نتایج جستجو برای: 17 α ethinylestradiol ee2

تعداد نتایج: 434509  

Journal: :Journal of environmental sciences 2014
Vo Huu Cong Sota Iwaya Yutaka Sakakibara

Treatments of estrogens such as Estrone (E1), Estradiol (E2) and Ethinylestradiol (EE2) were conducted using an electrolytic reactor equipped with multi-packed granular glassy carbon electrodes. Experimental results showed that E1, E2 and EE2 were oxidized in the range of 0.45-0.85 V and were removed through electro-polymerization. Observed data from continuous experiments were in good agreemen...

Journal: :Environmental toxicology and chemistry 2009
June-Woo Park Amber R Tompsett Xiaowei Zhang John L Newsted Paul D Jones Doris W T Au Richard Kong Rudolf S S Wu John P Giesy Markus Hecker

In an earlier study, we described the development of fluorescence in situ hybridization (FISH) using confocal microscopy to localize and quantify gene expression in fish. Here, we report the results of FISH application to investigate effects of model endocrine-disrupting chemicals (EDCs), 17alpha-ethinylestradiol (EE2) and 17beta-trenbolone (TB), on expressions of EDC-responsive genes in Japane...

Journal: :Green chemistry : an international journal and green chemistry resource : GC 2015
Teresa B V Dinis Helena Passos Diana L D Lima Valdemar I Esteves João A P Coutinho Mara G Freire

Ethinylestradiol (EE2) is a synthetic hormone that has been recognized as one of the most prominent endocrine disruptors found in the aqueous environment. Nevertheless, the low content of EE2 in wastewater makes its identification/quantification unfeasible - a major drawback for the evaluation of its persistence and environmental impact. In this context, a novel extraction/concentration method ...

2014
Jingying Hu Shaoyang Sun Meng Guo Houyan Song

BACKGROUND Various chemicals released into the aquatic environment adversely affect the reproductive system of fish, particularly by changing gonad structure and function. 17alpha-ethinylestradiol (EE2) is a potent environmental estrogen that disrupts sexual differentiation and normal reproduction in fish. Previous studies have shown that exposure to endocrine-disrupting chemicals (EDCs) disrup...

2013
Emily Rose Kimberly A Paczolt Adam G Jones

Environmental estrogens have been shown to affect populations of aquatic organisms in devastating ways, including feminization of males, alterations in mating behaviors, and disruption of sexual selection. Studies have shown 17α-ethinylestradiol (EE2) exposure to induce female-like secondary sexual traits in male Gulf pipefish, changing how females perceive affected males. We aimed to understan...

Journal: :Acta chimica Slovenica 2010
Jana Nakrst Mirjana Bistan Tatjana Tišler Zagorc-Končan Jana Andreja Zgajnar-Gotvajn

Presented research has been focused on the effectiveness of degradation of natural (17-estradiol - E2) and synthetic (17α-ethinylestradiol - EE2) hormones with Fenton's oxidation. Numerous studies have demonstrated, that the impact of hormones on organisms was shown already at environmental concentrations close to 1 pg L-1, so their effective removal from wastewaters is important. Fenton's oxi...

Journal: :Hormones and Behavior 2015
Kristina Volkova Nasim Reyhanian Caspillo Tove Porseryd Stefan Hallgren Patrik Dinnétz Inger Porsch-Hällström

Exposure to estrogenic endocrine disruptors (EDCs) during development affects fertility, reproductive and non-reproductive behavior in mammals and fish. These effects can also be transferred to coming generations. In fish, the effects of developmental EDC exposure on non-reproductive behavior are less well studied. Here, we analyze the effects of 17α-ethinylestradiol (EE2) on anxiety, shoaling ...

2012
Frauke Hoffmann Werner Kloas

The main component of classical contraceptives, 17α-ethinylestradiol (EE2), has high estrogenic activity even at environmentally relevant concentrations. Although estrogenic endocrine disrupting compounds are assumed to contribute to the worldwide decline of amphibian populations by adverse effects on sexual differentiation, evidence for EE2 affecting amphibian mating behaviour is lacking. In t...

Journal: :Journal of environmental sciences 2007
Yi-Qi Zhou Zi-Jian Wang Ning Jia

N,O-bis(trimethylsily)trifluoroacetamide (BSTFA) and N-methyl-N(trimethylsily) trifluoroacetamide (MSTFA) are common derivatization reagents used in the GC-MS analysis of estrogen steroids such as estrone (El) and 17alpha-ethinylestradiol (EE2). In this study, three trimethylsilyl (TMS) steroid derivatives, mono- and di-trimethylsilyl EE2 and mono-trimethylsilyl E1, were observed during the der...

Journal: :Marine pollution bulletin 2017
Victoria A Sleight Adil Bakir Richard C Thompson Theodore B Henry

Microplastics (MPs) are prevalent in marine ecosystems. Because toxicants (termed here "co-contaminants") can sorb to MPs, there is potential for MPs to alter co-contaminant bioavailability. Our objective was to demonstrate sorption of two co-contaminants with different physicochemistries [phenanthrene (Phe), log10Kow=4.57; and 17α-ethinylestradiol (EE2), log10Kow=3.67] to MPs; and assess wheth...

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