Claudio Cuello
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Recent Grants
Grant: Open
Microdose lithium as a treatment for brain tauopathy
Open Date: 2023-04-01
Close Date: 2028-03-01
Grant: Close
Phase Two of the Canadian Consortium on Neurodegeneration in Aging
Open Date: 2019-04-01
Close Date: 2024-03-31
Grant: Close
The Role of Inflammation and NGF Dysfunction in the Evolution of Alzheimer Disease Pathology in Down Syndrome-Revision
Open Date: 2018-04-01
Close Date: 2023-03-31
Grant: Close
Investigating the role of amyloid beta, oxidative stress, and mitochondrial dysfunction in pre-symptomatic Alzheimer's disease
Open Date: 2017-09-01
Close Date: 2020-08-31
Grant: Close
Development of a highly sensitive ELISA for the detection of proNGF, a proposed biomarker of incipient Alzheimer's disease
Open Date: 2017-06-01
Close Date: 2022-06-01
Articles (19)
Early loss of locus coeruleus innervation promotes cognitive and neuropathological changes before amyloid plaque deposition in a transgenic rat model of Alzheimer's disease
Aims The locus coeruleus (LC) is the main source of noradrenaline (NA) in the mammalian brain and has been found to degenerate during the initial stages of Alzheimer's disease (AD). Recent studies indicate that at late stages of the amyloid pathology, LC‐pathological alterations accelerate AD‐like pathology progression by interfering with the neuromodulatory and anti‐inflammatory properties of NA. However, the impact of LC degeneration at the earliest stages of amyloidosis on the AD‐like pathology is not well understood. Methods The LC was lesioned in wild‐type and McGill‐R‐Thy1‐APP transgenic (APP tg) rats by administering N ‐(2‐chloroethyl)‐ N ‐ethyl‐bromo‐benzylamine before amyloid plaque deposition. Cognitive deficits and AD‐like neuropathological changes were measured after the LC lesion. Results Four months post‐treatment, rats displayed a decrease in brain noradrenergic innervation. The LC lesion in APP tg‐treated rats enhanced cognitive deficits and decreased hippocampal cholinergic innervation and neurotrophin expression. In addition, the APP tg‐treated rats displayed an increased microglial and astroglial cell number in close vicinity to hippocampal amyloid‐beta burdened neurons. The recruited microglia showed cellular alterations indicative of an intermediate activation state. Conclusions Our results indicate that early LC demise aggravates the early neuroinflammatory process, cognitive impairments, cholinergic deficits and neurotrophin deregulation at the earliest stages of the human‐like brain amyloidosis.
Year:
2022
Collaborators (7)
Liudmila Sosulina
Leibniz Institute for Neurobiology
A. Claudio Cuello
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Julio Martinez-Trujillo
Professor/Scientist
University of Western Ontario
Lídia Vaqué-Alcázar
University of Barcelona
Eduardo Fernandez-Megia
Universidade de Santiago de Compostela
Olaf Sporns
Indiana State University
Lyle Muller
Assistant Professor
Western University

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