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Anticoagulants for Treatment of Alzheimer's Disease
1Center for Plant Molecular Biology (ZMBP), University of Tübingen, Tübingen, Germany.
Insights
Direct oral anticoagulants may prevent Alzheimer's disease progression by inhibiting fibrin and amyloid-β clots. This approach targets early vascular dysfunction and cognitive decline in cerebral amyloid angiopathy.
Area of Science:
- Neuroscience
- Vascular Biology
- Pharmacology
Background:
- Alzheimer's disease involves brain degeneration, cerebrovascular issues, and hemostasis system changes.
- Amyloid-β protein and fibrin play key roles in triggering intra-brain vascular dysfunction and cognitive decline.
Purpose of the Study:
- To review a therapeutic approach for Alzheimer's disease focusing on direct oral anticoagulants (DOACs).
- To explore how DOACs counteract amyloid-β-induced pathological alterations in cerebral blood vessels, particularly in cerebral amyloid angiopathy.
Main Methods:
- Review of existing literature on Alzheimer's disease, cerebral amyloid angiopathy, and anticoagulant mechanisms.
- Analysis of the proposed mechanism of action for DOACs in preventing fibrin-Aβ clot formation and associated pathologies.
Main Results:
- DOACs inhibit thrombin, preventing fibrin formation and the accumulation of pro-inflammatory thrombin and fibrin.
- DOACs can prevent the deposition of resistant fibrin-Aβ clots in brain parenchyma and around cerebral blood vessels, mitigating decreased cerebral blood flow.
Conclusions:
- Anticoagulant treatment may reduce hypoperfusion, thereby mitigating neurodegenerative processes like Aβ accumulation, neuroinflammation, and neuron loss.
- Early or prophylactic treatment with anticoagulants could decrease vascular-driven progression of neurodegenerative and cognitive changes in Alzheimer's disease.
Abstract:
Alzheimer's disease (AD) is a multifactorial syndrome with a plethora of progressive, degenerative changes in the brain parenchyma, but also in the cerebrovascular and hemostatic system. A therapeutic approach for AD is reviewed, which is focused on the role of amyloid-β protein (Aβ) and fibrin in triggering intra-brain vascular dysfunction and connected, cognitive decline. It is proposed that direct oral anticoagulants (DOACs) counteract Aβ-induced pathological alterations in cerebral blood vessels early in AD, a condition, known as cerebral amyloid angiopathy (CAA). By inhibiting thrombin for fibrin formation, anticoagulants can prevent accumulations of proinflammatory thrombin and fibrin, and deposition of degradation-resistant, Aβ-containing fibrin clots. These fibrin-Aβ clots are found in brain parenchyma between neuron cells, and in and around cerebral blood vessels in areas of CAA, leading to decreased cerebral blood flow. Consequently, anticoagulant treatment could reduce hypoperfusion and restricted supply of brain tissue with oxygen and nutrients. Concomitantly, hypoperfusion-enhanced neurodegenerative processes, such as progressive Aβ accumulation via synthesis and reduced perivascular clearance, neuroinflammation, and synapse and neuron cell loss, could be mitigated. Given full cerebral perfusion and reduced Aβ- and fibrin-accumulating and inflammatory milieu, anticoagulants could be able to decrease vascular-driven progression in neurodegenerative and cognitive changes, present in AD, when treated early, therapeutically, or prophylactically.
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