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  • Cadmium associated with inhaled cadmium oxide nanoparticles impacts fetal and neonatal development and growth.

Cadmium associated with inhaled cadmium oxide nanoparticles impacts fetal and neonatal development and growth.

Toxicological sciences : an official journal of the Society of Toxicology (2012-01-14)
Jason L Blum, Judy Q Xiong, Carol Hoffman, Judith T Zelikoff
ABSTRACT

One industrially important metal oxide nanoparticle (NP) is cadmium oxide (CdO). A study was performed using timed-pregnant CD-1 mice to determine if Cd associated with inhaled CdO NP could reach the placenta and adversely affect the developing fetus and/or neonate. Pregnant mice were exposed by inhalation either every other day to 100 μg of freshly generated CdO/m(3) (exposure 1) or daily to 230 μg CdO/m(3) (exposure 2). In each exposure, mice were exposed to CdO NP or carrier gas (control) for 2.5 h from 4.5 days post coitus (dpc) through 16.5 dpc. At 17.5 dpc, fetuses and placentas from both exposures 1 and 2 were collected, measured, and weighed. A subgroup from the second exposure was allowed to give birth, and neonates were weighed daily until weaning. Cadmium in the uterus and placenta, as well as in other maternal organs, was elevated in NP-treated mice, but was undetectable in fetuses at 17.5 dpc. Daily inhalation of 230 μg CdO NP/m(3) decreased the incidence of pregnancy (i.e., no evidence of implantation) by 23%, delayed maternal weight gain, altered placental weight, and decreased fetal length, as well as delayed neonatal growth. This study demonstrates that inhalation of CdO NP during pregnancy adversely affects reproductive fecundity and alters fetal and postnatal growth of the developing offspring.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Cadmium oxide, powder, 99.5% trace metals basis
Sigma-Aldrich
Cadmium oxide, ≥99.99% trace metals basis