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Updated: May 27, 2026

Visualization of Amyloid β Deposits in the Human Brain with Matrix-assisted Laser Desorption/Ionization Imaging Mass Spectrometry
Published on: March 7, 2019
Endogenous secretory receptor for advanced glycation end-products inhibits amyloid-β1-42 uptake into mouse brain
Takahiro Sugihara1, Seiichi Munesue, Yasuhiko Yamamoto
1Department of Biochemistry and Molecular Vascular Biology, Kanazawa University, Graduate School of Medical Science, Kanazawa, Japan.
Abstract:
The cell-surface receptor for advanced glycation end-products (RAGE) has been implicated in the development of diabetic vascular complications and Alzheimer's disease. RAGE has been considered to be involved in amyloid-β1-42 (Aβ1-42) uptake into brain. In the present study, we demonstrate that endogenous secretory RAGE (esRAGE), a decoy form of RAGE generated by alternative RNA processing, is able to inhibit Aβ1-42 influx into mouse brain. Surface plasmon resonance and competitive binding assays revealed that human Aβ1-42 interacted with human esRAGE within the immunoglobulin V type region. We next examined the uptake and distribution of 125I-labeled human Aβ1-42 in various organs and body fluids of newly created mice overexpressing human esRAGE as well as RAGE-null and wild-type (WT) mice. The transition of the 125I-labeled Aβ1-42 from circulation to brain parenchyma peaked at 30 min after the injection into WT mice, but this was significantly blunted in esRAGE-overexpressing and RAGE-null mice. Significant reduction in 125I-labeled Aβ1-42-derived photo-stimulated luminescence were marked in ventricles, cerebral cortex, hippocampus, especially CA1 and CA3 regions, putamen, and thalamus. The results thus suggest the potential of esRAGE in protection against the development of Alzheimer's disease.
Insights
Endogenous secretory RAGE (esRAGE) inhibits amyloid-beta influx into the brain. This finding suggests esRAGE may offer protection against Alzheimer's disease development.
Area of Science:
- Neuroscience
- Molecular Biology
- Biochemistry
Background:
- The receptor for advanced glycation end-products (RAGE) is linked to diabetic complications and Alzheimer's disease.
- RAGE is believed to facilitate amyloid-beta (Aβ) uptake in the brain.
Purpose of the Study:
- To investigate the role of endogenous secretory RAGE (esRAGE) in inhibiting Aβ1-42 brain influx.
- To explore the therapeutic potential of esRAGE in Alzheimer's disease.
Main Methods:
- Surface plasmon resonance and competitive binding assays to study Aβ1-42 and esRAGE interaction.
- In vivo studies using mice overexpressing esRAGE, RAGE-null mice, and wild-type mice.
- Tracking of 125I-labeled Aβ1-42 distribution in various organs and brain regions.
Main Results:
- Human Aβ1-42 directly interacts with human esRAGE in vitro.
- Aβ1-42 brain influx was significantly reduced in esRAGE-overexpressing and RAGE-null mice compared to wild-type.
- Reduced Aβ1-42 accumulation was observed in multiple brain regions, including the hippocampus and thalamus.
Conclusions:
- Endogenous secretory RAGE (esRAGE) effectively inhibits Aβ1-42 brain penetration.
- esRAGE demonstrates potential as a protective factor against Alzheimer's disease pathogenesis.

