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Advances in Experimental Medicine and Biology|October 29, 2018
Extracellular Matrix Stiffness Exists in a Feedback Loop that Drives Tumor ProgressionAllison K Simi, Mei-Fong Pang, Celeste M NelsonMethods in Molecular Biology (Clifton, N.J.)|November 1, 2016
A 3D Culture Model to Study How Fluid Pressure and Flow Affect the Behavior of Aggregates of Epithelial CellsAlexandra S Piotrowski-Daspit, Allison K Simi, Mei-Fong Pang, et al.Journal of Cell Science|March 29, 2018
Substratum stiffness tunes proliferation downstream of Wnt3a in part by regulating integrin-linked kinase and frizzled-1Siyang Han, Mei-Fong Pang, Celeste M NelsonMolecular Biology of the Cell|June 11, 2020
Epithelial tissue geometry directs emergence of bioelectric field and pattern of proliferationBrian B Silver, Abraham E Wolf, Junuk Lee, et al.Cancer Research|August 10, 2016
Tissue Stiffness and Hypoxia Modulate the Integrin-Linked Kinase ILK to Control Breast Cancer Stem-like CellsMei-Fong Pang, Michael J Siedlik, Siyang Han, et al.Developmental Cell|September 22, 2015
Localized Smooth Muscle Differentiation Is Essential for Epithelial Bifurcation during Branching Morphogenesis of the Mammalian LungHye Young Kim, Mei-Fong Pang, Victor D Varner, et al.Development (Cambridge, England)|August 3, 2019
Mesenchymal proteases and tissue fluidity remodel the extracellular matrix during airway epithelial branching in the embryonic avian lungJames W Spurlin, Michael J Siedlik, Bryan A Nerger, et al.Cancer Research|February 28, 2018
A Soft Microenvironment Protects from Failure of Midbody Abscission and Multinucleation Downstream of the EMT-Promoting Transcription Factor SnailAllison K Simi, Alişya A Anlaş, Melody Stallings-Mann, et al.Integrative Biology : Quantitative Biosciences From Nano to Macro|January 26, 2021
Matrix degradation and cell proliferation are coupled to promote invasion and escape from an engineered human breast microtumorEmann M Rabie, Sherry X Zhang, Andreas P Kourouklis, et al.Development (Cambridge, England)|November 1, 2017
Microfluidic chest cavities reveal that transmural pressure controls the rate of lung developmentCeleste M Nelson, Jason P Gleghorn, Mei-Fong Pang, et al.Pageof 17