Insulin Signaling Disruption and INF-γ Upregulation Induce Aβ1–42 and Hyperphosphorylated-Tau Proteins Synthesis and Cell Death after Paraquat Treatment of Primary Hippocampal Cells

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Abascal, Maria Luisa and Sanjuan, Javier and Moyano-Cires Ivanoff, Paula Viviana and Sola Vendrell, Emma and Flores, Andrea and García Sánchez, José Manuel and García Lobo, Jimena and Frejo Moya, María Teresa and Pino Sans, Javier del (2022) Insulin Signaling Disruption and INF-γ Upregulation Induce Aβ1–42 and Hyperphosphorylated-Tau Proteins Synthesis and Cell Death after Paraquat Treatment of Primary Hippocampal Cells. Chemical Research in Toxicology . ISSN 0893-228X

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Official URL: https://doi.org/10.1021/acs.chemrestox.2c00278




Abstract

Acute and long-term paraquat (PQ) exposure produces hippocampal neurodegeneration and cognition decline. Although some mechanisms involved in these effects were found, the rest are unknown. PQ treatment, for 1 and 14 days, upregulated interferon-gamma signaling, which reduced insulin levels and downregulated the insulin pathway through phosphorylated-c-Jun N-terminal-kinase upregulation, increasing glucose levels and the production of Aβ1–42 and phosphorylated-tau, by beta-site amyloid precursor protein cleaving enzyme 1 (BACE1) overexpression and phosphorylated-GSK3β (p-GSK3β; ser9) level reduction, respectively, which induced primary hippocampal neuronal loss. This novel information on the PQ mechanisms leading to hippocampal neurodegeneration could help reveal the PQ actions that lead to cognition dysfunction.


Item Type:Article
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CRUE-CSIC (Acuerdos Transformativos 2022)

Subjects:Medical sciences > Medicine > Endocrinology
Medical sciences > Biology > Cytology
ID Code:75719
Deposited On:23 Nov 2022 12:23
Last Modified:23 Nov 2022 12:43

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