Carnosic Acid Affords Mitochondrial Protection in Chlorpyrifos-Treated Sh-Sy5y Cells |
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Authors: | Marcos Roberto de Oliveira Alessandra Peres Gustavo Costa Ferreira Patrícia Fernanda Schuck Simone Morelo Dal Bosco |
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Affiliation: | 1.Department of Chemistry/ICET,Federal University of Mato Grosso (UFMT),Cuiaba,Brazil;2.Health Basic Sciences Department,Federal University of Health Sciences of Porto Alegre,RS,Brazil;3.Centro de Pesquisa da Pós-Gradua??o,Centro Universitário Metodista IPA,Porto Alegre,Brazil;4.Instituto de Bioquímica Médica Leopoldo de Meis,Universidade Federal do Rio de Janeiro,Rio de Janeiro,Brazil;5.Laboratório de Erros Inatos do Metabolismo, Unidade Acadêmica de Ciências da Saúde, Programa de Pós-Gradua??o em Ciências da Saúde,Universidade do Extremo Sul Catarinense (UNESC),Criciúma,Brazil;6.Federal University of Health Sciences of Porto Alegre,Porto Alegre,Brazil |
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Abstract: | Carnosic acid (CA; C20H28O4) is a phenolic diterpene found in rosemary (Rosmarinus officinalis L.) and exhibits protective properties, e.g., antioxidant, anti-inflammatory, antitumor, and antimicrobial activities. In this context, CA has been viewed as a neuroprotective agent due to its ability in rescuing neuronal cells from pro-oxidant and pro-apoptotic challenges. In the present work, we found that CA pretreatment at 1 µM for 12 h suppressed the mitochondria-related pro-oxidant and mitochondria-dependent pro-apoptotic effects of chlorpyrifos (CPF) in human neuroblastoma SH-SY5Y cells. CA prevented mitochondrial membrane potential disruption and decreased the levels of oxidative stress markers in mitochondrial membranes obtained from cells exposed to CPF. CA also inhibited cytochrome c release and activation of the caspases-9 and -3, as well as decreased DNA fragmentation, in CPF-treated cells. CA upregulated the content of glutathione (GSH) in mitochondria by a mechanism involving the activation of the phosphoinositide-3-kinase (PI3K)/Akt/nuclear factor erythroid 2-related factor 2 (Nrf2) signaling pathway, since inhibition of PI3K/Akt or silencing of Nrf2 using siRNA strategy abolished the protection exerted by CA in SH-SY5Y cells. Therefore, CA protected mitochondria of SH-SY5Y cells through the activation of the PI3K/Akt/Nrf2 axis, causing upregulation of the mitochondrial GSH content and consequent antioxidant and anti-apoptotic effects. |
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