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1.
Mem Inst Oswaldo Cruz ; 118: e230044, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37820117

RESUMO

Lipid droplets (LD) are evolutionarily conserved lipid-enriched organelles with a diverse array of cell- and stimulus-regulated proteins. Accumulating evidence demonstrates that intracellular pathogens exploit LD as energy sources, replication sites, and part of the mechanisms of immune evasion. Nevertheless, LD can also favor the host as part of the immune and inflammatory response to pathogens. The functions of LD in the central nervous system have gained great interest due to their presence in various cell types in the brain and for their suggested involvement in neurodevelopment and neurodegenerative diseases. Only recently have the roles of LD in neuroinfections begun to be explored. Recent findings reveal that lipid remodelling and increased LD biogenesis play important roles for Zika virus (ZIKV) replication and pathogenesis in neural cells. Moreover, blocking LD formation by targeting DGAT-1 in vivo inhibited virus replication and inflammation in the brain. Therefore, targeting lipid metabolism and LD biogenesis may represent potential strategies for anti-ZIKV treatment development. Here, we review the progress in understanding LD functions in the central nervous system in the context of the host response to Zika infection.


Assuntos
Infecções do Sistema Nervoso Central , Gotículas Lipídicas , Infecção por Zika virus , Zika virus , Humanos , Gotículas Lipídicas/metabolismo , Gotículas Lipídicas/fisiologia , Gotículas Lipídicas/virologia , Lipídeos/fisiologia , Replicação Viral/fisiologia , Zika virus/fisiologia , Infecção por Zika virus/fisiopatologia , Infecção por Zika virus/virologia , Infecções do Sistema Nervoso Central/fisiopatologia , Infecções do Sistema Nervoso Central/virologia
2.
Mem. Inst. Oswaldo Cruz ; 118: e230044, 2023. graf
Artigo em Inglês | LILACS-Express | LILACS | ID: biblio-1514605

RESUMO

Lipid droplets (LD) are evolutionarily conserved lipid-enriched organelles with a diverse array of cell- and stimulus-regulated proteins. Accumulating evidence demonstrates that intracellular pathogens exploit LD as energy sources, replication sites, and part of the mechanisms of immune evasion. Nevertheless, LD can also favor the host as part of the immune and inflammatory response to pathogens. The functions of LD in the central nervous system have gained great interest due to their presence in various cell types in the brain and for their suggested involvement in neurodevelopment and neurodegenerative diseases. Only recently have the roles of LD in neuroinfections begun to be explored. Recent findings reveal that lipid remodelling and increased LD biogenesis play important roles for Zika virus (ZIKV) replication and pathogenesis in neural cells. Moreover, blocking LD formation by targeting DGAT-1 in vivo inhibited virus replication and inflammation in the brain. Therefore, targeting lipid metabolism and LD biogenesis may represent potential strategies for anti-ZIKV treatment development. Here, we review the progress in understanding LD functions in the central nervous system in the context of the host response to Zika infection.

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