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3D Culture Method for Alzheimer's Disease Modeling Reveals Interleukin-4  Rescues Aβ42-Induced Loss of Human Neural Stem Cell Plasticity -  ScienceDirect
3D Culture Method for Alzheimer's Disease Modeling Reveals Interleukin-4 Rescues Aβ42-Induced Loss of Human Neural Stem Cell Plasticity - ScienceDirect

Brain organoids: a next step for humanized Alzheimer's disease models? |  Molecular Psychiatry
Brain organoids: a next step for humanized Alzheimer's disease models? | Molecular Psychiatry

Modeling Alzheimer's disease with iPSC-derived brain cells | Molecular  Psychiatry
Modeling Alzheimer's disease with iPSC-derived brain cells | Molecular Psychiatry

Chronic deep brain stimulation in an Alzheimer's disease mouse model  enhances memory and reduces pathological hallmarks - Brain Stimulation:  Basic, Translational, and Clinical Research in Neuromodulation
Chronic deep brain stimulation in an Alzheimer's disease mouse model enhances memory and reduces pathological hallmarks - Brain Stimulation: Basic, Translational, and Clinical Research in Neuromodulation

Schematic of the major animal models of Alzheimer's disease. Less than... |  Download Scientific Diagram
Schematic of the major animal models of Alzheimer's disease. Less than... | Download Scientific Diagram

Recent Expansions on Cellular Models to Uncover the Scientific Barriers  Towards Drug Development for Alzheimer's Disease | SpringerLink
Recent Expansions on Cellular Models to Uncover the Scientific Barriers Towards Drug Development for Alzheimer's Disease | SpringerLink

Dementia Insights: What Do Animal Models of Alzheimer's Disease Tell Us? -  Practical Neurology
Dementia Insights: What Do Animal Models of Alzheimer's Disease Tell Us? - Practical Neurology

Natural genetic variation determines microglia heterogeneity in  wild-derived mouse models of Alzheimer's disease - ScienceDirect
Natural genetic variation determines microglia heterogeneity in wild-derived mouse models of Alzheimer's disease - ScienceDirect

AT2R's (Angiotensin II Type 2 Receptor's) Role in Cognitive and  Cerebrovascular Deficits in a Mouse Model of Alzheimer Disease |  Hypertension
AT2R's (Angiotensin II Type 2 Receptor's) Role in Cognitive and Cerebrovascular Deficits in a Mouse Model of Alzheimer Disease | Hypertension

Recent Expansions on Cellular Models to Uncover the Scientific Barriers  Towards Drug Development for Alzheimer's Disease | SpringerLink
Recent Expansions on Cellular Models to Uncover the Scientific Barriers Towards Drug Development for Alzheimer's Disease | SpringerLink

Recent Expansions on Cellular Models to Uncover the Scientific Barriers  Towards Drug Development for Alzheimer's Disease | SpringerLink
Recent Expansions on Cellular Models to Uncover the Scientific Barriers Towards Drug Development for Alzheimer's Disease | SpringerLink

Can mouse models mimic sporadic Alzheimer's disease? Foidl BM, Humpel C -  Neural Regen Res
Can mouse models mimic sporadic Alzheimer's disease? Foidl BM, Humpel C - Neural Regen Res

GABAeron Presents Promising Preclinical Data on Stem Cell-Based Therapy for Alzheimer's  Disease
GABAeron Presents Promising Preclinical Data on Stem Cell-Based Therapy for Alzheimer's Disease

PLOS ONE: Iron Chelation Inhibits Osteoclastic Differentiation In Vitro and  in Tg2576 Mouse Model of Alzheimer's Disease
PLOS ONE: Iron Chelation Inhibits Osteoclastic Differentiation In Vitro and in Tg2576 Mouse Model of Alzheimer's Disease

Neural stem cells improve cognition via BDNF in a transgenic model of Alzheimer  disease | PNAS
Neural stem cells improve cognition via BDNF in a transgenic model of Alzheimer disease | PNAS

Rescue of spatial memory deficits in a mouse model of Alzheimer's... |  Download Scientific Diagram
Rescue of spatial memory deficits in a mouse model of Alzheimer's... | Download Scientific Diagram

In Vivo Chimeric Alzheimer's Disease Modeling of Apolipoprotein E4 Toxicity  in Human Neurons - ScienceDirect
In Vivo Chimeric Alzheimer's Disease Modeling of Apolipoprotein E4 Toxicity in Human Neurons - ScienceDirect

Counteracting the effects of TNF receptor‐1 has therapeutic potential in Alzheimer's  disease | EMBO Molecular Medicine
Counteracting the effects of TNF receptor‐1 has therapeutic potential in Alzheimer's disease | EMBO Molecular Medicine

Frontiers | In vitro Models of Neurodegenerative Diseases | Cell and  Developmental Biology
Frontiers | In vitro Models of Neurodegenerative Diseases | Cell and Developmental Biology

Frontiers | Microglia in Alzheimer Disease: Well-Known Targets and New  Opportunities | Aging Neuroscience
Frontiers | Microglia in Alzheimer Disease: Well-Known Targets and New Opportunities | Aging Neuroscience

3D culture models of Alzheimer's disease: a road map to a “cure-in-a-dish”  | Molecular Neurodegeneration | Full Text
3D culture models of Alzheimer's disease: a road map to a “cure-in-a-dish” | Molecular Neurodegeneration | Full Text

Emerging Therapeutic Strategies in Alzheimer's Disease | IntechOpen
Emerging Therapeutic Strategies in Alzheimer's Disease | IntechOpen

Correlation between orphan nuclear receptor Nurr1 expression and amyloid  deposition in 5XFAD mice, an animal model of Alzheimer's disease - Moon -  2015 - Journal of Neurochemistry - Wiley Online Library
Correlation between orphan nuclear receptor Nurr1 expression and amyloid deposition in 5XFAD mice, an animal model of Alzheimer's disease - Moon - 2015 - Journal of Neurochemistry - Wiley Online Library

Expression of ACAT1 in Alzheimer Disease mouse and cell models. (A) The...  | Download Scientific Diagram
Expression of ACAT1 in Alzheimer Disease mouse and cell models. (A) The... | Download Scientific Diagram

Amyloid‐β oligomers in cellular models of Alzheimer's disease - Fontana -  2020 - Journal of Neurochemistry - Wiley Online Library
Amyloid‐β oligomers in cellular models of Alzheimer's disease - Fontana - 2020 - Journal of Neurochemistry - Wiley Online Library

miRNA-31 Improves Cognition and Abolishes Amyloid-β Pathology by Targeting  APP and BACE1 in an Animal Model of Alzheimer's Disease - ScienceDirect
miRNA-31 Improves Cognition and Abolishes Amyloid-β Pathology by Targeting APP and BACE1 in an Animal Model of Alzheimer's Disease - ScienceDirect