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1. Impact of APOE on amyloid and tau accumulation in argyrophilic grain disease and Alzheimer’s disease

2. APOE deficiency impacts neural differentiation and cholesterol biosynthesis in human iPSC-derived cerebral organoids

3. Trem2 H157Y increases soluble TREM2 production and reduces amyloid pathology

4. Genome-wide association study of brain biochemical phenotypes reveals distinct genetic architecture of Alzheimer’s disease related proteins

5. Opposing effects of apoE2 and apoE4 on microglial activation and lipid metabolism in response to demyelination

6. LRP1 is a neuronal receptor for α-synuclein uptake and spread

7. Correction: Trem2 H157Y increases soluble TREM2 production and reduces amyloid pathology

8. APOE4 exacerbates synapse loss and neurodegeneration in Alzheimer’s disease patient iPSC-derived cerebral organoids

9. Preparation of single cell suspensions enriched in mouse brain vascular cells for single-cell RNA sequencing

10. Generation and validation of APOE knockout human iPSC-derived cerebral organoids

11. APOE ε2 is associated with increased tau pathology in primary tauopathy

12. Amyloid-beta modulates microglial responses by binding to the triggering receptor expressed on myeloid cells 2 (TREM2)

13. Author Correction: APOE4 exacerbates synapse loss and neurodegeneration in Alzheimer’s disease patient iPSC-derived cerebral organoids

14. APOE4 exacerbates α-synuclein seeding activity and contributes to neurotoxicity in Alzheimer’s disease with Lewy body pathology

15. ApoE Cascade Hypothesis in the pathogenesis of Alzheimer’s disease and related dementias

16. Novel Wnt modulators for the treatment of Alzheimer’s disease

17. Association of DNA methylation from the temporal cortex and cerebellum with AD‐related neuropathology and biochemistry

18. Determining Etiologic Diagnoses in Patients with Rapidly Progressive Dementia

19. Apolipoprotein E regulates lipid metabolism and α-synuclein pathology in human iPSC-derived cerebral organoids

20. Elevating microglia TREM2 reduces amyloid seeding and suppresses disease-associated microglia

21. Peripheral apoE4 enhances Alzheimer’s pathology and impairs cognition by compromising cerebrovascular function

22. Genome-wide association study of brain biochemical phenotypes reveals distinct genetic architecture of Alzheimer's disease related proteins

23. Correction to: Apolipoprotein E regulates lipid metabolism and α‑synuclein pathology in human iPSC‑derived cerebral organoids

24. APOE deficiency impacts neural differentiation and cholesterol biosynthesis in human iPSC-derived cerebral organoids

25. Genome-wide association study of brain biochemical phenotypes reveals distinct genetic architecture of Alzheimer’s Disease related proteins

26. Tau and apolipoprotein E modulate cerebrovascular tight junction integrity independent of cerebral amyloid angiopathy in Alzheimer’s disease

27. APOE4 exacerbates α-synuclein seeding activity and contributes to neurotoxicity in Alzheimer's disease with Lewy body pathology

28. TREM2-H157Y Increases Soluble TREM2 Production and Reduces Amyloid Pathology

29. APOE3 -Jacksonville (V236E) variant reduces self-aggregation and risk of dementia

30. Clinicopathologic Factors Associated With Reversion to Normal Cognition in Patients With Mild Cognitive Impairment

31. Preparation of single cell suspensions enriched in mouse brain vascular cells for single-cell RNA sequencing

32. TREM2 interacts with TDP-43 and mediates microglial neuroprotection against TDP-43-related neurodegeneration

33. ABCA7 haplodeficiency disturbs microglial immune responses in the mouse brain

34. APOE4-mediated amyloid-β pathology depends on its neuronal receptor LRP1

35. Generation and validation of APOE knockout human iPSC-derived cerebral organoids

36. TREM2 interacts with TDP-43 and mediates microglial neuroprotection against TDP-43-related neurodegeneration

37. Vascular apoE4 impairs behavior by modulating glio-vascular function

38. APOE4 exacerbates synapse loss and neurodegeneration in Alzheimer’s disease patient iPSC-derived cerebral organoids

39. Multiple system atrophy and apolipoprotein E

40. APOE ε4/ε4 diminishes neurotrophic function of human iPSC-derived astrocytes

41. Alzheimer's Risk Factors Age, APOE Genotype, and Sex Drive Distinct Molecular Pathways

42. APOE4 exacerbates α-synuclein pathology and related toxicity independent of amyloid

43. Vascular apoE4 Impairs Brain Cognition by Modulating Glio-Vascular Functions

44. Alzheimer's Risk Factors Age, APOE Genotype, and Sex Drive Distinct Molecular Pathways

45. Author Correction: APOE4 exacerbates synapse loss and neurodegeneration in Alzheimer’s disease patient iPSC-derived cerebral organoids

46. APOE ε2 is associated with increased tau pathology in primary tauopathy

47. Amyloid-beta modulates microglial responses by binding to the triggering receptor expressed on myeloid cells 2 (TREM2)

48. Association study between multiple system atrophy and TREM2 p.R47H

49. Apolipoprotein E4 Impairs Neuronal Insulin Signaling by Trapping Insulin Receptor in the Endosomes

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