Kelly Sullivan

Affiliations: 
Biomedical Engineering Tufts University, Boston 
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Noshadi I, Hong S, Sullivan KE, et al. (2017) In vitro and in vivo analysis of visible light crosslinkable gelatin methacryloyl (GelMA) hydrogels. Biomaterials Science
Quinn KP, Sullivan KE, Liu Z, et al. (2016) Optical metrics of the extracellular matrix predict compositional and mechanical changes after myocardial infarction. Scientific Reports. 6: 35823
Gao AE, Sullivan KE, Black LD. (2016) Lysyl oxidase expression in cardiac fibroblasts is regulated by α2β1 integrin interactions with the cellular microenvironment. Biochemical and Biophysical Research Communications
Sullivan KE, Burns LJ, Black LD. (2015) An in vitro model for the assessment of stem cell fate following implantation within the infarct microenvironment identifies ISL-1 expression as the strongest predictor of c-Kit(+) cardiac progenitor cells' therapeutic potential. Journal of Molecular and Cellular Cardiology. 88: 91-100
Williams C, Budina E, Stoppel WL, et al. (2015) Cardiac extracellular matrix-fibrin hybrid scaffolds with tunable properties for cardiovascular tissue engineering. Acta Biomaterialia. 14: 84-95
Sullivan KE, Quinn KP, Tang KM, et al. (2014) Extracellular matrix remodeling following myocardial infarction influences the therapeutic potential of mesenchymal stem cells. Stem Cell Research & Therapy. 5: 14
Gershlak JR, Resnikoff JI, Sullivan KE, et al. (2013) Mesenchymal stem cells ability to generate traction stress in response to substrate stiffness is modulated by the changing extracellular matrix composition of the heart during development. Biochemical and Biophysical Research Communications. 439: 161-6
Sullivan KE, Black LD. (2013) The role of cardiac fibroblasts in extracellular matrix-mediated signaling during normal and pathological cardiac development. Journal of Biomechanical Engineering. 135: 71001
Yuan Ye K, Sullivan KE, Black LD. (2011) Encapsulation of cardiomyocytes in a fibrin hydrogel for cardiac tissue engineering. Journal of Visualized Experiments : Jove
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