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Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport

Therapeutic approaches to fight Alzheimer's disease include anti-Amyloidβ (Aβ) antibodies and secretase inhibitors. However, the blood-brain barrier (BBB) limits the brain exposure of biologics and the chemical space for small molecules to be BBB permeable. The Brain Shuttle (BS) technology is...

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Autores principales: Ruderisch, Nadine, Schlatter, Daniel, Kuglstatter, Andreas, Guba, Wolfgang, Huber, Sylwia, Cusulin, Carlo, Benz, Jörg, Rufer, Arne Christian, Hoernschemeyer, Joerg, Schweitzer, Christophe, Bülau, Tina, Gärtner, Achim, Hoffmann, Eike, Niewoehner, Jens, Patsch, Christoph, Baumann, Karlheinz, Loetscher, Hansruedi, Kitas, Eric, Freskgård, Per-Ola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5652008/
https://www.ncbi.nlm.nih.gov/pubmed/28923680
http://dx.doi.org/10.1016/j.ebiom.2017.09.004
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author Ruderisch, Nadine
Schlatter, Daniel
Kuglstatter, Andreas
Guba, Wolfgang
Huber, Sylwia
Cusulin, Carlo
Benz, Jörg
Rufer, Arne Christian
Hoernschemeyer, Joerg
Schweitzer, Christophe
Bülau, Tina
Gärtner, Achim
Hoffmann, Eike
Niewoehner, Jens
Patsch, Christoph
Baumann, Karlheinz
Loetscher, Hansruedi
Kitas, Eric
Freskgård, Per-Ola
author_facet Ruderisch, Nadine
Schlatter, Daniel
Kuglstatter, Andreas
Guba, Wolfgang
Huber, Sylwia
Cusulin, Carlo
Benz, Jörg
Rufer, Arne Christian
Hoernschemeyer, Joerg
Schweitzer, Christophe
Bülau, Tina
Gärtner, Achim
Hoffmann, Eike
Niewoehner, Jens
Patsch, Christoph
Baumann, Karlheinz
Loetscher, Hansruedi
Kitas, Eric
Freskgård, Per-Ola
author_sort Ruderisch, Nadine
collection PubMed
description Therapeutic approaches to fight Alzheimer's disease include anti-Amyloidβ (Aβ) antibodies and secretase inhibitors. However, the blood-brain barrier (BBB) limits the brain exposure of biologics and the chemical space for small molecules to be BBB permeable. The Brain Shuttle (BS) technology is capable of shuttling large molecules into the brain. This allows for new types of therapeutic modalities engineered for optimal efficacy on the molecular target in the brain independent of brain penetrating properties. To this end, we designed BACE1 peptide inhibitors with varying lipid modifications with single-digit picomolar cellular potency. Secondly, we generated active-exosite peptides with structurally confirmed dual binding mode and improved potency. When fused to the BS via sortase coupling, these BACE1 inhibitors significantly reduced brain Aβ levels in mice after intravenous administration. In plasma, both BS and non-BS BACE1 inhibitor peptides induced a significant time- and dose-dependent decrease of Aβ. Our results demonstrate that the BS is essential for BACE1 peptide inhibitors to be efficacious in the brain and active-exosite design of BACE1 peptide inhibitors together with lipid modification may be of therapeutic relevance.
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spelling pubmed-56520082017-10-25 Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport Ruderisch, Nadine Schlatter, Daniel Kuglstatter, Andreas Guba, Wolfgang Huber, Sylwia Cusulin, Carlo Benz, Jörg Rufer, Arne Christian Hoernschemeyer, Joerg Schweitzer, Christophe Bülau, Tina Gärtner, Achim Hoffmann, Eike Niewoehner, Jens Patsch, Christoph Baumann, Karlheinz Loetscher, Hansruedi Kitas, Eric Freskgård, Per-Ola EBioMedicine Research Paper Therapeutic approaches to fight Alzheimer's disease include anti-Amyloidβ (Aβ) antibodies and secretase inhibitors. However, the blood-brain barrier (BBB) limits the brain exposure of biologics and the chemical space for small molecules to be BBB permeable. The Brain Shuttle (BS) technology is capable of shuttling large molecules into the brain. This allows for new types of therapeutic modalities engineered for optimal efficacy on the molecular target in the brain independent of brain penetrating properties. To this end, we designed BACE1 peptide inhibitors with varying lipid modifications with single-digit picomolar cellular potency. Secondly, we generated active-exosite peptides with structurally confirmed dual binding mode and improved potency. When fused to the BS via sortase coupling, these BACE1 inhibitors significantly reduced brain Aβ levels in mice after intravenous administration. In plasma, both BS and non-BS BACE1 inhibitor peptides induced a significant time- and dose-dependent decrease of Aβ. Our results demonstrate that the BS is essential for BACE1 peptide inhibitors to be efficacious in the brain and active-exosite design of BACE1 peptide inhibitors together with lipid modification may be of therapeutic relevance. Elsevier 2017-09-07 /pmc/articles/PMC5652008/ /pubmed/28923680 http://dx.doi.org/10.1016/j.ebiom.2017.09.004 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Ruderisch, Nadine
Schlatter, Daniel
Kuglstatter, Andreas
Guba, Wolfgang
Huber, Sylwia
Cusulin, Carlo
Benz, Jörg
Rufer, Arne Christian
Hoernschemeyer, Joerg
Schweitzer, Christophe
Bülau, Tina
Gärtner, Achim
Hoffmann, Eike
Niewoehner, Jens
Patsch, Christoph
Baumann, Karlheinz
Loetscher, Hansruedi
Kitas, Eric
Freskgård, Per-Ola
Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport
title Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport
title_full Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport
title_fullStr Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport
title_full_unstemmed Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport
title_short Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport
title_sort potent and selective bace-1 peptide inhibitors lower brain aβ levels mediated by brain shuttle transport
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5652008/
https://www.ncbi.nlm.nih.gov/pubmed/28923680
http://dx.doi.org/10.1016/j.ebiom.2017.09.004
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