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Updated: Oct 8, 2025

A11-positive β-amyloid Oligomer Preparation and Assessment Using Dot Blotting Analysis
Published on: May 22, 2018
Fas Apoptosis Inhibitory Molecule Blocks and Dissolves Pathological Amyloid-β Species
Hiroaki Kaku1,2, Alexander V Ludlow1, Michael F Gutknecht1
1Center for Immunobiology, Kalamazoo, MI, United States.
Abstract:
A number of neurodegenerative diseases are associated with the accumulation of misfolded proteins, including Alzheimer's disease (AD). In AD, misfolded proteins such as tau and amyloid-β (Aβ) form pathological insoluble deposits. It is hypothesized that molecules capable of dissolving such protein aggregates might reverse disease progression and improve the lives of afflicted AD patients. Here we report new functions of the highly conserved mammalian protein, Fas Apoptosis Inhibitory Molecule (FAIM). We found that FAIM-deficient Neuro 2A cells accumulate Aβ oligomers/fibrils. We further found that recombinant human FAIM prevents the generation of pathologic Aβ oligomers and fibrils in a cell-free system, suggesting that FAIM functions without any additional cellular components. More importantly, recombinant human FAIM disaggregates and solubilizes established Aβ fibrils. Our results identify a previously unknown, completely novel candidate for understanding and treating irremediable, irreversible, and unrelenting neurodegenerative diseases.
Insights
Fas Apoptosis Inhibitory Molecule (FAIM) can dissolve amyloid-beta (Aβ) aggregates, offering a potential new treatment for Alzheimer's disease (AD). This discovery may lead to therapies for irreversible neurodegenerative diseases.
Area of Science:
- Neuroscience
- Biochemistry
- Molecular Biology
Background:
- Neurodegenerative diseases like Alzheimer's disease (AD) are linked to the buildup of misfolded proteins, such as amyloid-beta (Aβ).
- These protein aggregates form insoluble deposits, contributing to disease progression.
- Current research seeks molecules that can break down these aggregates to potentially reverse disease effects.
Purpose of the Study:
- To investigate the role of Fas Apoptosis Inhibitory Molecule (FAIM) in the context of protein aggregation in neurodegenerative diseases.
- To determine if FAIM can prevent or reverse the formation of amyloid-beta (Aβ) aggregates.
Main Methods:
- Studied FAIM-deficient Neuro 2A cells to observe Aβ accumulation.
- Utilized recombinant human FAIM in cell-free systems to assess its effects on Aβ oligomers and fibrils.
- Assessed the ability of recombinant human FAIM to disaggregate and solubilize pre-formed Aβ fibrils.
Main Results:
- FAIM-deficient cells showed accumulation of Aβ oligomers and fibrils.
- Recombinant human FAIM inhibited the formation of pathological Aβ oligomers and fibrils in a cell-free system.
- Recombinant human FAIM demonstrated the ability to disaggregate and solubilize existing Aβ fibrils.
Conclusions:
- FAIM possesses a novel function in preventing and resolving amyloid-beta (Aβ) aggregation.
- FAIM is a potential therapeutic candidate for neurodegenerative diseases characterized by protein misfolding.
- This finding opens new avenues for treating irreversible neurological conditions.
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