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Life Sciences

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City University of New York (CUNY)

2015

Prefrontal cortex

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Behavioral And Cognitive Changes After Early Postnatal Lesions Of The Rat Mediodorsal Thalamus, Zakaria Ouhaz, Saadua B-M'Hamed, Anna S. Mitchell, Abdeslem Elidrissi, Mohamed Bennis Jun 2015

Behavioral And Cognitive Changes After Early Postnatal Lesions Of The Rat Mediodorsal Thalamus, Zakaria Ouhaz, Saadua B-M'Hamed, Anna S. Mitchell, Abdeslem Elidrissi, Mohamed Bennis

Publications and Research

Early insults to the thalamus result in functional and/or structural abnormalities in the cerebral cortex. However, differences in behavioral and cognitive changes after early insult are not well characterized. The present study assessed whether early postnatal damage to mediodorsal nucleus of the thalamus (MD), reciprocally interconnected with the prefrontal cortex, causes behavioral and cognitive alterations in young adult rats. Rat pups at postnatal day 4 received bilateral electrolytic lesion of MD, or aMD Sham lesion or were anesthetized controls; on recovery they were returned to their mothers until weaning. Seven weeks later, all rats were tested with the following behavioral …


An Epigenetic Hypothesis For The Genomic Memory Of Pain, Sebastian Alvarado, Maral Tajerian, Matthew Suderman, Ziv Machnes, Stephanie Pierfelice, Magali Millecamps, Laura S. Stone, Moshe Szyf Jan 2015

An Epigenetic Hypothesis For The Genomic Memory Of Pain, Sebastian Alvarado, Maral Tajerian, Matthew Suderman, Ziv Machnes, Stephanie Pierfelice, Magali Millecamps, Laura S. Stone, Moshe Szyf

Publications and Research

Chronic pain is accompanied with long-term sensory, affective and cognitive disturbances. What are the mechanisms that mediate the long-term consequences of painful experiences and embed them in the genome? We hypothesize that alterations in DNA methylation, an enzymatic covalent modification of cytosine bases in DNA,serve as a “genomic” memory of pain in the adult cortex. DNA methylation is an epigenetic mechanism for long-term regulation of gene expression. Neuronal plasticity at the neuroanatomical, functional, morphological, physiological and molecular levels has been demonstrated throughout the neuroaxis in response to persistent pain, including in the adult prefrontal cortex (PFC). We have previously reported …