Marcos R. Costa
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Probing the role of PTK2B-STAT3 signaling on neuronal vulnerability in AD
Open Date: 2022-12-01
Close Date: 2024-11-01
Grant: Close
Probing the role of PTK2B signaling on Aβ1-42-mediated neuronal hyperexcitability
Open Date: 2022-01-01
Close Date: 2024-12-01
Grant: Close
Microglia in Alzheimer's Disease
Open Date: 2020-10-01
Close Date: 2022-12-01
Grant: Close
Probing Alzheimer’s disease using iPSCs and brain organoids
Open Date: 2018-12-01
Close Date: 2022-08-01
Articles (10)
Amyloid-Beta Peptides Trigger Premature Functional and Gene Expression Alterations in Human-Induced Neurons
Alzheimer’s disease (AD) is the most prevalent cause of dementia in the elderly, characterized by the presence of amyloid-beta (Aβ) plaques, neurofibrillary tangles, neuroinflammation, synapse loss and neurodegeneration in the brain. The amyloid cascade hypothesis postulates that deposition of Aβ peptides is the causative agent of AD pathology, but we still lack comprehensive understanding of the molecular mechanisms connecting Aβ peptides to neuronal dysfunctions in AD. In this work, we investigate the early effects of Aβ peptide accumulation on the functional properties and gene expression profiles of human-induced neurons (hiNs). We show that hiNs acutely exposed to low concentrations of both cell-secreted Aβ peptides or synthetic Aβ1–42 exhibit alterations in the frequency of calcium transients suggestive of increased neuronal excitability. Using single-cell RNA sequencing, we also show that cell-secreted Aβ up-regulates the expression of several synapse-related genes and down-regulates the expression of genes associated with metabolic stress mainly in glutamatergic neurons and, to a lesser degree, in GABAergic neurons and astrocytes. These neuronal alterations correlate with activation of the SEMA5, EPHA and NECTIN signaling pathways, which are important regulators of synaptic plasticity. Altogether, our findings indicate that slight elevations in Aβ concentrations are sufficient to elicit transcriptional changes in human neurons, which can contribute to early alterations in neural network activity.
Year:
2023
Collaborators (20)
Matthias Schmid
Professor / Director
University of Bonn
Per Selnes
University of Oslo
Eloy Rodriguez-Rodríguez
Instituto de Investigación Marqués de Valdecilla
Bernard Fongang
University of Texas Health Science Center at San Antonio
Anbupalam Thalamuthu
University of New South Wales
John Bertelson
Associate Professor
Texas Tech University Health Sciences Center
Keeley Brookes
Senior Lecturer
University of Nottingham
Isabella Heuser
Senior Professor
Charité - Universitätsmedizin Berlin
Elizabeth Fisher
University College London
Pierre Pericard
Co-head
Université de Lille
Julien Chapuis
Université de Lille
Mohsen Ghanbari
Associate Professor and Principal Investigator
Erasmus MC
Henrik Wilms
Texas Tech University Health Sciences Center
Chloé Sarnowski
Assistant Professor
The University of Texas Health Science Center at Houston
Seth Love
University of Bristol
Costas Anastasiou
Assistant Professor
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Devrim Kilinc
Institut Pasteur de Lille
Pilar Gómez-Garre
Instituto de Biomedicina de Sevilla
Anita DeStefano
Professor
Boston University
Jose Luis Royo
University of Malaga

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