Sign in

Wenjie Luo

@wjnyc.bsky.social
11 followers 9 following 3 posts

Alzheimer’s disease researcher, microglia, lipid, tau, inflammation

PostsRepliesMedia
Reposted by Wenjie Luo
Nature Metabolism @natmetabolism.nature.com · 16/11/2025
RESEARCH | M Giera, @rikvanderkant.bsky.social et al (LUMC, VU; NL) Neurolipid Atlas- lipidomic insights into neurodegenerative diseases e.g. cholesterol's role in Alzheimer’s disease 🧪
bit.ly
The Neurolipid Atlas: a lipidomics resource for neurodegenerative diseases - Nature Metabolism
The authors introduce the Neurolipid Atlas, a dynamic resource for the community to gain insight into lipid alterations in neurodegenerative disease, and they leverage the platform to show how cholesterol alterations in astrocytes can dysregulate neuroinflammatory pathways in Alzheimer disease.
085
Reposted by Wenjie Luo
Gan Lab @liganlab.bsky.social · 26/11/2025
New study from Jiang group gives clues to Down syndrome patients' resilience to AD: a DS-linked myeloid mutation (CSF2RB A455D) protects engrafted human microglia against tau by suppressing harmful IFN signaling, boosting phagocytosis, & reducing microglial senescence www.nature.com/articles/s41...
nature.com
A myeloid trisomy 21-associated gene variant is protective from Alzheimer’s disease - Nature Neuroscience
Engineering human microglia with a Down-syndrome-linked myeloid gene variant resists tau-induced dysfunction and protects neurons in chimeric brains, offering proof of concept for transformative micro...
052
Reposted by Wenjie Luo
Gan Lab @liganlab.bsky.social · 26/11/2025
🍁Feeling grateful. Happy Thanksgiving from the Gan lab & Appel Institute!🍁
031
Wenjie Luo @wjnyc.bsky.social · 23/07/2025
Always excited to see my colleagues pushing the limits of technology-congrats to @hagentilgner.bsky.social @liganlab.bsky.social
000
Reposted by Wenjie Luo
Gan Lab @liganlab.bsky.social · 24/06/2025
🚨Our new paper is out!🚨 We uncover a protective mechanism of the rare APOE3 Christchurch (R136S) mutation against tauopathy—by suppressing microglial cGAS–STING–interferon (IFN) pathway, a key inflammatory axis triggered by tau. www.sciencedirect.com/science/arti...
sciencedirect.com
The R136S mutation in the APOE3 gene confers resilience against tau pathology via inhibition of the cGAS-STING-IFN pathway
The Christchurch mutation (R136S) in the APOE3 (E3S/S) gene is associated with attenuated tau load and cognitive decline despite the presence of a cau…
34916
Wenjie Luo @wjnyc.bsky.social · 30/04/2025
A fantastic two-days NYAS conference with a stellar lineup of researchers leading the field. Looking forward to next event in person!
010
Reposted by Wenjie Luo
Alzheimer's Association @alzassociation.bsky.social · 16/04/2025
Investing in Alzheimer’s and dementia research, gives scientists the tools they need to better understand how to prevent, detect, diagnose and treat dementia. Ask Congress to increase research funding at the NIH by an additional $113.485 million: bit.ly/42ze7l0.
0113
Reposted by Wenjie Luo
Gan Lab @liganlab.bsky.social · 04/04/2025
A CSF proteomics study in Nature Medicine of 3,397 individuals identified synaptic proteins YWHAG:NPTX2 as key correlates of cognitive impairment in AD, highlighting synapse dysfunction as a core driver of AD dementia. #Alzheimers #Proteomics #Neurodegeneration www.nature.com/articles/s41...
nature.com
A cerebrospinal fluid synaptic protein biomarker for prediction of cognitive resilience versus decline in Alzheimer’s disease - Nature Medicine
The ratio between the levels of two synaptic proteins in cerebrospinal fluid predicts future cognitive resilience versus decline among presymptomatic individuals and individuals with early Alzheimer’s...
031
Reposted by Wenjie Luo
Gan Lab @liganlab.bsky.social · 04/04/2025
Fascinating study from Nature reveals crosstalk between mitochondrial translation, ROS activity, and the membrane retromer complex. www.nature.com/articles/s41...
nature.com
Oxidation of retromer complex controls mitochondrial translation - Nature
Systematic base-editing and computational screens identify specific cysteine residues on VPS35 in the retromer complex as key sensors that decrease mitochondrial translation in response to reactive ox...
032