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Toxicological Sciences : an Official Journal of the Society of Toxicology|February 14, 2015
Mono-2-ethylhexyl phthalate stimulates androgen production but suppresses mitochondrial function in mouse leydig cells with different steroidogenic potentialIuliia Savchuk, Olle Söder, Konstantin SvechnikovPlos One|August 23, 2013
Mouse leydig cells with different androgen production potential are resistant to estrogenic stimuli but responsive to bisphenol a which attenuates testosterone metabolismIuliia Savchuk, Olle Söder, Konstantin SvechnikovObesity (Silver Spring, Md.)|June 15, 2018
Adipose Tissue is a Potential Source of Hyperandrogenism in Obese Female RatsIsabel Viola Wagner, Lena Sahlin, Iuliia Savchuk, et al.Hormone Research in Paediatrics|November 13, 2015
Phthalates Exert Multiple Effects on Leydig Cell SteroidogenesisKonstantin Svechnikov, Iuliia Savchuk, Marie-Line Morvan, et al.The Journal of Endocrinology|November 26, 2016
Impact of uteroplacental insufficiency on postnatal rat male gonadValentina Pampanini, Daniela Germani, Antonella Puglianiello, et al.Molecular Nutrition & Food Research|August 27, 2016
Resveratrol inhibits steroidogenesis in human fetal adrenocortical cells at the end of first trimesterIuliia Savchuk, Marie-Line Morvan, Tue Søeborg, et al.Obesity Facts|January 4, 2022
De Novo and Depot-Specific Androgen Production in Human Adipose Tissue: A Source of Hyperandrogenism in Women with ObesityIsabel Viola Wagner, Iuliia Savchuk, Lena Sahlin, et al.Endocrinology|January 28, 2021
Diabetes Type 1 Negatively Influences Leydig Cell Function in Rats, Which is Partially Reversible By Insulin TreatmentIsabel Viola Wagner, Nora Klöting, Iuliia Savchuk, et al.Plos Biology|February 15, 2019
Alternative (backdoor) androgen production and masculinization in the human fetusPeter J O'Shaughnessy, Jean Philippe Antignac, Bruno Le Bizec, et al.Pageof 1