Sarah Sundelacruz, Ph.D.

Affiliations: 
2011 Biomedical Engineering Tufts University, Boston 
Area:
Biomedical Engineering, Cell Biology
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"Sarah Sundelacruz"
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David L. Kaplan grad student 2011 Tufts
 (Effects of electrophysiological manipulation on differentiation and wound healing capacity of human mesenchymal stem cells.)
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Publications

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Sundelacruz S, Moody AT, Levin M, et al. (2019) Membrane Potential Depolarization Alters Calcium Flux and Phosphate Signaling During Osteogenic Differentiation of Human Mesenchymal Stem Cells. Bioelectricity. 1: 56-66
Pai VP, Martyniuk CJ, Echeverri K, et al. (2016) Genome-wide analysis reveals conserved transcriptional responses downstream of resting potential change in Xenopus embryos, axolotl regeneration, and human mesenchymal cell differentiation. Regeneration (Oxford, England). 3: 3-25
Sundelacruz S, Levin M, Kaplan DL. (2015) Comparison of the depolarization response of human mesenchymal stem cells from different donors. Scientific Reports. 5: 18279
Sundelacruz S, Li C, Choi YJ, et al. (2013) Bioelectric modulation of wound healing in a 3D in vitro model of tissue-engineered bone. Biomaterials. 34: 6695-705
Sundelacruz S, Levin M, Kaplan DL. (2013) Depolarization alters phenotype, maintains plasticity of predifferentiated mesenchymal stem cells. Tissue Engineering. Part A. 19: 1889-908
Sundelacruz S, Levin M, Kaplan DL. (2013) Depolarization alters phenotype, maintains plasticity of pre-differentiated mesenchymal stem cells. Tissue Engineering. Part A
Sundelacruz S, Levin M, Kaplan DL. (2009) Role of membrane potential in the regulation of cell proliferation and differentiation Stem Cell Reviews and Reports. 5: 231-246
Sundelacruz S, Kaplan DL. (2009) Stem cell- and scaffold-based tissue engineering approaches to osteochondral regenerative medicine. Seminars in Cell & Developmental Biology. 20: 646-55
Sundelacruz S, Levin M, Kaplan DL. (2008) Membrane potential controls adipogenic and osteogenic differentiation of mesenchymal stem cells. Plos One. 3: e3737
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