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Genetic Analysis of Hereditary Transthyretin Ala97Ser Related Amyloidosis
Published on: June 9, 2018
The question of strains in AA amyloidosis
Gunilla T Westermark1, Ebba Nyström2, Sofie Nyström2
1Department of Medical Cell Biology, Uppsala University, 75123, Uppsala, Sweden.
Abstract:
The existence of transmissible amyloid fibril strains has long intrigued the scientific community. The strain theory originates from prion disorders, but here, we provide evidence of strains in systemic amyloidosis. Human AA amyloidosis manifests as two distinct clinical phenotypes called common AA and vascular AA. Glomerular amyloid deposition of the kidney defines the common form, while in the vascular type amyloid deposits are massive in the renal medulla and in arteries throughout the body, while glomeruli are spared. By electron microscopy the two types appeared morphologically different. The common type was composed of dispersed fibrils which tended to be clustered whereas the vascular type was composed of longer and more distinct less clustered fibrils. Staining with fluorescent amyloid binding ligands analyzed by hyperspectral microscopy showed differential staining patterns between the two groups supporting the notion of human AA amyloid strains. AA amyloid staining was significantly different from systemic AL amyloid. Both types of AA (common and vascular) and AL amyloid fibrils were isolated and used to seed mouse AA amyloid in groups of inflamed NMRI mice (n = 9-10 per group). All but two mice showed amyloid deposits in the spleen induced by the human seeds. Amyloid binding ligand analysis was applied on the splenic amyloid deposits and revealed no clear significant difference between mice seeded with AA fibrils from different donors being vascular or common, but the AA deposits of mice given AL fibrils showed significantly different amyloid fluorescent signals compared to all groups of mice receiving AA fibrils. The combined results support the hypothesis that AA amyloid fibril structures can vary depending on the seed and may manifest as amyloid strains.
Insights
Evidence suggests amyloid fibril strains exist in systemic amyloidosis, not just prion disorders. Human AA amyloidosis shows distinct common and vascular forms, differing morphologically and in staining, indicating potential strain variations.
Area of Science:
- Biochemistry
- Pathology
- Microscopy
Background:
- Transmissible amyloid fibril strains are known in prion diseases.
- Systemic amyloidosis, specifically human AA amyloidosis, presents distinct clinical phenotypes.
- These phenotypes, common AA and vascular AA, differ in amyloid deposition patterns in the kidney.
Purpose of the Study:
- To investigate the existence of amyloid fibril strains in human AA amyloidosis.
- To compare the morphological and biochemical characteristics of common AA and vascular AA amyloid fibrils.
- To assess the seeding potential of different human amyloid fibril types in a murine model.
Main Methods:
- Electron microscopy was used to analyze fibril morphology.
- Hyperspectral microscopy with fluorescent amyloid binding ligands differentiated staining patterns.
- Human AA (common and vascular) and AL amyloid fibrils were used to seed amyloid formation in inflamed mice.
Main Results:
- Common and vascular AA amyloid fibrils exhibited distinct morphologies and differential fluorescent staining.
- Human amyloid seeds successfully induced amyloid deposition in mouse spleens.
- Amyloid deposits seeded by AA fibrils showed similar fluorescent signals, while those seeded by AL fibrils differed significantly.
Conclusions:
- The findings support the hypothesis of AA amyloid fibril strains.
- Amyloid fibril structure can vary based on the seeding material.
- This variability suggests distinct structural properties contributing to different disease manifestations.
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