Development of a synthetic gene network to modulate gene expression by mechanical forces
10.1038/srep29643
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2020
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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 |
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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 |
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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 |
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10.1038/srep29643 |
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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 |
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