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Experiment #00000119
Hypothesis: Considering PubMed #41177462, Intranasally administered GDEVs, specifically spermidine-modified ginger extracellular vesicles, may offer a multi-target therapeutic strategy for C9orf72-associated ALS by crossing the blood-brain barrier via olfactory routes to potentially deliver gene-editing components, support axonal translation, restore STMN2 expression, and attenuate neuroinflammation.
Spermidine
_gates_from_spermidine
Olfactory Bulb
_gates_to_olfactory_bulb
Drug Delivery Systems
_gates_from_drug_delivery_systems
Stathmin 2
_gates_to_stathmin_2
Eukaryotic Initiation Factor-5A
_gates_from_eukaryotic_initiation_factor_5a
C9orf72 Protein
_gates_to_c9orf72_protein
+2 more
View Results
Experiment #00000038
Map the direct mechanical and axonal transport pathways connecting intranasal administration or trigeminal nerve delivery to the clearance of TDP-43 aggregates in sporadic ALS, and the delivery of CRISPR-Cas/ASO gene therapies targeting C9orf72 hexanucleotide repeat expansions in the cerebellum and brainstem.
Intranasal Route
_gates_from_intranasal_route
Blood-Brain Barrier
_gates_to_blood_brain_barrier
C9orf72 Protein
_gates_to_c9orf72_protein
_gates_from_c9orf72_protein
Brain
_gates_to_brain
Intranasal Administration
_gates_from_intranasal_administration
Cranial Nerves
_gates_to_cranial_nerves
_gates_from_cranial_nerves
Biological Transport
_gates_to_biological_transport
_gates_from_brain
Drug Delivery Systems
_gates_from_drug_delivery_systems
DNA-Binding Proteins
_gates_to_dna_binding_proteins
Neural Pathways
_gates_from_neural_pathways
Central Nervous System
_gates_to_central_nervous_system
+15 more
View Results
Reference Abstract
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Source: PubMed
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