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Published on: November 14, 2016
MMPs and ADAMs in neurological infectious diseases and multiple sclerosis
Lukas Muri1,2, David Leppert3, Denis Grandgirard1
1Neuroinfection Laboratory, Institute for Infectious Diseases, University of Bern, Friedbühlstrasse 51, 3001, Bern, Switzerland.
Abstract:
Metalloproteinases-such as matrix metalloproteinases (MMPs) and a disintegrin and metalloproteinases (ADAMs)-are involved in various diseases of the nervous system but also contribute to nervous system development, synaptic plasticity and neuroregeneration upon injury. MMPs and ADAMs proteolytically cleave many substrates including extracellular matrix components but also signaling molecules and receptors. During neuroinfectious disease with associated neuroinflammation, MMPs and ADAMs regulate blood-brain barrier breakdown, bacterial invasion, neutrophil infiltration and cytokine signaling. Specific and broad-spectrum inhibitors for MMPs and ADAMs have experimentally been shown to decrease neuroinflammation and brain damage in diseases with excessive neuroinflammation as a common denominator, such as pneumococcal meningitis and multiple sclerosis, thereby improving the disease outcome. Timing of metalloproteinase inhibition appears to be critical to effectively target the cascade of pathophysiological processes leading to brain damage without inhibiting the neuroregenerative effects of metalloproteinases. As the critical role of metalloproteinases in neuronal repair mechanisms and regeneration was only lately recognized, the original idea of chronic MMP inhibition needs to be conceptually revised. Recently accumulated research urges for a second chance of metalloproteinase inhibitors, which-when correctly applied and dosed-harbor the potential to improve the outcome of different neuroinflammatory diseases.
Insights
Metalloproteinase inhibitors targeting matrix metalloproteinases (MMPs) and ADAMs show promise for neuroinflammatory diseases. Careful timing of inhibition is key to reduce brain damage while preserving neuroregeneration.
Area of Science:
- Neuroscience
- Biochemistry
- Pathology
Background:
- Metalloproteinases, including matrix metalloproteinases (MMPs) and ADAMs, play dual roles in the nervous system, influencing development, plasticity, and repair.
- These enzymes are implicated in neuroinflammatory diseases by regulating blood-brain barrier integrity, pathogen invasion, and immune cell infiltration.
Purpose of the Study:
- To review the role of MMPs and ADAMs in neuroinflammation and neuroregeneration.
- To evaluate the therapeutic potential of metalloproteinase inhibitors in neuroinflammatory conditions.
Main Methods:
- Literature review of studies investigating metalloproteinases in neurological diseases.
- Analysis of experimental data on the efficacy of metalloproteinase inhibitors in preclinical models.
Main Results:
- MMPs and ADAMs contribute to neuroinflammation and brain damage in conditions like meningitis and multiple sclerosis.
- Inhibitors of MMPs and ADAMs have demonstrated efficacy in reducing neuroinflammation and improving outcomes in experimental models.
- The neuroregenerative functions of metalloproteinases necessitate a revised approach to inhibition timing.
Conclusions:
- Metalloproteinase inhibitors hold potential for treating neuroinflammatory diseases, but their application requires precise timing.
- A revised strategy focusing on optimal dosing and administration windows could harness the benefits of metalloproteinase inhibition for neurological repair.
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