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Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens.
In this article we report a simple and efficient method for detecting nonsteroidal estrogens in a biologic sample. This method uses polyclonal antibodies to estradiol (E2) to immunoprecipitate these major biologically active steroidal estrogens, leaving behind the nonsteroidal estrogens, which are t...
Autores principales: | , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
Publicado: |
2002
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1240950/ https://www.ncbi.nlm.nih.gov/pubmed/12153760 |
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author | Natarajan, Kala Overstreet, James W Rogers, Jane M Denison, Michael S Chen, Jiangang Lohstroh, Peter N McConnell, Daniel S Lasley, Bill L |
author_facet | Natarajan, Kala Overstreet, James W Rogers, Jane M Denison, Michael S Chen, Jiangang Lohstroh, Peter N McConnell, Daniel S Lasley, Bill L |
author_sort | Natarajan, Kala |
collection | PubMed |
description | In this article we report a simple and efficient method for detecting nonsteroidal estrogens in a biologic sample. This method uses polyclonal antibodies to estradiol (E2) to immunoprecipitate these major biologically active steroidal estrogens, leaving behind the nonsteroidal estrogens, which are then detected in a cell-based transcriptional activation bioassay for estrogen receptor agonist. The immunoprecipitation method efficiently removed 99% of radiolabeled E2 and estrone (E1) from human serum. In experiments in which supraphysiologic concentrations of E2 and E1 to human serum, all of the immunoreactive estrogens were still removed by the immunoprecipitation protocol. We carried out an in vivo validation study of this method in which we treated female macaques with the xenoestrogen nonylphenol (NP), during the late follicular phase of the menstrual cycle. We used blood samples collected before and after treatment to evaluate and characterize endogenous and exogenous serum estrogens. An immunoassay for E2 did not detect the NP in treated monkeys. The cell-based bioassay also did not detect the estrogenic activity of NP because of its saturation by the endogenous serum steroidal estrogens. However, when steroidal estrogens were removed by immunoprecipitation, we detected the estrogenic activity of NP in the bioassay. Thus, this approach is appropriate for detecting exogenous, nonsteroidal estrogens in serum samples. |
format | Text |
id | pubmed-1240950 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2002 |
record_format | MEDLINE/PubMed |
spelling | pubmed-12409502005-11-08 Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. Natarajan, Kala Overstreet, James W Rogers, Jane M Denison, Michael S Chen, Jiangang Lohstroh, Peter N McConnell, Daniel S Lasley, Bill L Environ Health Perspect Research Article In this article we report a simple and efficient method for detecting nonsteroidal estrogens in a biologic sample. This method uses polyclonal antibodies to estradiol (E2) to immunoprecipitate these major biologically active steroidal estrogens, leaving behind the nonsteroidal estrogens, which are then detected in a cell-based transcriptional activation bioassay for estrogen receptor agonist. The immunoprecipitation method efficiently removed 99% of radiolabeled E2 and estrone (E1) from human serum. In experiments in which supraphysiologic concentrations of E2 and E1 to human serum, all of the immunoreactive estrogens were still removed by the immunoprecipitation protocol. We carried out an in vivo validation study of this method in which we treated female macaques with the xenoestrogen nonylphenol (NP), during the late follicular phase of the menstrual cycle. We used blood samples collected before and after treatment to evaluate and characterize endogenous and exogenous serum estrogens. An immunoassay for E2 did not detect the NP in treated monkeys. The cell-based bioassay also did not detect the estrogenic activity of NP because of its saturation by the endogenous serum steroidal estrogens. However, when steroidal estrogens were removed by immunoprecipitation, we detected the estrogenic activity of NP in the bioassay. Thus, this approach is appropriate for detecting exogenous, nonsteroidal estrogens in serum samples. 2002-08 /pmc/articles/PMC1240950/ /pubmed/12153760 Text en |
spellingShingle | Research Article Natarajan, Kala Overstreet, James W Rogers, Jane M Denison, Michael S Chen, Jiangang Lohstroh, Peter N McConnell, Daniel S Lasley, Bill L Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
title | Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
title_full | Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
title_fullStr | Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
title_full_unstemmed | Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
title_short | Detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
title_sort | detection of xenoestrogens in serum after immunoprecipitation of endogenous steroidal estrogens. |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1240950/ https://www.ncbi.nlm.nih.gov/pubmed/12153760 |
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