ReviewJournal of Alzheimer's disease : JAD2024
Approaches for Increasing Cerebral Efflux of Amyloid-β in Experimental Systems.
Review in Journal of Alzheimer's disease : JAD, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- The Clearance-Centered Bottleneck in Alzheimer's Disease: From Coupled Glymphatic-Lymphatic Circuits to Therapeutic Opportunities.Molecular neurobiology · 2026Review
- Choroid plexus remodeling linked to impaired CSF-mediated clearance and Alzheimer's disease progression.Alzheimer's & dementia : the journal of the Alzheimer's Association · 2026Article
- Expansive spatial pattern of Aβ deposition in patients with cerebral amyloid angiopathy: A three-dimensional surface-to-depth analysis.Science advances · 2026Article
- The relationship between choroid plexus volume, DTI-ALPS index, kidney function, and amyloid pathology in alzheimer's disease.Neuroradiology · 2025Article
- DTI-ALPS index-assessed glymphatic dysfunction mediates Alzheimer's cognitive decline via amyloid-β-dependent pathways: multimodal PET/MRI study.European journal of nuclear medicine and molecular imaging · 2025Article
- Lipidopathy disrupts peripheral and central amyloid clearance in Alzheimer's disease: Where are our knowledge.IBRO neuroscience reports · 2025Review
- Targeting Soluble Amyloid Oligomers in Alzheimer's Disease: A Hypothetical Model Study Comparing Intrathecal Pseudodelivery of mAbs Against Intravenous Administration.Diseases (Basel, Switzerland) · 2025Article
- A case of severe ARIA with multiple infarctions and extensive microbleeds following lecanemab administration.Psychogeriatrics : the official journal of the Japanese Psychogeriatric Society · 2025Article
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Authors and funding
1 author.
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Abstract
Amyloid protein-β (Aβ) concentrations are increased in the brain in both early onset and late onset Alzheimer's disease (AD). In early onset AD, cerebral Aβ production is increased and its clearance is decreased, while increased Aβ burden in late onset AD is due to impaired clearance. Aβ has been the focus of AD therapeutics since development of the amyloid hypothesis, but efforts to slow AD progression by lowering brain Aβ failed until phase 3 trials with the monoclonal antibodies lecanemab and donanemab. In addition to promoting phagocytic clearance of Aβ, antibodies lower cerebral Aβ by efflux of Aβ-antibody complexes across the capillary endothelia, dissolving Aβ aggregates, and a "peripheral sink" mechanism. Although the blood-brain barrier is the main route by which soluble Aβ leaves the brain (facilitated by low-density lipoprotein receptor-related protein-1 and ATP-binding cassette sub-family B member 1), Aβ can also be removed via the blood-cerebrospinal fluid barrier, glymphatic drainage, and intramural periarterial drainage. This review discusses experimental approaches to increase cerebral Aβ efflux via these mechanisms, clinical applications of these approaches, and findings in clinical trials with these approaches in patients with AD or mild cognitive impairment. Based on negative findings in clinical trials with previous approaches targeting monomeric Aβ, increasing the cerebral efflux of soluble Aβ is unlikely to slow AD progression if used as monotherapy. But if used as an adjunct to treatment with lecanemab or donanemab, this approach might allow greater slowing of AD progression than treatment with either antibody alone.
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