Bisphenol A (BPA) is an endocrine disrupting chemical causing ubiquitous exposures in the developed world. Both animal studies and recent epidemiological evidence indicate that BPA targets the male reproductive tract, producing testicular injury and alterations in sperm parameters. Standard good laboratory practices (GLP)-based approaches in rodent models have been relatively insensitive in detecting BPA-induced abnormalities in the male reproductive tract. The investigators propose the use of well-established morphometric assessments of the testis, including quantitation of retained spermatid heads and the incidence of terminal dUTP nick end-labeling (TUNEL)- positive germ cells, to enhance the sensitivity of detecting testicular effects of BPA exposure. In addition, the investigators will identify molecular biomarkers of effect in the testis and sperm, by examining global mRNA and miRNA levels and genome-wide DNA methylation. Measuring these molecular biomarkers in sperm is expected to be particularly sensitive and specific, since sperm are a homogeneous population of cells that developed throughout their life history within the seminiferous epithelium. The GLP design provides multiple doses and a positive estradiol control, allowing robust testing for the presence of a BPA-induced effect. In addition, the investigators will assess both the paternal F0 rats and their progeny, addressing differences across generations. The goal of this project is to test the following working hypothesis: addition of the enhanced morphological and molecular endpoints with the GLP design will provide more sensitive and specific biomarkers of BPA-induced male reproductive toxicity. The GLP study will be enhanced by morphometric assessments and molecular biomarkers of effects through the following Specific Aims:
Specific Aim 1 will enhance the assessment of BPA-induced testicular injury using advanced histological and morphometric endpoints.
Specific Aim 2 will characterize the caudal sperm and testis messenger and microRNA (mRNA and miRNA, respectively) transcript content.
Specific Aim 3 will develop the caudal sperm and testis methylome.

Public Health Relevance

This project proposes to apply well-established histological, morphometric and high-throughput assays to enhance the GLP-assessment of BPA-induced male reproductive toxicity and to identify sensitive molecular biomarkers of effect.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Research Project--Cooperative Agreements (U01)
Project #
1U01ES020913-01
Application #
8230312
Study Section
Special Emphasis Panel (ZES1-JAB-J (BP))
Program Officer
Heindel, Jerrold
Project Start
2011-09-19
Project End
2015-05-31
Budget Start
2011-09-19
Budget End
2012-05-31
Support Year
1
Fiscal Year
2011
Total Cost
$117,064
Indirect Cost
Name
Brown University
Department
Pathology
Type
Schools of Medicine
DUNS #
001785542
City
Providence
State
RI
Country
United States
Zip Code
02912
Dere, Edward; Anderson, Linnea M; Huse, Susan M et al. (2018) Effects of continuous bisphenol A exposure from early gestation on 90?day old rat testes function and sperm molecular profiles: A CLARITY-BPA consortium study. Toxicol Appl Pharmacol 347:1-9
Dere, Edward; Anderson, Linnea M; Hwang, Kathleen et al. (2013) Biomarkers of chemotherapy-induced testicular damage. Fertil Steril 100:1192-202