Noelia J. Kunzevitzky
Affiliations: | University of Miami, Coral Gables, FL | ||
Stanford University, Palo Alto, CA | |||
Emmecell |
Area:
CNS Regeneration, CNS Development, Bioinformatics, Cornea Regeneration, Cell TherapyGoogle:
"Noelia Kunzevitzky"Mean distance: 16.68 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorJeffrey L. Goldberg | grad student | 2005-2009 | University of Miami, Bascom Palmer Eye Institute |
Nick Tsinoremas | post-doc | 2010-2011 | University of Miami |
Children
Sign in to add traineeKevin Thomas Willeford | research assistant | 2008-2010 | University of Miami |
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Publications
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Kreymerman A, Buickians DN, Nahmou MM, et al. (2019) MTP18 is a Novel Regulator of Mitochondrial Fission in CNS Neuron Development, Axonal Growth, and Injury Responses. Scientific Reports. 9: 10669 |
Xia X, Atkins M, Dalal R, et al. (2019) Magnetic Human Corneal Endothelial Cell Transplant: Delivery, Retention, and Short-Term Efficacy. Investigative Ophthalmology & Visual Science. 60: 2438-2448 |
Galvao J, Iwao K, Apara A, et al. (2018) The Krüppel-Like Factor Gene Target Dusp14 Regulates Axon Growth and Regeneration. Investigative Ophthalmology & Visual Science. 59: 2736-2747 |
Bartakova A, Kuzmenko O, Alvarez-Delfin K, et al. (2018) A Cell Culture Approach to Optimized Human Corneal Endothelial Cell Function. Investigative Ophthalmology & Visual Science. 59: 1617-1629 |
Apara A, Galvao J, Wang Y, et al. (2017) KLF9 and JNK3 Interact to Suppress Axon Regeneration in the Adult CNS. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience |
Bartakova A, Alvarez-Delfin K, Weisman AD, et al. (2016) Novel Identity and Functional Markers for Human Corneal Endothelial Cells. Investigative Ophthalmology & Visual Science. 57: 2749-62 |
McCabe KL, Kunzevitzky NJ, Chiswell BP, et al. (2015) Efficient Generation of Human Embryonic Stem Cell-Derived Corneal Endothelial Cells by Directed Differentiation. Plos One. 10: e0145266 |
Moysidis SN, Alvarez-Delfin K, Peschansky VJ, et al. (2015) Magnetic field-guided cell delivery with nanoparticle-loaded human corneal endothelial cells. Nanomedicine : Nanotechnology, Biology, and Medicine. 11: 499-509 |
Bartakova A, Kunzevitzky NJ, Goldberg JL. (2014) Regenerative Cell Therapy for Corneal Endothelium. Current Ophthalmology Reports. 2: 81-90 |
Kunzevitzky NJ, Willeford KT, Feuer WJ, et al. (2013) Amacrine cell subtypes differ in their intrinsic neurite growth capacity. Investigative Ophthalmology & Visual Science. 54: 7603-13 |