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Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential
Recently gene expression studies have been multiplied at an accelerated rate by the use of high-density microarrays. By assaying thousands of transcripts at a time, microarrays have led to the discovery of dozens of genes involved in particular biochemical processes, for example, the response of a t...
Autores principales: | , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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National Institute of Environmental Health Sciences
2005
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1280396/ https://www.ncbi.nlm.nih.gov/pubmed/16140622 http://dx.doi.org/10.1289/ehp.7843 |
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author | Naciff, Jorge M. Richardson, Brian D. Oliver, Kerry G. Jump, M. Lynn Torontali, Suzanne M. Juhlin, Kenton D. Carr, Gregory J. Paine, Jennifer R. Tiesman, Jay P. Daston, George P. |
author_facet | Naciff, Jorge M. Richardson, Brian D. Oliver, Kerry G. Jump, M. Lynn Torontali, Suzanne M. Juhlin, Kenton D. Carr, Gregory J. Paine, Jennifer R. Tiesman, Jay P. Daston, George P. |
author_sort | Naciff, Jorge M. |
collection | PubMed |
description | Recently gene expression studies have been multiplied at an accelerated rate by the use of high-density microarrays. By assaying thousands of transcripts at a time, microarrays have led to the discovery of dozens of genes involved in particular biochemical processes, for example, the response of a tissue/organ to a given chemical with therapeutic or toxic properties. The next step in these studies is to focus on the response of a subset of relevant genes to verify or refine potential therapeutic or toxic properties. We have developed a sensitive, high-throughput gene expression assay for this purpose. In this assay, based on the Luminex xMAP system, carefully selected oligonucleotides were covalently linked to fluorescently coded microspheres that are hybridized to biotinylated cRNA followed by amplification of the signal, which results in a rapid, sensitive, multiplexed assay platform. Using this system, we have developed an RNA expression profiling assay specific for 17 estrogen-responsive transcripts and three controls. This assay can evaluate up to 100 distinct analytes simultaneously in a single sample, in a 96-well plate format. This system has improved sensitivity versus existing microsphere-based assays and has sensitivity and precision comparable with or better than microarray technology. We have achieved detection levels down to 1 amol, detecting rare messages in complex cRNA samples, using as little as 2.5 μg starting cRNA. This assay offers increased throughput with decreased costs compared with existing microarray technologies, with the trade-off being in the total number of transcripts that can be analyzed. |
format | Text |
id | pubmed-1280396 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2005 |
publisher | National Institute of Environmental Health Sciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-12803962005-11-30 Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential Naciff, Jorge M. Richardson, Brian D. Oliver, Kerry G. Jump, M. Lynn Torontali, Suzanne M. Juhlin, Kenton D. Carr, Gregory J. Paine, Jennifer R. Tiesman, Jay P. Daston, George P. Environ Health Perspect Research Recently gene expression studies have been multiplied at an accelerated rate by the use of high-density microarrays. By assaying thousands of transcripts at a time, microarrays have led to the discovery of dozens of genes involved in particular biochemical processes, for example, the response of a tissue/organ to a given chemical with therapeutic or toxic properties. The next step in these studies is to focus on the response of a subset of relevant genes to verify or refine potential therapeutic or toxic properties. We have developed a sensitive, high-throughput gene expression assay for this purpose. In this assay, based on the Luminex xMAP system, carefully selected oligonucleotides were covalently linked to fluorescently coded microspheres that are hybridized to biotinylated cRNA followed by amplification of the signal, which results in a rapid, sensitive, multiplexed assay platform. Using this system, we have developed an RNA expression profiling assay specific for 17 estrogen-responsive transcripts and three controls. This assay can evaluate up to 100 distinct analytes simultaneously in a single sample, in a 96-well plate format. This system has improved sensitivity versus existing microsphere-based assays and has sensitivity and precision comparable with or better than microarray technology. We have achieved detection levels down to 1 amol, detecting rare messages in complex cRNA samples, using as little as 2.5 μg starting cRNA. This assay offers increased throughput with decreased costs compared with existing microarray technologies, with the trade-off being in the total number of transcripts that can be analyzed. National Institute of Environmental Health Sciences 2005-09 2005-05-12 /pmc/articles/PMC1280396/ /pubmed/16140622 http://dx.doi.org/10.1289/ehp.7843 Text en http://creativecommons.org/publicdomain/mark/1.0/ Publication of EHP lies in the public domain and is therefore without copyright. All text from EHP may be reprinted freely. Use of materials published in EHP should be acknowledged (for example, ?Reproduced with permission from Environmental Health Perspectives?); pertinent reference information should be provided for the article from which the material was reproduced. Articles from EHP, especially the News section, may contain photographs or illustrations copyrighted by other commercial organizations or individuals that may not be used without obtaining prior approval from the holder of the copyright. |
spellingShingle | Research Naciff, Jorge M. Richardson, Brian D. Oliver, Kerry G. Jump, M. Lynn Torontali, Suzanne M. Juhlin, Kenton D. Carr, Gregory J. Paine, Jennifer R. Tiesman, Jay P. Daston, George P. Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential |
title | Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential |
title_full | Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential |
title_fullStr | Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential |
title_full_unstemmed | Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential |
title_short | Design of a Microsphere-Based High-Throughput Gene Expression Assay to Determine Estrogenic Potential |
title_sort | design of a microsphere-based high-throughput gene expression assay to determine estrogenic potential |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1280396/ https://www.ncbi.nlm.nih.gov/pubmed/16140622 http://dx.doi.org/10.1289/ehp.7843 |
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