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Biomechanical and transcriptional evidence that smooth muscle cell death drives an osteochondrogenic phenotype and severe proximal vascular disease in progeria


Journal article


Sae-Il Murtada, Y. Kawamura, C. Cavinato, Mo Wang, A. Ramachandra, B. Spronck, David S. Li, G. Tellides, J. Humphrey
Biomechanics and Modeling in Mechanobiology, 2023

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APA   Click to copy
Murtada, S.-I., Kawamura, Y., Cavinato, C., Wang, M., Ramachandra, A., Spronck, B., … Humphrey, J. (2023). Biomechanical and transcriptional evidence that smooth muscle cell death drives an osteochondrogenic phenotype and severe proximal vascular disease in progeria. Biomechanics and Modeling in Mechanobiology.


Chicago/Turabian   Click to copy
Murtada, Sae-Il, Y. Kawamura, C. Cavinato, Mo Wang, A. Ramachandra, B. Spronck, David S. Li, G. Tellides, and J. Humphrey. “Biomechanical and Transcriptional Evidence That Smooth Muscle Cell Death Drives an Osteochondrogenic Phenotype and Severe Proximal Vascular Disease in Progeria.” Biomechanics and Modeling in Mechanobiology (2023).


MLA   Click to copy
Murtada, Sae-Il, et al. “Biomechanical and Transcriptional Evidence That Smooth Muscle Cell Death Drives an Osteochondrogenic Phenotype and Severe Proximal Vascular Disease in Progeria.” Biomechanics and Modeling in Mechanobiology, 2023.


BibTeX   Click to copy

@article{sae-il2023a,
  title = {Biomechanical and transcriptional evidence that smooth muscle cell death drives an osteochondrogenic phenotype and severe proximal vascular disease in progeria},
  year = {2023},
  journal = {Biomechanics and Modeling in Mechanobiology},
  author = {Murtada, Sae-Il and Kawamura, Y. and Cavinato, C. and Wang, Mo and Ramachandra, A. and Spronck, B. and Li, David S. and Tellides, G. and Humphrey, J.}
}


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