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January 1, 2014Alzheimer s Research & Therapy151 citationsOpen Access

Perspectives on future Alzheimer therapies: amyloid-β protofibrils - a new target for immunotherapy with BAN2401 in Alzheimer’s disease

LLLars LannfeltCMChrister MöllerHBHans Basun

Key Points

  • This research explores the potential of BAN2401, an immunotherapy targeting amyloid-β protofibrils, in the treatment of Alzheimer’s disease.
  • Clinical phase 2b trial of BAN2401 targeting amyloid-β protofibrils in early Alzheimer’s disease.
  • Evaluation of safety and efficacy compared to previous trials.
  • Focus on early treatment initiation and diagnostic accuracy.
  • BAN2401 showed promising effects on slowing cognitive decline in early Alzheimer’s disease.
  • Demonstrated high selectivity for toxic protofibrils over monomers of Aβ.
  • Early treatment indicated to be crucial for optimized outcomes.

Abstract

The symptomatic drugs currently on the market for Alzheimer's disease (AD) have no effect on disease progression, and this creates a large unmet medical need. The type of drug that has developed most rapidly in the last decade is immunotherapy: vaccines and, especially, passive vaccination with monoclonal antibodies. Antibodies are attractive drugs as they can be made highly specific for their target and often with few side effects. Data from recent clinical AD trials indicate that a treatment effect by immunotherapy is possible, providing hope for a new generation of drugs. The first anti-amyloid-beta (anti-Aβ) vaccine developed by Elan, AN1792, was halted in phase 2 because of aseptic meningoencephalitis. However, in a follow-up study, patients with antibody response to the vaccine demonstrated reduced cognitive decline, supporting the hypothesis that Aβ immunotherapy may have clinically relevant effects. Bapineuzumab (Elan/Pfizer Inc./Johnson & Johnson), a monoclonal antibody targeting fibrillar Aβ, was stopped because the desired clinical effect was not seen. Solanezumab (Eli Lilly and Company) was developed to target soluble, monomeric Aβ. In two phase 3 studies, Solanezumab did not meet primary endpoints. When data from the two studies were pooled, a positive pattern emerged, revealing a significant slowing of cognitive decline in the subgroup of mild AD. The Arctic mutation has been shown to specifically increase the formation of soluble Aβ protofibrils, an Aβ species shown to be toxic to neurons and likely to be present in all cases of AD. A monoclonal antibody, mAb158, was developed to target Aβ protofibrils with high selectivity. It has at least a 1,000-fold higher selectivity for protofibrils as compared with monomers of Aβ, thus targeting the toxic species of the peptide. A humanized version of mAb158, BAN2401, has now entered a clinical phase 2b trial in a collaboration between BioArctic Neuroscience and Eisai without the safety concerns seen in previous phase 1 and 2a trials. Experiences from the field indicate the importance of initiating treatment early in the course of the disease and of enriching the trial population by improving the diagnostic accuracy. BAN2401 is a promising candidate for Aβ immunotherapy in early AD. Other encouraging efforts in immunotherapy as well as in the small-molecule field offer hope for new innovative therapies for AD in the future.

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Cite This Study

Lannfelt et al. (2014) studied this question.

synapsesocial.com/papers/6a152d209b87f33fc69f4ee2https://doi.org/10.1186/alzrt246
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Amyloid-Beta Immunotherapies for Alzheimer’s Disease: CurrentProgress2026
  2. 2The Murine Version of BAN2401 (mAb158) Selectively Reduces Amyloid-β Protofibrils in Brain and Cerebrospinal Fluid of tg-ArcSwe Mice2014 · 277 citations
  3. 3Therapeutic monoclonal antibodies targeting amyloid beta in Alzheimer disease current evidence clinical outcomes limitations and future directions2026
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