Development of a synthetic gene network to modulate gene expression by mechanical forces

10.1038/srep29643

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Main Authors: Kis, Z, Rodin, T, Zafar, A, Lai, Z, Freke, G, Fleck, O, Del Rio Hernandez, A, Towhidi, L, Pedrigi, R.M, Homma, T, Krams, R
Other Authors: BIOMEDICAL ENGINEERING
Format: Article
Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/182449
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spelling sg-nus-scholar.10635-1824492023-10-31T20:57:58Z Development of a synthetic gene network to modulate gene expression by mechanical forces Kis, Z Rodin, T Zafar, A Lai, Z Freke, G Fleck, O Del Rio Hernandez, A Towhidi, L Pedrigi, R.M Homma, T Krams, R BIOMEDICAL ENGINEERING KLF2 protein, human kruppel like factor cell culture cell survival endothelium cell gene expression gene expression regulation gene regulatory network genetic transfection genetics HeLa cell line human mechanical stress mechanotransduction metabolism transcription initiation Cell Survival Cells, Cultured Endothelial Cells Gene Expression Gene Expression Regulation Gene Regulatory Networks HeLa Cells Humans Kruppel-Like Transcription Factors Mechanotransduction, Cellular Stress, Mechanical Transcriptional Activation Transfection 10.1038/srep29643 Scientific Reports 6 29643 2020-10-31T11:30:22Z 2020-10-31T11:30:22Z 2016 Article Kis, Z, Rodin, T, Zafar, A, Lai, Z, Freke, G, Fleck, O, Del Rio Hernandez, A, Towhidi, L, Pedrigi, R.M, Homma, T, Krams, R (2016). Development of a synthetic gene network to modulate gene expression by mechanical forces. Scientific Reports 6 : 29643. ScholarBank@NUS Repository. https://doi.org/10.1038/srep29643 2045-2322 https://scholarbank.nus.edu.sg/handle/10635/182449 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic KLF2 protein, human
kruppel like factor
cell culture
cell survival
endothelium cell
gene expression
gene expression regulation
gene regulatory network
genetic transfection
genetics
HeLa cell line
human
mechanical stress
mechanotransduction
metabolism
transcription initiation
Cell Survival
Cells, Cultured
Endothelial Cells
Gene Expression
Gene Expression Regulation
Gene Regulatory Networks
HeLa Cells
Humans
Kruppel-Like Transcription Factors
Mechanotransduction, Cellular
Stress, Mechanical
Transcriptional Activation
Transfection
spellingShingle KLF2 protein, human
kruppel like factor
cell culture
cell survival
endothelium cell
gene expression
gene expression regulation
gene regulatory network
genetic transfection
genetics
HeLa cell line
human
mechanical stress
mechanotransduction
metabolism
transcription initiation
Cell Survival
Cells, Cultured
Endothelial Cells
Gene Expression
Gene Expression Regulation
Gene Regulatory Networks
HeLa Cells
Humans
Kruppel-Like Transcription Factors
Mechanotransduction, Cellular
Stress, Mechanical
Transcriptional Activation
Transfection
Kis, Z
Rodin, T
Zafar, A
Lai, Z
Freke, G
Fleck, O
Del Rio Hernandez, A
Towhidi, L
Pedrigi, R.M
Homma, T
Krams, R
Development of a synthetic gene network to modulate gene expression by mechanical forces
description 10.1038/srep29643
author2 BIOMEDICAL ENGINEERING
author_facet BIOMEDICAL ENGINEERING
Kis, Z
Rodin, T
Zafar, A
Lai, Z
Freke, G
Fleck, O
Del Rio Hernandez, A
Towhidi, L
Pedrigi, R.M
Homma, T
Krams, R
format Article
author Kis, Z
Rodin, T
Zafar, A
Lai, Z
Freke, G
Fleck, O
Del Rio Hernandez, A
Towhidi, L
Pedrigi, R.M
Homma, T
Krams, R
author_sort Kis, Z
title Development of a synthetic gene network to modulate gene expression by mechanical forces
title_short Development of a synthetic gene network to modulate gene expression by mechanical forces
title_full Development of a synthetic gene network to modulate gene expression by mechanical forces
title_fullStr Development of a synthetic gene network to modulate gene expression by mechanical forces
title_full_unstemmed Development of a synthetic gene network to modulate gene expression by mechanical forces
title_sort development of a synthetic gene network to modulate gene expression by mechanical forces
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/182449
_version_ 1781792601855229952