Melatonin attenuates developmental deficits and prevents hippocampal injuries in male and female rats subjected to neonatal anoxia

Author:

Arruda Bruna Petrucelli1ORCID,Cruz‐Ochoa Natalia Andrea1,Serra Fernando Tadeu2,Xavier Gilberto Fernando3ORCID,Nogueira Maria Inês1,Takada Silvia Honda4

Affiliation:

1. Neurosciences Laboratory, Department of Anatomy, Institute of Biomedical Sciences University of São Paulo São Paulo SP Brazil

2. Santos Young Doctor Program, Municipal Secretary of Education of Santos Santos SP Brazil

3. Department of Physiology, Institute of Biosciences University of São Paulo São Paulo SP Brazil

4. Neurogenetic Laboratory, Mathematic, Computation and Cognition Center, Neuroscience and Cognition Program Federal University of ABC São Bernardo do Campo SP Brazil

Abstract

AbstractHypoxia in preterm infants is a clinical condition that has been associated with cognitive and behavioral disturbances for which treatment strategies are strongly required. Melatonin administration following brain insults has been considered a promising therapeutic strategy due to its antioxidant and anti‐inflammatory effects. Not surprisingly, it has been extensively studied for preventing disturbances following brain injury. This study evaluated the effects of melatonin on developmental disturbances, memory disruption, and hippocampal cell loss induced by neonatal anoxia in rats. Neonatal Wistar rats were subjected to anoxia and subsequently treated with melatonin. Later, maturation of physical characteristics, ontogeny of reflexes, learning and memory in the Morris water maze (MWM), and estimates of the number of hippocampal neurons, were evaluated. Melatonin treatment attenuated (1) female anoxia‐induced delay in superior incisor eruption, (2) female anoxia‐induced vibrissae placement reflexes, and (3) male and female anoxia‐induced hippocampal neuronal loss. Melatonin also promoted an increase (5) in swimming speeds in the MWM. In addition, PCA analysis showed positive associations between the acoustic startle, auditory canal open, and free fall righting parameters and negative associations between the male vehicle anoxia group and the male melatonin anoxia group. Therefore, melatonin treatment attenuates both anoxia‐induced developmental deficits and hippocampal neuronal loss.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Wiley

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