Fetoplacental disposition and toxicity of cadmium in mice lacking the Bcrp transporter

Author:

Kozlosky Danielle1,Doherty Cathleen2,Buckley Brian3,Goedken Michael J4,Miller Richard K5,Huh Dan Dongeun6,Barrett Emily S357,Aleksunes Lauren M13

Affiliation:

1. Department of Pharmacology and Toxicology, Rutgers University Ernest Mario School of Pharmacy , Piscataway, New Jersey 08854, USA

2. Department of Earth and Planetary Sciences, School of Arts and Sciences, Rutgers University , Piscataway, New Jersey 08854, USA

3. Environmental and Occupational Health Sciences Institute, Rutgers University , Piscataway, New Jersey 08854, USA

4. Research Pathology Services, Rutgers University , Piscataway, New Jersey 08854, USA

5. Department of Obstetrics and Gynecology, School of Medicine and Dentistry, University of Rochester Medical Center , Rochester, New York 14642, USA

6. Department of Bioengineering, School of Engineering and Applied Science, University of Pennsylvania , Philadelphia, Pennsylvania 19104, USA

7. Department of Biostatistics and Epidemiology, Rutgers School of Public Health , Piscataway, New Jersey 08854, USA

Abstract

Abstract The environmental toxicant cadmium (Cd) impairs the growth of rodents and humans in utero which in turn heightens susceptibility to diseases later in life. We previously demonstrated that the maternal-facing efflux transporter, breast cancer resistance protein (human BCRP/ABCG2, mouse Bcrp/Abcg2) confers resistance against Cd toxicity in human trophoblasts. In the current study, we sought to determine whether the absence of Bcrp alters the fetoplacental disposition and toxicity of Cd in mice. Pregnant female wild-type (WT) and Bcrp-null mice (n = 9–10/group) were administered a single injection of saline (5 ml/kg) or CdCl2 (5 mg/kg) on gestational day (GD) 9. Following Cd treatment, Bcrp-null offspring were shorter and accumulated more Cd in their placentas on GD 17 compared with WT mice. Because Cd can adversely impact placentation and transplacental nutrient delivery in mice, multiple pathways were assessed using morphometrics and immunohistochemistry including placenta zonation, vasculature development, and nutrient transporter expression. Most notably, the placentas of Bcrp-null mice had reduced immunostaining of the cell adhesion marker, β-catenin, and the trophoblast marker, cytokeratin, as well as decreased expression of divalent metal nutrient transporters (Dmt1, Zip14, and ZnT1) following Cd treatment. In summary, the absence of Bcrp expression increased placental concentrations of Cd which was associated with shorter fetal size that may be related to differential changes in molecular patterns of placental development and nutrition.

Funder

National Institutes of Environmental Health Sciences

National Center for Advancing Translational Sciences

Publisher

Oxford University Press (OUP)

Subject

Toxicology

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