Silver nanoparticles modify the hypothalamic–pituitary–interrenal axis and block cortisol response to an acute stress in zebrafish, Danio rerio

Author:

Arab-Bafrani Zahra12,Zabihi Erfan13,Hoseini Seyyed Morteza4ORCID,Sepehri Hamid5,Khalili Mohsen67

Affiliation:

1. Metabolic Disorders Research Center, Golestan University of Medical Sciences, Gorgan, Iran

2. Department of Biochemistry and Biophysics, Faculty of Medicine, Golestan University of Medical Sciences, Gorgan, Iran

3. Department of Polymer Engineering, Faculty of Engineering, Golestan University, Gorgan, Iran

4. Inland Waters Aquatics Resources Research Center, Iranian Fisheries Sciences Research Institute, Agricultural Research, Education and Extension Organization, Gorgan, Iran

5. Department of Physiology, Faculty of Medicine, Golestan University of Medical Sciences, Gorgan, Iran

6. Stem Cell Research Center, Golestan University of Medical Sciences, Gorgan, Iran

7. Medical Cellular and Molecular Research Center, Golestan University of Medical Sciences, Gorgan, Iran

Abstract

The present study aimed at assessing the effects of exposure to silver nanoparticle (AgNP) and a subsequent acute stress on the expression of various genes involved in the hypothalamus–pituitary–interrenal (HPI) axis in zebrafish, Danio rerio. The fish were exposed to 0 (Control), 0.1 (LC), 0.4 (MC), and 1.2 (HC) mg Ag/L (as AgNP) over a 2-week period, followed by an acute air exposure stress. The whole body cortisol and the expression of selected genes in the fish brain and kidney were analyzed, before and after the acute stress. The results showed that AgNP increased basal cortisol levels and the expression of corticotropin releasing factor, prohormone convertase 1, pro-opiomelanocortin, and melanocortin 2 receptor; however, it suppressed/inhibited whole body cortisol, brain corticotropin releasing factor responses, pro-opiomelanocortin, and the kidney melanocortin 2 receptor responses to the acute stress. AgNP down-regulated the expression of the steroidogenic acute regulatory protein, but it intensified the gene expression in response to the acute stress. Before the acute stress, LC treatment exhibited an up-regulation in Cytochrome P450-11A-1 expression, but MC and HC treatments induced down-regulation. After the acute stress, the AgNP-exposed fish exhibited decreased Cytochrome P450-11A-1 expressions, compared with the Control. Exposure to AgNP significantly increased Cytochrome P450-11B expression. However, after the acute stress, LC treatment exhibited an up-regulation, but MC and HC treatments exhibited down-regulation in the Cytochrome P450-11B gene expression. In conclusion, AgNP suppressed cortisol response to stress, which appears to be a consequence of alterations in the HPI axis at the transcriptomic levels.

Funder

Golestan University of Medical Sciences

Publisher

SAGE Publications

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Toxicology

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