Michelle I. Vitolo
Affiliations: | 2007-2008 | Biochemistry & Molecular Biology | University of Maryland School of Medicine, Baltimore, MD, United States |
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Parents
Sign in to add mentorDavid J. Weber | post-doc | 2007-2008 | University of Maryland Medical School |
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Publications
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Pratt SJP, Lee RM, Chang KT, et al. (2020) Mechanoactivation of NOX2-generated ROS elicits persistent TRPM8 Ca signals that are inhibited by oncogenic KRas. Proceedings of the National Academy of Sciences of the United States of America |
Pratt SJ, Lee RM, Hernandez-Ochoa EO, et al. (2020) Abstract 2575: Mechanoactivation of NOX2-generated ROS elicits persistent TRPM8 Ca2+ signals that are inhibited by oncogenic KRas Immunology. 80: 2575-2575 |
Pratt SJP, Hernández-Ochoa EO, Lee RM, et al. (2018) Real-time scratch assay reveals mechanisms of early calcium signaling in breast cancer cells in response to wounding. Oncotarget. 9: 25008-25024 |
Linthicum W, Thanh MH, Vitolo MI, et al. (2018) Effects of PTEN Loss and Activated KRAS Overexpression on Mechanical Properties of Breast Epithelial Cells. International Journal of Molecular Sciences. 19 |
Yu Y, Suryo Rahmanto Y, Lee MH, et al. (2018) Inhibition of ovarian tumor cell invasiveness by targeting SYK in the tyrosine kinase signaling pathway. Oncogene |
Hessler LK, Boggs AE, Whipple RA, et al. (2016) Abstract LB-342: HDAC inhibition promotes tubulin-independent cancer cell migration Cancer Research. 76 |
Thompson KN, Whipple RA, Yoon JR, et al. (2015) The combinatorial activation of the PI3K and Ras/MAPK pathways is sufficient for aggressive tumor formation, while individual pathway activation supports cell persistence. Oncotarget |
Chakrabarti KR, Whipple RA, Boggs AE, et al. (2015) Pharmacologic regulation of AMPK in breast cancer affects cytoskeletal properties involved with microtentacle formation and re-attachment. Oncotarget |
Bhandary L, Whipple RA, Vitolo MI, et al. (2015) ROCK inhibition promotes microtentacles that enhance reattachment of breast cancer cells. Oncotarget. 6: 6251-66 |
Shriver M, Stroka KM, Vitolo MI, et al. (2015) Loss of giant obscurins from breast epithelium promotes epithelial-to-mesenchymal transition, tumorigenicity and metastasis Oncogene. 34: 4248-4259 |