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Updated: Aug 16, 2026

Determination of the Transport Rate of Xenobiotics and Nanomaterials Across the Placenta using the ex vivo Human Placental Perfusion Model
Published on: June 18, 2013
Placental tyrosine transport and maternal phenylketonuria
Brush border and basal plasma membrane vesicles prepared from normal human placental syncytiotrophoblast have been used to study L-tyrosine transport across placenta in an attempt to investigate the aetiology of the fetal damage found in maternal phenylketonuria. The results suggest that competition for transport with a grossly raised L-phenylalanine concentration at the basal surface of the trophoblast is responsible for the suppressed delivery of L-tyrosine to the fetus across the placenta.
Brush border and basal plasma membrane vesicles prepared from normal human placental syncytiotrophoblast have been used to study L-tyrosine transport across placenta in an attempt to investigate the aetiology of the fetal damage found in maternal phenylketonuria. The results suggest that competition for transport with a grossly raised L-phenylalanine concentration at the basal surface of the trophoblast is responsible for the suppressed delivery of L-tyrosine to the fetus across the placenta.
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