Long-Term Effects of Maternal Deprivation on Redox Regulation in Rat Brain: Involvement of NADPH Oxidase

Author:

Marković Branka1ORCID,Radonjić Nevena V.2,Jevtić Gordana3,Stojković Tihomir3,Velimirović Milica3,Aksić Milan4,Poleksić Joko4,Nikolić Tatjana3,Aleksić Dubravka4,Radonjić Vidosava4,Filipović Branislav4,Petronijević Nataša D.3

Affiliation:

1. Faculty of Sport and Physical Education, University of Belgrade, Blagoja Parovića 156, Belgrade, Serbia

2. Department of Psychiatry, University of Connecticut School of Medicine, Farmington, CT, USA

3. Institute of Clinical and Medical Biochemistry, School of Medicine, University of Belgrade, Pasterova 2, Belgrade, Serbia

4. Institute of Anatomy Niko Miljanić, School of Medicine, University of Belgrade, Dr Subotića 4, Belgrade, Serbia

Abstract

Maternal deprivation (MD) causes perinatal stress, with subsequent behavioral changes which resemble the symptoms of schizophrenia. The NADPH oxidase is one of the major generators of reactive oxygen species, known to play a role in stress response in different tissues. The aim of this study was to elucidate the long-term effects of MD on the expression of NADPH oxidase subunits (gp91phox, p22phox, p67phox, p47phox, and p40phox). Activities of cytochrome C oxidase and respiratory chain Complex I, as well as the oxidative stress parameters using appropriate spectrophotometric techniques were analyzed. Nine-day-old Wistar rats were exposed to a 24 h maternal deprivation and sacrificed at young adult age. The structures affected by perinatal stress, cortex, hippocampus, thalamus, and caudate nuclei were investigated. The most prominent findings were increased expressions of gp91phox in the cortex and hippocampus, increased expression of p22phox and p40phox, and decreased expression of gp91phox, p22phox, and p47phox in the caudate nuclei. Complex I activity was increased in all structures except cortex. Content of reduced glutathione was decreased in all sections while region-specific changes of other oxidative stress parameters were found. Our results indicate the presence of long-term redox alterations in MD rats.

Funder

Ministry for Science and Environmental Protection of the Republic of Serbia

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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