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November 21, 2014Journal of Alzheimer s Disease277 citations

The Murine Version of BAN2401 (mAb158) Selectively Reduces Amyloid-β Protofibrils in Brain and Cerebrospinal Fluid of tg-ArcSwe Mice

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STStina TuckerCMChrister MöllerKTKarin Tegerstedt

Key Points

  • To evaluate the effectiveness of mAb158 in reducing amyloid-β protofibrils in tg-ArcSwe mice, a model for Alzheimer's disease.
  • Evaluated binding preference of mAb158 for Aβ protofibrils and monomers.
  • Measured protofibril levels in brain and cerebrospinal fluid (CSF) after treatment with mAb158.
  • Analyzed treatment impact on soluble Aβ aggregates using immunoprecipitation methods.
  • mAb158 reduced brain protofibril levels by 42% after treatment.
  • A 53% reduction in protofibrils/oligomers was observed in CSF after long-term treatment.
  • No change detected in native monomeric Aβ42 levels in brain extracts post-treatment.

Abstract

Amyloid-β (Aβ) immunotherapy for Alzheimer's disease (AD) has good preclinical support from transgenic mouse models and clinical data suggesting that a long-term treatment effect is possible. Soluble Aβ protofibrils have been shown to exhibit neurotoxicity in vitro and in vivo, and constitute an attractive target for immunotherapy. Here, we demonstrate that the humanized antibody BAN2401 and its murine version mAb158 exhibit a strong binding preference for Aβ protofibrils over Aβ monomers. Further, we confirm the presence of the target by showing that both antibodies efficiently immunoprecipitate soluble Aβ aggregates in human AD brain extracts. mAb158 reached the brain and reduced the brain protofibril levels by 42% in an exposure-dependent manner both after long-term and short-term treatment in tg-ArcSwe mice. Notably, a 53% reduction of protofibrils/oligomers in cerebrospinal fluid (CSF) that correlated with reduced brain protofibril levels was observed after long-term treatment, suggesting that CSF protofibrils/oligomers could be used as a potential biomarker. No change in native monomeric Aβ42 could be observed in brain TBS extracts after mAb158-treatment in tg-ArcSwe mice. By confirming the specific ability of mAb158 to selectively bind and reduce soluble Aβ protofibrils, with minimal binding to Aβ monomers, we provide further support in favor of its position as an attractive new candidate for AD immunotherapy. BAN2401 has undergone full phase 1 development, and available data indicate a favorable safety profile in AD patients.

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Cite This Study

Tucker et al. (2014) studied this question.

synapsesocial.com/papers/69d83cf38cb8f39931ae296bhttps://doi.org/10.3233/jad-140741
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Also Consider

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

  1. 1Perspectives on future Alzheimer therapies: amyloid-β protofibrils - a new target for immunotherapy with BAN2401 in Alzheimer’s disease2014 · 151 citations
  2. 2Disease modifying effects of the amyloid-beta protofibril-selective antibody mAb158 in aged Tg2576 transgenic mice2024 · 2 citations
  3. 3Brain interstitial fluid pharmacokinetics and therapeutic effect of a BBB penetrating amyloid beta antibody measured by microdialysis2026
  4. 4Relationship Between Therapeutic Activity and Preferential Targeting of Toxic Soluble Aggregates by Amyloid-Beta-Directed Antibodies2024 · 1 citations
  5. 5Relationship between efficacy and preferential targeting of soluble Aβ aggregates2025