Discovery and Functional Characterization of hPT3, a Humanized Anti-Phospho Tau Selective Monoclonal Antibody.


Journal

Journal of Alzheimer's disease : JAD
ISSN: 1875-8908
Titre abrégé: J Alzheimers Dis
Pays: Netherlands
ID NLM: 9814863

Informations de publication

Date de publication:
2020
Historique:
pubmed: 8 9 2020
medline: 11 9 2021
entrez: 7 9 2020
Statut: ppublish

Résumé

As a consequence of the discovery of an extracellular component responsible for the progression of tau pathology, tau immunotherapy is being extensively explored in both preclinical and clinical studies as a disease modifying strategy for the treatment of Alzheimer's disease. Describe the characteristics of the anti-phospho (T212/T217) tau selective antibody PT3 and its humanized variant hPT3. By performing different immunization campaigns, a large collection of antibodies has been generated and prioritized. In depth, in vitro characterization using surface plasmon resonance, phospho-epitope mapping, and X-ray crystallography experiments were performed. Further characterization involved immunohistochemical staining on mouse- and human postmortem tissue and neutralization of tau seeding by immunodepletion assays. Various in vitro experiments demonstrated a high intrinsic affinity for PT3 and hPT3 for AD brain-derived paired helical filaments but also to non-aggregated phospho (T212/T217) tau. Further functional analyses in cellular and in vivo models of tau seeding demonstrated almost complete depletion of tau seeds in an AD brain homogenate. Ongoing trials will provide the clinical evaluation of the tau spreading hypothesis in Alzheimer's disease.

Sections du résumé

BACKGROUND
As a consequence of the discovery of an extracellular component responsible for the progression of tau pathology, tau immunotherapy is being extensively explored in both preclinical and clinical studies as a disease modifying strategy for the treatment of Alzheimer's disease.
OBJECTIVE
Describe the characteristics of the anti-phospho (T212/T217) tau selective antibody PT3 and its humanized variant hPT3.
METHODS
By performing different immunization campaigns, a large collection of antibodies has been generated and prioritized. In depth, in vitro characterization using surface plasmon resonance, phospho-epitope mapping, and X-ray crystallography experiments were performed. Further characterization involved immunohistochemical staining on mouse- and human postmortem tissue and neutralization of tau seeding by immunodepletion assays.
RESULTS AND CONCLUSION
Various in vitro experiments demonstrated a high intrinsic affinity for PT3 and hPT3 for AD brain-derived paired helical filaments but also to non-aggregated phospho (T212/T217) tau. Further functional analyses in cellular and in vivo models of tau seeding demonstrated almost complete depletion of tau seeds in an AD brain homogenate. Ongoing trials will provide the clinical evaluation of the tau spreading hypothesis in Alzheimer's disease.

Identifiants

pubmed: 32894244
pii: JAD200544
doi: 10.3233/JAD-200544
doi:

Substances chimiques

Antibodies, Monoclonal 0
Antibodies, Monoclonal, Humanized 0
Mapt protein, mouse 0
tau Proteins 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1397-1416

Subventions

Organisme : Medical Research Council
ID : G0400074
Pays : United Kingdom
Organisme : Department of Health
Pays : United Kingdom

Auteurs

Kristof Van Kolen (K)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Thomas J Malia (TJ)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Clara Theunis (C)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Rupesh Nanjunda (R)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Alexey Teplyakov (A)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Robin Ernst (R)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Sheng-Jiun Wu (SJ)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Jinquan Luo (J)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Marianne Borgers (M)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Marc Vandermeeren (M)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Astrid Bottelbergs (A)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Cindy Wintmolders (C)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Eilyn Lacy (E)

Biologics Research, Janssen Research and Development, Spring House, PA, USA.

Hervé Maurin (H)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Peter Larsen (P)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Roland Willems (R)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

Tom Van De Casteele (T)

Translational Medicine and Early Development Statistics Janssen Research & Development, Beerse, Belgium.

Gallen Triana-Baltzer (G)

Neuroscience biomarkers, Janssen Research & Development, La Jolla, CA, USA.

Randy Slemmon (R)

Neuroscience biomarkers, Janssen Research & Development, La Jolla, CA, USA.

Wendy Galpern (W)

Neuroscience Experimental medicine, Janssen Research & Development, Titusville, NJ, USA.

John Q Trojanowski (JQ)

University of Pennsylvania Perelman School of Medicine, PA, USA.

Hong Sun (H)

Neuroscience Clinical Development, Janssen Research & Development, Titusville, NJ, USA.

Marc H Mercken (MH)

Neuroscience Department, Janssen Research and Development, Beerse, Belgium.

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Classifications MeSH