Pathways underlying selective neuronal vulnerability in Alzheimer's disease: contrasting the vulnerable locus coeruleus to the resilient substantia nigra (2025)
- Authors:
- USP affiliated authors: SUEMOTO, CLAUDIA KIMIE - FM ; GRINBERG, LEA TENENHOLZ - FM
- Unidade: FM
- DOI: 10.1002/alz.70087
- Subjects: DOENÇA DE ALZHEIMER; ADRENALINA; HORMÔNIOS
- Agências de fomento:
- Language: Inglês
- Imprenta:
- Source:
- Título: Alzheimers & dementia
- ISSN: 1552-5260
- Volume/Número/Paginação/Ano: v. 21, n. 3, article ID e70087, 16p, 2025
- Status:
- Artigo aberto em periódico híbrido (Hybrid Open Access)
- Versão do Documento:
- Versão publicada (Published version)
- Acessar versão aberta:
-
ABNT
EHRENBERG, Alexander J et al. Pathways underlying selective neuronal vulnerability in Alzheimer's disease: contrasting the vulnerable locus coeruleus to the resilient substantia nigra. Alzheimers & dementia, v. 21, n. 3, 2025Tradução . . Disponível em: https://observatorio.fm.usp.br/handle/OPI/84789. Acesso em: 31 mar. 2026. -
APA
Ehrenberg, A. J., Sant, C., Pereira, F. L., Li, S. H., Buxton, J., Langlois, S., et al. (2025). Pathways underlying selective neuronal vulnerability in Alzheimer's disease: contrasting the vulnerable locus coeruleus to the resilient substantia nigra. Alzheimers & dementia, 21( 3). doi:10.1002/alz.70087 -
NLM
Ehrenberg AJ, Sant C, Pereira FL, Li SH, Buxton J, Langlois S, Trinidad M, Oh I, Suemoto CK, Grinberg LT. Pathways underlying selective neuronal vulnerability in Alzheimer's disease: contrasting the vulnerable locus coeruleus to the resilient substantia nigra [Internet]. Alzheimers & dementia. 2025 ; 21( 3):[citado 2026 mar. 31 ] Available from: https://observatorio.fm.usp.br/handle/OPI/84789 -
Vancouver
Ehrenberg AJ, Sant C, Pereira FL, Li SH, Buxton J, Langlois S, Trinidad M, Oh I, Suemoto CK, Grinberg LT. Pathways underlying selective neuronal vulnerability in Alzheimer's disease: contrasting the vulnerable locus coeruleus to the resilient substantia nigra [Internet]. Alzheimers & dementia. 2025 ; 21( 3):[citado 2026 mar. 31 ] Available from: https://observatorio.fm.usp.br/handle/OPI/84789 - Adenovirus-Mediated Transduction of Insulin-Like Growth Factor 1 Protects Hippocampal Neurons from the Toxicity of A beta Oligomers and Prevents Memory Loss in an Alzheimer Mouse Model
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