IN DIFFUSE MIDLINE GLIOMA (DMG)

16. DIPG-45. Radiation induces a robust interferon response in Diffuse Midline Glioma (DMG), improving the potential for combination immunotherapy

17. Single cell RNA sequencing of human microglia uncovers a subset that is associated with Alzheimer’s disease

18. Epigenomic features related to microglia are associated with attenuated effect of APOE ε4 on Alzheimer’s disease risk in humans

19. Single cell RNA sequencing of human microglia uncovers a subset associated with Alzheimer's disease

20. A cortical immune network map identifies distinct microglial transcriptional programs associated with β-amyloid and Tau pathologies

21. BIN1 protein isoforms are differentially expressed in astrocytes, neurons, and microglia: neuronal and astrocyte BIN1 are implicated in tau pathology

22. A transcriptomic atlas of aged human microglia

23. 91 Impact of ultra-fast ‘FLASH’ radiotherapy on single cell immunogenomics in diffuse intrinsic pontine glioma (DIPG)

24. Sleep fragmentation, microglial aging, and cognitive impairment in adults with and without Alzheimer’s dementia

25. BIN1 protein isoforms are differentially expressed in astrocytes, neurons, and microglia: neuronal and astrocyte BIN1 implicated in Tau pathology

26. A single cell-based atlas of human microglial states reveals associations with neurological disorders and histopathological features of the aging brain

27. Sleep fragmentation, accelerated aging and increased activation of microglia, and cognitive impairment in older adults

28. A cortical immune network map identifies a subset of human microglia involved in Tau pathology

29. The Multiple Sclerosis Genomic Map: Role of peripheral immune cells and resident microglia in susceptibility

30. A human microglia-like cellular model for assessing the effects of neurodegenerative disease gene variants

31. Identification of a microglia phenotype supportive of remyelination

32. Microglia Phenotype Diversity

33. Cell surface glycan engineering of neural stem cells augments neurotropism and improves recovery in a murine model of multiple sclerosis

34. Priming of microglia in a DNA-repair deficient model of accelerated aging

35. Dynamic Changes in Ezh2 Gene Occupancy Underlie Its Involvement in Neural Stem Cell Self-Renewal and Differentiation towards Oligodendrocytes

36. Enhanced hippocampal neurogenesis in the absence of microglia T cell interaction and microglia activation in the murine running wheel model

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