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Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy

OBJECTIVE: To develop a novel prenatal assay based on selective analysis of cell-free DNA in maternal blood for evaluation of fetal Trisomy 21 (T21) and Trisomy 18 (T18). METHODS: Two hundred ninety-eight pregnancies, including 39 T21 and seven T18 confirmed fetal aneuploidies, were analyzed using a...

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Autores principales: Sparks, Andrew B, Wang, Eric T, Struble, Craig A, Barrett, Wade, Stokowski, Renee, McBride, Celeste, Zahn, Jacob, Lee, Kevin, Shen, Naiping, Doshi, Jigna, Sun, Michel, Garrison, Jill, Sandler, Jay, Hollemon, Desiree, Pattee, Patrick, Tomita-Mitchell, Aoy, Mitchell, Michael, Stuelpnagel, John, Song, Ken, Oliphant, Arnold
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3500507/
https://www.ncbi.nlm.nih.gov/pubmed/22223233
http://dx.doi.org/10.1002/pd.2922
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author Sparks, Andrew B
Wang, Eric T
Struble, Craig A
Barrett, Wade
Stokowski, Renee
McBride, Celeste
Zahn, Jacob
Lee, Kevin
Shen, Naiping
Doshi, Jigna
Sun, Michel
Garrison, Jill
Sandler, Jay
Hollemon, Desiree
Pattee, Patrick
Tomita-Mitchell, Aoy
Mitchell, Michael
Stuelpnagel, John
Song, Ken
Oliphant, Arnold
author_facet Sparks, Andrew B
Wang, Eric T
Struble, Craig A
Barrett, Wade
Stokowski, Renee
McBride, Celeste
Zahn, Jacob
Lee, Kevin
Shen, Naiping
Doshi, Jigna
Sun, Michel
Garrison, Jill
Sandler, Jay
Hollemon, Desiree
Pattee, Patrick
Tomita-Mitchell, Aoy
Mitchell, Michael
Stuelpnagel, John
Song, Ken
Oliphant, Arnold
author_sort Sparks, Andrew B
collection PubMed
description OBJECTIVE: To develop a novel prenatal assay based on selective analysis of cell-free DNA in maternal blood for evaluation of fetal Trisomy 21 (T21) and Trisomy 18 (T18). METHODS: Two hundred ninety-eight pregnancies, including 39 T21 and seven T18 confirmed fetal aneuploidies, were analyzed using a novel, highly multiplexed assay, termed digital analysis of selected regions (DANSR™). Cell-free DNA from maternal blood samples was analyzed using DANSR assays for loci on chromosomes 21 and 18. Products from 96 separate patients were pooled and sequenced together. A standard Z-test of chromosomal proportions was used to distinguish aneuploid samples from average-risk pregnancy samples. DANSR aneuploidy discrimination was evaluated at various sequence depths. RESULTS: At the lowest sequencing depth, corresponding to 204 000 sequencing counts per sample, average-risk cases where distinguished from T21 and T18 cases, with Z statistics for all cases exceeding 3.6. Increasing the sequencing depth to 410 000 counts per sample substantially improved separation of aneuploid and average-risk cases. A further increase to 620 000 counts per sample resulted in only marginal improvement. This depth of sequencing represents less than 5% of that required by massively parallel shotgun sequencing approaches. CONCLUSION: Digital analysis of selected regions enables highly accurate, cost efficient, and scalable noninvasive fetal aneuploidy assessment. © 2012 John Wiley & Sons, Ltd.
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spelling pubmed-35005072012-11-20 Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy Sparks, Andrew B Wang, Eric T Struble, Craig A Barrett, Wade Stokowski, Renee McBride, Celeste Zahn, Jacob Lee, Kevin Shen, Naiping Doshi, Jigna Sun, Michel Garrison, Jill Sandler, Jay Hollemon, Desiree Pattee, Patrick Tomita-Mitchell, Aoy Mitchell, Michael Stuelpnagel, John Song, Ken Oliphant, Arnold Prenat Diagn Original Articles OBJECTIVE: To develop a novel prenatal assay based on selective analysis of cell-free DNA in maternal blood for evaluation of fetal Trisomy 21 (T21) and Trisomy 18 (T18). METHODS: Two hundred ninety-eight pregnancies, including 39 T21 and seven T18 confirmed fetal aneuploidies, were analyzed using a novel, highly multiplexed assay, termed digital analysis of selected regions (DANSR™). Cell-free DNA from maternal blood samples was analyzed using DANSR assays for loci on chromosomes 21 and 18. Products from 96 separate patients were pooled and sequenced together. A standard Z-test of chromosomal proportions was used to distinguish aneuploid samples from average-risk pregnancy samples. DANSR aneuploidy discrimination was evaluated at various sequence depths. RESULTS: At the lowest sequencing depth, corresponding to 204 000 sequencing counts per sample, average-risk cases where distinguished from T21 and T18 cases, with Z statistics for all cases exceeding 3.6. Increasing the sequencing depth to 410 000 counts per sample substantially improved separation of aneuploid and average-risk cases. A further increase to 620 000 counts per sample resulted in only marginal improvement. This depth of sequencing represents less than 5% of that required by massively parallel shotgun sequencing approaches. CONCLUSION: Digital analysis of selected regions enables highly accurate, cost efficient, and scalable noninvasive fetal aneuploidy assessment. © 2012 John Wiley & Sons, Ltd. John Wiley & Sons, Ltd 2012-01 2012-01-06 /pmc/articles/PMC3500507/ /pubmed/22223233 http://dx.doi.org/10.1002/pd.2922 Text en © 2012 John Wiley & Sons, Ltd. http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Articles
Sparks, Andrew B
Wang, Eric T
Struble, Craig A
Barrett, Wade
Stokowski, Renee
McBride, Celeste
Zahn, Jacob
Lee, Kevin
Shen, Naiping
Doshi, Jigna
Sun, Michel
Garrison, Jill
Sandler, Jay
Hollemon, Desiree
Pattee, Patrick
Tomita-Mitchell, Aoy
Mitchell, Michael
Stuelpnagel, John
Song, Ken
Oliphant, Arnold
Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy
title Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy
title_full Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy
title_fullStr Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy
title_full_unstemmed Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy
title_short Selective analysis of cell-free DNA in maternal blood for evaluation of fetal trisomy
title_sort selective analysis of cell-free dna in maternal blood for evaluation of fetal trisomy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3500507/
https://www.ncbi.nlm.nih.gov/pubmed/22223233
http://dx.doi.org/10.1002/pd.2922
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