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The Levin Lab
Peer-Reviewed Papers
Publications

Peer-Reviewed Papers

Cancer

Mathews, J., and Levin, M. (2023) Cancer’s unique bioelectric properties: from cells to body-wide networks, Comment on: “The distinguishing electrical properties of cancer cells” by Elisabetta Di Gregorio, Simone Israel, Michael Staelens, Gabriella Tankel, Karthik Shankar, and Jack A. Tuszynski, Physics of Life Reviews, 47: 113-115
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Masuelli, S., Real, S., McMillen, P., Oudin, M., Levin, M., and Roqué, M. (2023), The Yin and Yang of Breast Cancer: Ion Channels as Determinants of Left-Right Functional Differences, International Journal of Molecular Sciences, 24(13): 11121
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Mathews, J., Kuchling, F., Baez-Nieto, D., Diberardinis, M., Pan, J. Q., and Levin, M. (2022), Ion Channel Drugs Suppress Cancer Phenotype in NG108-15 and U87 Cells: Toward Novel Electroceuticals for Glioblastoma, Cancers 14(6): 1499
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Masuelli, S., Sebastian, R., Campoy, E., Branham, M. T., Marzese, D. M., Matthew, S., DeBlas, G., Rodolfo, A., Levin, M., and Roque, M. (2022), When left does not seem right: epigenetic and bioelectric differences between left-and right-sided breast cancer, Molecular Medicine, 28(1): 15
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Payne, S. L., Ram, P., Srinivasan, D. H., Le, T. T., Levin, M., and Oudin, M. J. (2022), Potassium channel-driven bioelectric signalling regulates metastasis in triple-negative breast cancer, EBioMedicine, 75: 103767
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Riol, A., Cervera, J., Levin, M., and Mafe, S. (2021), Cell Systems Bioelectricity: How Different Intercellular Gap Junctions Could Regionalize a Multicellular Aggregate, Cancers, 13(21): 5300
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McMillen, P., Oudin, M. J, Levin, M., and Payne, S. L. (2021), Beyond Neurons: Long Distance Communication in Development and Cancer, Frontiers in Cell and Developmental Biology, 9: 739024
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Levin, M. (2021), Bioelectrical approaches to cancer as a problem of the scaling of the cellular self, Progress in Biophysics and Molecular Biology, 165: 102-113
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Payne, S. L., Levin, M., and Oudin, M. J. (2019), Bioelectric control of metastasis in solid tumors, Bioelectricity, 1(3): 114-130
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Tuszynski, J., Tilli, T. M., and Levin, M. (2017), Ion channel and neurotransmitter modulators as electroceutical approaches to the control of cancer, Current Pharmaceutical Design, 23(32): 4827-4841
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Moore, D., Walker, S. I., and Levin, M. (2017), Cancer as a Disorder of Patterning Information: computational and biophysical perspectives on the cancer problem, Convergent Science Physical Oncology, 3(4): 043001
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Thurber, A. E., Nelson, M., Frost, C. L., Levin, M., Brackenbury, W. J., and Kaplan, D. L. (2017), IK channel activation increases tumor growth and induces differential behavioral responses in two breast epithelial cell lines, Oncotarget, 8(26): 42382-42397
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Lobo, D., Lobikin, M., and Levin, M. (2017), Discovering novel phenotypes with automatically inferred dynamic models: partial melanocyte conversion in Xenopus, Scientific Reports, 7: 41339
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Chernet, B. T., Adams, D. S., Lobikin, M., and Levin, M. (2016), Use of genetically encoded, light-gated ion translocators to control tumorigenesis, Oncotarget, 7(15): 19575-19588
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Lobikin, M., Lobo, D., Blackiston, D. J., Martyniuk, C. J., Tkachenko, E., and Levin, M. (2015), Serotonergic regulation of melanocyte conversion: A bioelectrically regulated network for stochastic all-or-none hyperpigmentation, Science Signaling, 8(397): ra99
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Chernet, B. T., Fields, C., and Levin, M. (2015), Long-range gap junctional signaling controls oncogene-mediated tumorigenesis in Xenopus laevis embryos, Frontiers in Physiology, 5: 519
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Chernet, B., and Levin, M. (2014), Transmembrane voltage potential of somatic cells controls oncogene-mediated tumorigenesis at long-range, Oncotarget, 5(10): 3287-3306
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Chernet, B., and Levin, M. (2013), Endogenous voltage potentials and the microenvironment: bioelectric signals that reveal, induce, and normalize cancer, Journal of Clinical and Experimental Oncology, S1: doi:10.4172/2324-9110.S1-002
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Chernet, B. T., and Levin, M. (2013), Transmembrane voltage potential is an essential cellular parameter for the detection and control of tumor development in a Xenopus model, Disease Models & Mechanisms, 6(3): 595-607
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Lobikin, M., Chernet, B., Lobo, D., and Levin, M. (2012), Resting potential, oncogene-induced tumorigenesis, and metastasis: the bioelectric basis of cancer in vivo, Physical Biology, 9(6): 065002
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Blackiston, D., Adams, D. S., Lemire, J. M., Lobikin, M., and Levin, M. (2011), Transmembrane potential of GlyCl-expressing instructor cells induces a neoplastic-like conversion of melanocytes via a serotonergic pathway, Disease Models and Mechanisms, 4(1): 67-85
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Morokuma, J., Blackiston, D., Adams, D. S., Seebohm, G., Trimmer, B., and Levin, M. (2008), Modulation of potassium channel confers a hyperproliferative invasive phenotype on embryonic stem cells, Proceedings of the National Academy of Sciences of the United States, 105(43): 16608-16613
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ORCID ID: 0000-0001-7292-8084