Cargando…

Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface

During mesenchymal condensation, the initial step of skeletogenesis, transduction of minute mechanical forces to the nucleus is associated with up or down-regulation of genes, ultimately resulting in formation of the skeletal template and appropriate cell lineage commitment. The summation of these b...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Min Jae, Brady-Kalnay, Susann M., McBride, Sara H., Phillips-Mason, Polly, Dean, David, Knothe Tate, Melissa L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3438189/
https://www.ncbi.nlm.nih.gov/pubmed/22970134
http://dx.doi.org/10.1371/journal.pone.0043601
_version_ 1782242884009852928
author Song, Min Jae
Brady-Kalnay, Susann M.
McBride, Sara H.
Phillips-Mason, Polly
Dean, David
Knothe Tate, Melissa L.
author_facet Song, Min Jae
Brady-Kalnay, Susann M.
McBride, Sara H.
Phillips-Mason, Polly
Dean, David
Knothe Tate, Melissa L.
author_sort Song, Min Jae
collection PubMed
description During mesenchymal condensation, the initial step of skeletogenesis, transduction of minute mechanical forces to the nucleus is associated with up or down-regulation of genes, ultimately resulting in formation of the skeletal template and appropriate cell lineage commitment. The summation of these biophysical cues affects the cell's shape and fate. Here, we predict and measure surface strain, in live stem cells, in response to controlled delivery of stresses, providing a platform to direct short-term structure - function relationships and long-term fate decisions. We measure local strains on stem cell surfaces using fluorescent microbeads coated with Concanavalin A. During delivery of controlled mechanical stresses, 4-Dimensional (x,y,z,t) displacements of the bound beads are measured as surface strains using confocal microscopy and image reconstruction. Similarly, micro-particle image velocimetry (μ-piv) is used to track flow fields with fluorescent microspheres. The measured flow velocity gradient is used to calculate stress imparted by fluid drag at the surface of the cell. We compare strain measured on cell surfaces with those predicted computationally using parametric estimates of the cell's elastic and shear modulus. Finally, cross-correlating stress - strain data to measures of gene transcription marking lineage commitment enables us to create stress - strain - fate maps, for live stem cells in situ. The studies show significant correlations between live stem cell stress - strain relationships and lineage commitment. The method presented here provides a novel means to probe the live stem cell's mechanome, enabling mechanistic studies of the role of mechanics in lineage commitment as it unfolds.
format Online
Article
Text
id pubmed-3438189
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34381892012-09-11 Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface Song, Min Jae Brady-Kalnay, Susann M. McBride, Sara H. Phillips-Mason, Polly Dean, David Knothe Tate, Melissa L. PLoS One Research Article During mesenchymal condensation, the initial step of skeletogenesis, transduction of minute mechanical forces to the nucleus is associated with up or down-regulation of genes, ultimately resulting in formation of the skeletal template and appropriate cell lineage commitment. The summation of these biophysical cues affects the cell's shape and fate. Here, we predict and measure surface strain, in live stem cells, in response to controlled delivery of stresses, providing a platform to direct short-term structure - function relationships and long-term fate decisions. We measure local strains on stem cell surfaces using fluorescent microbeads coated with Concanavalin A. During delivery of controlled mechanical stresses, 4-Dimensional (x,y,z,t) displacements of the bound beads are measured as surface strains using confocal microscopy and image reconstruction. Similarly, micro-particle image velocimetry (μ-piv) is used to track flow fields with fluorescent microspheres. The measured flow velocity gradient is used to calculate stress imparted by fluid drag at the surface of the cell. We compare strain measured on cell surfaces with those predicted computationally using parametric estimates of the cell's elastic and shear modulus. Finally, cross-correlating stress - strain data to measures of gene transcription marking lineage commitment enables us to create stress - strain - fate maps, for live stem cells in situ. The studies show significant correlations between live stem cell stress - strain relationships and lineage commitment. The method presented here provides a novel means to probe the live stem cell's mechanome, enabling mechanistic studies of the role of mechanics in lineage commitment as it unfolds. Public Library of Science 2012-09-10 /pmc/articles/PMC3438189/ /pubmed/22970134 http://dx.doi.org/10.1371/journal.pone.0043601 Text en © 2012 Song et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Song, Min Jae
Brady-Kalnay, Susann M.
McBride, Sara H.
Phillips-Mason, Polly
Dean, David
Knothe Tate, Melissa L.
Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface
title Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface
title_full Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface
title_fullStr Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface
title_full_unstemmed Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface
title_short Mapping the Mechanome of Live Stem Cells Using a Novel Method to Measure Local Strain Fields In Situ at the Fluid-Cell Interface
title_sort mapping the mechanome of live stem cells using a novel method to measure local strain fields in situ at the fluid-cell interface
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3438189/
https://www.ncbi.nlm.nih.gov/pubmed/22970134
http://dx.doi.org/10.1371/journal.pone.0043601
work_keys_str_mv AT songminjae mappingthemechanomeoflivestemcellsusinganovelmethodtomeasurelocalstrainfieldsinsituatthefluidcellinterface
AT bradykalnaysusannm mappingthemechanomeoflivestemcellsusinganovelmethodtomeasurelocalstrainfieldsinsituatthefluidcellinterface
AT mcbridesarah mappingthemechanomeoflivestemcellsusinganovelmethodtomeasurelocalstrainfieldsinsituatthefluidcellinterface
AT phillipsmasonpolly mappingthemechanomeoflivestemcellsusinganovelmethodtomeasurelocalstrainfieldsinsituatthefluidcellinterface
AT deandavid mappingthemechanomeoflivestemcellsusinganovelmethodtomeasurelocalstrainfieldsinsituatthefluidcellinterface
AT knothetatemelissal mappingthemechanomeoflivestemcellsusinganovelmethodtomeasurelocalstrainfieldsinsituatthefluidcellinterface