RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells.
Self-assembling peptide hydrogels offer a novel 3-dimensional platform for many applications in cell culture and tissue engineering but are not compatible with current methods of RNA isolation; owing to interactions between RNA and the biomaterial. This study investigates the use of two techniques b...
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2018-01-01
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Online Access: | https://doi.org/10.1371/journal.pone.0197517 |
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doaj-fe3ad7a9354a47918de406596b4592992021-03-04T12:39:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01136e019751710.1371/journal.pone.0197517RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells.Kyle A BurgessVictoria L WorkmanMohamed A ElsawyAline F MillerDelvac OceandyAlberto SaianiSelf-assembling peptide hydrogels offer a novel 3-dimensional platform for many applications in cell culture and tissue engineering but are not compatible with current methods of RNA isolation; owing to interactions between RNA and the biomaterial. This study investigates the use of two techniques based on two different basic extraction principles: solution-based extraction and direct solid-state binding of RNA respectively, to extract RNA from cells encapsulated in four β-sheet forming self-assembling peptide hydrogels with varying net positive charge. RNA-peptide fibril interactions, rather than RNA-peptide molecular complexing, were found to interfere with the extraction process resulting in low yields. A column-based approach relying on RNA-specific binding was shown to be more suited to extracting RNA with higher purity from these peptide hydrogels owing to its reliance on strong specific RNA binding interactions which compete directly with RNA-peptide fibril interactions. In order to reduce the amount of fibrils present and improve RNA yields a broad spectrum enzyme solution-pronase-was used to partially digest the hydrogels before RNA extraction. This pre-treatment was shown to significantly increase the yield of RNA extracted, allowing downstream RT-qPCR to be performed.https://doi.org/10.1371/journal.pone.0197517 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kyle A Burgess Victoria L Workman Mohamed A Elsawy Aline F Miller Delvac Oceandy Alberto Saiani |
spellingShingle |
Kyle A Burgess Victoria L Workman Mohamed A Elsawy Aline F Miller Delvac Oceandy Alberto Saiani RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells. PLoS ONE |
author_facet |
Kyle A Burgess Victoria L Workman Mohamed A Elsawy Aline F Miller Delvac Oceandy Alberto Saiani |
author_sort |
Kyle A Burgess |
title |
RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells. |
title_short |
RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells. |
title_full |
RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells. |
title_fullStr |
RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells. |
title_full_unstemmed |
RNA extraction from self-assembling peptide hydrogels to allow qPCR analysis of encapsulated cells. |
title_sort |
rna extraction from self-assembling peptide hydrogels to allow qpcr analysis of encapsulated cells. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2018-01-01 |
description |
Self-assembling peptide hydrogels offer a novel 3-dimensional platform for many applications in cell culture and tissue engineering but are not compatible with current methods of RNA isolation; owing to interactions between RNA and the biomaterial. This study investigates the use of two techniques based on two different basic extraction principles: solution-based extraction and direct solid-state binding of RNA respectively, to extract RNA from cells encapsulated in four β-sheet forming self-assembling peptide hydrogels with varying net positive charge. RNA-peptide fibril interactions, rather than RNA-peptide molecular complexing, were found to interfere with the extraction process resulting in low yields. A column-based approach relying on RNA-specific binding was shown to be more suited to extracting RNA with higher purity from these peptide hydrogels owing to its reliance on strong specific RNA binding interactions which compete directly with RNA-peptide fibril interactions. In order to reduce the amount of fibrils present and improve RNA yields a broad spectrum enzyme solution-pronase-was used to partially digest the hydrogels before RNA extraction. This pre-treatment was shown to significantly increase the yield of RNA extracted, allowing downstream RT-qPCR to be performed. |
url |
https://doi.org/10.1371/journal.pone.0197517 |
work_keys_str_mv |
AT kyleaburgess rnaextractionfromselfassemblingpeptidehydrogelstoallowqpcranalysisofencapsulatedcells AT victorialworkman rnaextractionfromselfassemblingpeptidehydrogelstoallowqpcranalysisofencapsulatedcells AT mohamedaelsawy rnaextractionfromselfassemblingpeptidehydrogelstoallowqpcranalysisofencapsulatedcells AT alinefmiller rnaextractionfromselfassemblingpeptidehydrogelstoallowqpcranalysisofencapsulatedcells AT delvacoceandy rnaextractionfromselfassemblingpeptidehydrogelstoallowqpcranalysisofencapsulatedcells AT albertosaiani rnaextractionfromselfassemblingpeptidehydrogelstoallowqpcranalysisofencapsulatedcells |
_version_ |
1714801977092734976 |