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Topic:Aromatase

Aromatase is an enzyme responsible for the conversion of androgens into estrogens in horses. It is involved in the regulation of steroid hormone levels and plays a role in various physiological processes, including reproductive function and bone growth. Aromatase activity occurs in several tissues, such as the ovaries, testes, and brain. Research on aromatase in horses explores its expression patterns, regulation mechanisms, and potential implications for equine health and reproduction. This page compiles peer-reviewed research studies and scholarly articles examining the function, regulation, and significance of aromatase in equine physiology.
A hydrophobic deep eutectic solvent-based vortex-assisted liquid-liquid microextraction applied for doping control of aromatase inhibitors from equine urine.
Journal of pharmaceutical and biomedical analysis    July 14, 2023   Volume 234 115583 doi: 10.1016/j.jpba.2023.115583
Chen Q, Wang Z, Chen H.Aromatase inhibitors (AIs) can indirectly cause increased testosterone in animals, which leads to the improvement of the athletic ability of horses. For the protection of horses and the consideration of fair competition, AIs were listed as prohibited drugs by the Federation Equestre Internationale (FEI). There were several disadvantages using traditional pretreatment methods before analyzing these drugs from biological samples. A rapid and green pretreatment method has been developed by utilizing the hydrophobic deep eutectic solvent (DES)-based vortex-assisted liquid-liquid microextraction (D...
Equine hydrallantois is associated with impaired angiogenesis in the placenta.
Placenta    March 5, 2020   Volume 93 101-112 doi: 10.1016/j.placenta.2020.03.001
Dini P, Carossino M, Loynachan AT, El-Sheikh Ali H, Wolfsdorf KE, Scoggin KE, Daels P, Ball BA.Hydrallantois is the excessive accumulation of fluid in the allantoic cavities during the last trimester of pregnancy, leading to abdominal wall hernias, cardiovascular shock, abortion, and dystocia. It has been postulated that hydrallantois is associated with structural and/or functional changes in the chorioallantoic membrane. In the present study, we hypothesized that angiogenesis is impaired in the hydrallantoic placenta. Capillary density in the hydrallantoic placenta was evaluated in the chorioallantois via immunohistochemistry for Von Willebrand Factor. Moreover, the expression of angio...
Effect of stallion age on the expression of LH and FSH receptors and aromatase P450 in equine male reproductive tissues.
Reproduction, fertility, and development    July 7, 2015   Volume 28, Issue 12 2016-2026 doi: 10.1071/RD15027
Herrera-Luna CV, Scarlet D, Walter I, Aurich C.The aim of the present study was to characterise receptors for LH and FSH (LHR and FSHR, respectively) and aromatase in epididymal and testicular tissue from stallions of different ages (prepubertal, young, mature and old). Gene and protein expression were assessed by real-time quantitative polymerase chain reaction (real-time qPCR), immunohistochemistry and multiple immunofluorescence labelling. There were no differences in LHR mRNA expression in epididymal and testicular parenchyma in stallions of different age. In contrast, expression of FSHR and CYP19A1 in caput, corpus and cauda epididymi...
Localization of inhibin alpha-, betaA- and betaB-subunits and aromatase in ovarian follicles with granulosa theca cell tumor (GTCT) in 6 mares.
The Journal of veterinary medical science    July 18, 2003   Volume 65, Issue 6 713-717 doi: 10.1292/jvms.65.713
Hoque S, Derar RI, Senba H, Osawa T, Kano K, Taya K, Miyake Y.To clarify the morphological and immunohistochemical characteristics in mares with granulosa theca cell tumor (GTCT), the localization of inhibin subunits (alpha, betaA, betaB) and aromatase in the granulosa cell layers and theca layers in the ovarian follicles were determined by immunohistochemical staining. The follicles were obtained from the ovaries of 6 mares with GTCT and 4 normal mares as controls. Immunohistochemically, inhibin alpha-subunit was localized in the granulosa cells of all follicles showing different sizes in all GTCT cases and betaA- subunit was localized in two GTCT cases...
Molecular characterization and expression of equine testicular cytochrome P450 aromatase.
Biochimica et biophysica acta    February 20, 2003   Volume 1625, Issue 3 229-238 doi: 10.1016/s0167-4781(02)00621-8
Seralini GE, Tomilin A, Auvray P, Nativelle-Serpentini C, Sourdaine P, Moslemi S.We characterized testicular equine aromatase and its expression. A 2707 bp cDNA was isolated, it encoded a polypeptide of 503 residues with a deduced molecular mass of 57.8 kDa. The sequence features were those of a cytochrome P450 aromatase, with a 78% polypeptide identity with the human counterpart. The gene has a minimal length of 74 kb comprising at least 9 exons and expresses a 2.8 kb mRNA in the testis. Transient cDNA transfections in E293 cells and in vitro translations in a reticulocyte lysate system allowed aromatase protein and activity detections. The activity increased with androst...
The synthesis of 19-norandrostenedione from dehydroepiandrosterone in equine placenta is inhibited by aromatase inhibitors 4-hydroxyandrostenedione and fadrozole.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology    December 1, 1995   Volume 112, Issue 4 613-618 doi: 10.1016/0305-0491(95)00117-4
Moslemi S, Silberzahn P, Gaillard JL.19-Norandrostenedione was synthesized in vitro from dehydroepiandrosterone by explants of equine full-term placenta. The synthesis of 19-norandrostenedione was inhibited by two specific aromatase inhibitors, 4-hydroxyandrostenedione and fadrozole.
In vitro 19-norandrogen synthesis by equine placenta requires the participation of aromatase.
The Journal of endocrinology    March 1, 1995   Volume 144, Issue 3 517-525 doi: 10.1677/joe.0.1440517
Moslemi S, Silberzahn P, Gaillard JL.Explants of equine full-term placenta have been shown to synthesize 19-norandrogens from labelled androgens. Steroid metabolites were purified by silica-gel column chromatography then analysed and quantified by c18-reverse-phase HPLC coupled to a radioactive flow detector. 19-Norandrostenedione was subsequently recrystallized to constant specific activity, providing unequivocal evidence of its synthesis by the equine placenta. 19-Norandrostenedione synthesis appeared to be localized in the microsomal fraction. Regardless of the substrate used, formation of 19-norandrogens was far weaker than t...
Intermicrosomal distribution of aromatizing enzyme system in equine testicular tissue.
Acta endocrinologica    February 1, 1973   Volume 72, Issue 2 366-375 doi: 10.1530/acta.0.0720366
Oh R, Tamaoki BI.The microsomal fraction (10 000–105 000 × g precipitate) of equine testes was fractionated into the smooth- and the rough-surfaced microsomal subfractions by a sucrose density-gradient centrifugation in the presence of CsCl. The validity of this fractionating procedure was confirmed by electron microscopic examination and also by chemical analysis of the RNA contents in these subfractions. The aromatizing enzyme system (19-hydroxylase and aromatase) which was concentrated in the microsomal fractions among the organellae was found to be localized in the smoothsurfaced microsomal fraction. Th...