4.7 Article

Impact of neonatal anoxia and hypothermic treatment on development and memory of rats

期刊

EXPERIMENTAL NEUROLOGY
卷 340, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.expneurol.2021.113691

关键词

Perinatal asphyxia; Hypoxic-ischemic encephalopathy; Therapeutic hypothermia; Adult neurogenesis; Ezh2

资金

  1. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) [2018/14072-7, 2015/18415-8, 2017/26439-0, 2016/18941-4, 2018/06731-0]
  2. Coordination for the Improvement of Higher Education Personnel (CAPES) of Brazil
  3. International Brain Research Organization (IBRO)
  4. National Scientific and Technical Research Council (CONICET) of Argentina

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Therapeutic hypothermia in a rodent model of preterm neonatal anoxia mainly reduces hippocampal neurodegeneration and improves performance of behavioral tasks, but does not appear to affect developmental alterations and hippocampal neurogenesis.
Therapeutic hypothermia (TH) is well established as a standard treatment for term and near-term infants. However, therapeutic effects of hypothermia following neonatal anoxia in very premature babies remains inconclusive. The present rodent model of preterm neonatal anoxia has been shown to alter developmental milestones and hippocampal neurogenesis, and to disrupt spatial learning and memory in adulthood. These effects seem to be reduced by post-insult hypothermia. Epigenetic-related mechanisms have been postulated as valuable tools for developing new therapies. Dentate gyrus neurogenesis is regulated by epigenetic factors. This study evaluated whether TH effects in a rodent model of preterm oxygen deprivation are based on epigenetic alterations. The effects of TH on both developmental features (somatic growth, maturation of physical characteristics and early neurological reflexes) and performance of behavioral tasks at adulthood (spatial reference and working memory, and fear conditioning) were investigated in association with the possible involvement of the epigenetic operator Enhancer of zeste homolog 2 (Ezh2), possibly related to long-lasting effects on hippocampal neurogenesis. Results showed that TH reduced both anoxia-induced hippocampal neurodegeneration and anoxiainduced impairments on risk assessment behavior, acquisition of spatial memory, and extinction of auditory and contextual fear conditioning. In contrast, TH did not prevent developmental alterations caused by neonatal anoxia and did not restore hippocampal neurogenesis or cause changes in EZH2 levels. In conclusion, despite the beneficial effects of TH in hippocampal neurodegeneration and in reversing disruption of performance of behavioral tasks following oxygen deprivation in prematurity, these effects seem not related to developmental alterations and hippocampal neurogenesis and, apparently, is not caused by Ezh2-mediated epigenetic alteration.

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