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Nutritional Neuroscience
An International Journal on Nutrition, Diet and Nervous System
Volume 27, 2024 - Issue 1
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Research Article

Neonatal kaempferol exposure attenuates impact of cerebral palsy model on neuromotor development, cell proliferation, microglia activation, and antioxidant enzyme expression in the hippocampus of rats

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Henrique J. C. B. Gouveia, Raul Manhães-de-Castro, Bárbara J. R. Costa-de-Santana, Emanuel Ewerton M. Vasconcelos, Eliesly Roberto Silva, Angélica Roque, Luz Torner, Omar Guzmán-Quevedo & Ana E. Toscano. (2023) Creatine supplementation increases postnatal growth and strength and prevents overexpression of pro-inflammatory interleukin 6 in the hippocampus in an experimental model of cerebral palsy. Nutritional Neuroscience 0:0, pages 1-13.
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Caio Matheus Santos da Silva Calado, Raul Manhães-de-Castro, Sabrina da Conceição Pereira, Vanessa da Silva Souza, Leticia Nicoly Ferreira Barbosa, Osmar Henrique dos Santos Junior, Claudia Jacques Lagranha, Pedro Alberto Romero Juárez, Luz Torner, Omar Guzmán-Quevedo & Ana Elisa Toscano. (2023) Resveratrol Reduces Neuroinflammation and Hippocampal Microglia Activation and Protects Against Impairment of Memory and Anxiety-Like Behavior in Experimental Cerebral Palsy. Molecular Neurobiology.
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Vanessa da Silva Souza, Raul Manhães-de-Castro, Sabrina da Conceição Pereira, Caio Matheus Santos da Silva Calado, Beatriz Souza de Silveira, Eulália Rebeca da Silva Araújo, Severina Cassia de Andrade Silva, Osmar Henrique dos Santos Junior, Claudia Jacques Lagranha, Luan Kelwyny Thaywã Marques da Silva & Ana Elisa Toscano. (2023) Neonatal treatment with resveratrol decreases postural and strength impairments and improves mitochondrial function in the somatosensory cortex rats submitted to cerebral palsy. Neurochemistry International 168, pages 105568.
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Bárbara Juacy Rodrigues Costa-de-Santana, Raul Manhães-de-Castro, Henrique José Cavalcanti Bezerra Gouveia, Eliesly Roberto Silva, Marcos Antônio da Silva Araújo, Diego Cabral Lacerda, Omar Guzmán-Quevedo, Luz Torner & Ana Elisa Toscano. (2023) Motor deficits are associated with increased glial cell activation in the hypothalamus and cerebellum of young rats subjected to cerebral palsy. Brain Research 1814, pages 148447.
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