Phospho-tau 217, phospho-tau 231 and phospho-tau 181 in cerebrospinal fluid and plasma are promising biomarkers for the diagnosis of Alzheimer's disease. All these p-tau proteins are detected in neurofibrillary tangles in brains obtained post-mortem from Alzheimer's disease patients. However, increases in p-tau levels in cerebrospinal fluid and plasma during the preclinical stage of Alzheimer's disease correlate with amyloid-β burden and precede neurofibrillary tangles in brains, suggesting that these p-tau proteins are indicative of amyloid-β-mediated brain pathology. In addition, phospho-tau 217 has greater sensitivity than phospho-tau 181, though it is unclear whether each of these p-tau variants contributes to the same or a different type of neuropathology prior to neurofibrillary tangle formation. In this study, we evaluated the intracerebral localization of p-tau in knock-in mice with amyloid-β plaques without neurofibrillary tangle pathology ( ), in knock-in mice with increased amyloid-β levels without amyloid-β plaques ( ) and in wild-type mice. Immunohistochemical analysis showed that phospho-tau 217 and phospho-tau 231 were detected only in mice as punctate structures around amyloid-β plaques, overlapping with the tau pathology marker, AT8 epitope phospho-tau 202/205/208. Moreover, phospho-tau 217 and phospho-tau 202/205/208 colocalized with the postsynaptic marker PSD95 and with a major tau kinase active, GSK3β. In contrast and similar to total tau, phospho-tau 181 signals were readily detectable as fibre structures in wild-type and mice and colocalized with an axonal marker neurofilament light chain. In mice, these phospho-tau 181-positive structures were disrupted around amyloid-β plaques and only partially overlapped with phospho-tau 217. These results indicate that phospho-tau 217, phospho-tau 231 and a part of phospho-tau 181 signals are markers of postsynaptic pathology around amyloid-β plaques, with phospho-tau 181 also being a marker of axonal abnormality caused by amyloid-β burden in brains.
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http://dx.doi.org/10.1093/braincomms/fcac286 | DOI Listing |
J Prev Alzheimers Dis
November 2024
Wendy R. Galpern, MD, PhD, Janssen Research and Development, LLC, 1125 Trenton-Harbourton Road, Titusville, NJ 08560, Email:
Background: JNJ-63733657 (posdinemab) is a humanized IgG1/kappa monoclonal anti-phospho tau antibody that binds with high affinity to phosphorylated amino acid 217 (pT217) in the proline-rich domain. The parent molecule, PT3, was raised against Alzheimer's disease brain purified paired helical filament, and preclinical studies with the humanized version, JNJ-63733657, have demonstrated reductions in tau seeding. The results of the first-in-human clinical trial of JNJ-63733657 and a separate single ascending dose study in Japanese participants are presented.
View Article and Find Full Text PDFEBioMedicine
November 2024
Translational Neuroimaging Laboratory, McGill Research Centre for Studies in Aging, Montreal, Quebec, QC H4H 1R3, Canada; Department of Neurology and Neurosurgery, Faculty of Medicine, McGill University, Montreal, Quebec, QC H3A 1A1, Canada. Electronic address:
EBioMedicine
November 2024
The Florey Institute of Neuroscience and Mental Health, The University of Melbourne, Parkville, Victoria, Australia; Department of Molecular Imaging & Therapy, Austin Health, Melbourne, Victoria, Australia; Florey Department of Neuroscience and Mental Health, The University of Melbourne, Melbourne, Victoria, Australia. Electronic address:
J Prev Alzheimers Dis
October 2024
Zhongping John Lin, Frontage Laboratories Inc., 700 Pennsylvania Drive, Exton, Pennsylvania 19341, USA, Email:
Background: Both blood (plasma and serum) and CSF tau phosphorylated at Threonine 217 (pTau217) have been shown to be able to discriminate early to mild Alzheimer's disease (AD) from non-AD neurodegenerative disorders and healthy controls with high sensitivity and specificity.
Objectives: We report the full validation of the ALZpath ultra-sensitive pTau217 research-use only (RUO) assays for human EDTA plasma, serum, and CSF using the Quanterix Simoa HD-X platform, in support of clinical trials and early diagnosis of Alzheimer's disease.
Methods: The ALZpath pTau217 Simoa Advantage v2 kit from ALZpath/Quanterix was used for method development and validation of pTau217 in human plasma, serum, and CSF.
Alzheimers Res Ther
November 2023
Departments of Neuroscience and Neurology, Yale School of Medicine, New Haven, CT, USA.
Background: Progression of Alzheimer's disease leads to synapse loss, neural network dysfunction and cognitive failure. Accumulation of protein aggregates and brain immune activation have triggering roles in synaptic failure but the neuronal mechanisms underlying synapse loss are unclear. On the neuronal surface, cellular prion protein (PrP) is known to be a high-affinity binding site for Amyloid-β oligomers (Aβo).
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