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Sexually dimorphic impact of preconceptional and gestational exposure to a real-life environmental chemical mixture (biosolids) on offspring growth dynamics and puberty in sheep (2023)
Journal Article
Evans, N. P., Bellingham, M., Elcombe, C. S., Ghasemzadeh-Hasankolaei, M., Lea, R. G., Sinclair, K. D., & Padmanabhan, V. (2023). Sexually dimorphic impact of preconceptional and gestational exposure to a real-life environmental chemical mixture (biosolids) on offspring growth dynamics and puberty in sheep. Environmental Toxicology and Pharmacology, 102, Article 104257. https://doi.org/10.1016/j.etap.2023.104257

Humans are ubiquitously exposed to complex mixtures of environmental chemicals (ECs). This study characterised changes in post-natal and peripubertal growth, and the activation of the reproductive axis, in male and female offspring of sheep exposed t... Read More about Sexually dimorphic impact of preconceptional and gestational exposure to a real-life environmental chemical mixture (biosolids) on offspring growth dynamics and puberty in sheep.

Developmental exposure to a real-life environmental chemical mixture alters testicular transcription factor expression in neonatal and pre-pubertal rams, with morphological changes persisting into adulthood (2023)
Journal Article
Elcombe, C. S., Monteiro, A., Ghasemzadeh-Hasankolaei, M., Padmanabhan, V., Lea, R., Sinclair, K. D., …Bellingham, M. (2023). Developmental exposure to a real-life environmental chemical mixture alters testicular transcription factor expression in neonatal and pre-pubertal rams, with morphological changes persisting into adulthood. Environmental Toxicology and Pharmacology, 100, Article 104152. https://doi.org/10.1016/j.etap.2023.104152

Environmental chemical (EC) exposure may be impacting male reproductive health. The translationally relevant biosolids treated pasture (BTP) sheep model was used to investigate gestational low-level EC mixture exposure on the testes of F1 male offspr... Read More about Developmental exposure to a real-life environmental chemical mixture alters testicular transcription factor expression in neonatal and pre-pubertal rams, with morphological changes persisting into adulthood.