Impact of route of administration on genotoxic oestrogens concentrations using oral vs transdermal oestradiol in girls with Turner syndrome
Author
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Mauras, Nelly
Author
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Torres Santiago, Lournaris
Author
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Santen, Richard J.
Author
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Mericq, Verónica
Author
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Ross, Judith L.
Author
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Colón Otero, Gerardo
Author
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Damaso, Ligeia
Author
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Hossain, Jobayer
Author
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Wang, Qingqing
Author
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Mesaros, Clementina
Author
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Blair, Ian A.
Admission date
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2019-05-31T15:35:25Z
Available date
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2019-05-31T15:35:25Z
Publication date
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2019
Cita de ítem
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Clin Endocrinol (Oxf)
. 2019 Jan;90(1):155-161
Identifier
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13652265
Identifier
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03000664
Identifier
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10.1111/cen.13869
Identifier
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https://repositorio.uchile.cl/handle/2250/169738
Abstract
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Objective: The established link between oestrogen and breast cancer occurs via both oestrogen receptor (ER)-mediated and non ER-mediated mechanisms. The term genotoxic estrogens describes mutagenic metabolites, including oestrogen catechols and quinones, which have been linked to breast carcinogenesis in post-menopausal women. We aimed to assess whether the route of administration of 17β oestradiol (E2 ) affects the accumulation of genotoxic oestrogen metabolites in a model of ovarian failure in young girls with Turner syndrome.
Abstract
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Methods: Stored plasma samples obtained at 0 and 12 months were used from 40 adolescents with Turner syndrome who participated in a 12 months randomized controlled trial of the metabolic impact of E2 orally (2 mg/d) vs transdermally (100 µg/d); dose escalation allowed matching of unconjugated E2 levels in the parent study. We measured 12 oestrogen metabolites (total concentrations = conjugated and unconjugated) using a highly sensitive LCMSMS assay. Results from 48 normally menstruating adolescents were used for comparison.
Abstract
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Results: After treatment, least square mean (SE) total E2 concentrations were higher in the oral vs transdermal group (6784 pmol/L vs 1123 [1614], P < 0.0001), as was oestrone (E1 ) (91 060 pmol/L vs 19 278 [16 534], P < 0.0001). Also, higher after oral treatment were catechol-oestrogens 4-hydroxy-E2 (149 vs 28 [±49] pmol/L), 2-hydroxy-E2 (300 vs 76 [±52]), 4-hydroxy-E1 (450 vs 105 [±113]), 2-hydroxy-E1 (3094 vs 740 [±684]) and 16α-hydroxy-E1 (3,007 vs 157 [±534]) (<0.001 between groups). Levels were much closer to controls in the transdermal group.
Abstract
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Conclusions: Common feminizing doses of oral oestradiol for 12 months result in substantial accumulation of unphysiologic, genotoxic oestrogens compared to transdermal oestradiol, expanding concerns about oral oestrogens' first hepatic passage. Further studies assessing long-term risks of these metabolites in women taking different forms of oestrogen are needed.