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Hledat publikace relevantní k dotazu "organic cation transporter 3"
organic cation transporter 3
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Publikace
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publication
Synchronized Activity of Organic Cation Transporter 3 (Oct3/Slc22a3) and Multidrug and Toxin Extrusion 1 (Mate1/Slc47a1) Transporter in Transplacental Passage of MPP+ in Rat
2012 |
Farmaceutická fakulta v Hradci Králové, Lékařská fakulta v Hradci Králové
publication
Transfer of metformin across the rat placenta is mediated by organic cation transporter 3 (OCT3/SLC22A3) and multidrug and toxin extrusion 1 (MATE1/SLC47A1) protein
2013 |
Farmaceutická fakulta v Hradci Králové
publication
Organic Cation Transporter 3 (OCT3/SLC22A3) and Multidrug and Toxin Extrusion 1 (MATE1/SLC47A1) Transporter in the Placenta and Fetal Tissues: Expression Profile and Fetus Protective Role at Different Stages of Gestation
2013 |
Farmaceutická fakulta v Hradci Králové, Lékařská fakulta v Hradci Králové
publication
Functional characterization of dopamine and norepinephrine transport across the apical and basal plasma membranes of the human placental syncytiotrophoblast
2022 |
Farmaceutická fakulta v Hradci Králové
publication
Effect of Selected Antidepressants on Placental Homeostasis of Serotonin: Maternal and Fetal Perspectives
2021 |
Farmaceutická fakulta v Hradci Králové
publication
Perfused rat term placenta as a preclinical model to investigate placental dopamine and norepinephrine transport
2023 |
Farmaceutická fakulta v Hradci Králové
publication
Serotonin homeostasis in the materno-foetal interface at term: Role of transporters (SERT/SLC6A4 and OCT3/SLC22A3) and monoamine oxidase A (MAO-A) in uptake and degradation of serotonin by human and rat term placenta
Publikace bez příslušnosti k fakultě
publication
Serotonin homeostasis in the materno-foetal interface at term: Role of transporters (SERT/SLC6A4 and OCT3/SLC22A3) and monoamine oxidase A (MAO-A) in uptake and degradation of serotonin by human and rat term placenta
2020 |
Farmaceutická fakulta v Hradci Králové
publication
Functional reorganization of monoamine transport systems during villous trophoblast differentiation: evidence of distinct differences between primary human trophoblasts and BeWo cells
2022 |
Farmaceutická fakulta v Hradci Králové