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MMP-14 overexpression correlates with the neurodegenerative process in familial amyloidotic polyneuropathy
Diana Martins1, João Moreira1,2, Nádia Pereira Gonçalves1,2
1Instituto de Inovação e Investigação em Saúde (I3S), Universidade do Porto, R. Alfredo Allen 208, 4200-135 Porto, Portugal.
Abstract:
Levels of matrix metalloproteases (MMPs) can be differentially regulated in response to injury or neurological diseases. For instance, it is known that selective and short-term inhibition of MMP-14, a membrane-type 1 MMP, accelerates axon regeneration. Because axon growth and regeneration is impaired in familial amyloidotic polyneuropathy (FAP), a neurodegenerative disorder characterized by misfolding and deposition of mutant transthyretin (TTR) in the peripheral nervous system (PNS), we presently investigated the expression levels and the potential role for MMP-14 in this condition. By using cell culture studies, a mouse model of disease and human clinical samples, we observed that MMP-14: (i) is overexpressed in FAP nerves, correlating with TTR deposition; (ii) is upregulated in sciatic nerves from a preclinical transgenic mouse model, increasing with TTR deposition; (iii) levels in the PNS and plasma are rescued upon treatment of mice with anakinra or TTR siRNA, drugs acting over the IL-1 signaling pathway or TTR liver synthesis, respectively; (iv) increases in Schwann cells upon incubation with amyloid-like aggregates; and, finally, (v) is increased in plasma of FAP patients, correlating with disease progression. These results highlight the relevance of MMP-14 in the pathophysiology of FAP, suggesting not only a potential role for this molecule as a novel biomarker for therapy follow up, but also as a new potential therapeutic target.
Insights
Matrix metalloprotease-14 (MMP-14) is elevated in familial amyloidotic polyneuropathy (FAP), a nerve-damaging disease. Targeting MMP-14 may offer a new therapeutic strategy for FAP.
Area of Science:
- Neuroscience
- Biochemistry
- Pathology
Background:
- Matrix metalloproteases (MMPs) play roles in neurological conditions.
- MMP-14 inhibition can promote axon regeneration.
- Familial amyloidotic polyneuropathy (FAP) involves peripheral nervous system (PNS) damage due to mutant transthyretin (TTR).
Purpose of the Study:
- To investigate MMP-14 expression and function in FAP.
- To determine if MMP-14 is a potential biomarker or therapeutic target in FAP.
Main Methods:
- Cell culture studies with amyloid-like aggregates.
- Analysis of sciatic nerves from a preclinical mouse model of FAP.
- Examination of human clinical samples (nerve and plasma).
- Assessment of MMP-14 levels following treatment with anakinra or TTR siRNA.
Main Results:
- MMP-14 is overexpressed in FAP nerves and correlates with TTR deposition.
- MMP-14 levels increase in a mouse model of FAP with disease progression.
- Elevated MMP-14 in the PNS and plasma of mice is reduced by FAP-targeting treatments.
- MMP-14 increases in Schwann cells exposed to amyloid aggregates.
- Plasma MMP-14 levels are elevated in FAP patients and correlate with disease severity.
Conclusions:
- MMP-14 is significantly involved in FAP pathophysiology.
- MMP-14 shows promise as a biomarker for monitoring FAP treatment.
- MMP-14 represents a potential therapeutic target for FAP.