Jennifer E Van Eyk
Affiliations: | 1996-2003 | Physiology | Queen's University, Canada, Kingston, Ontario, Canada |
2003-2014 | Johns Hopkins University, Baltimore, MD | ||
2014- | Cedars-Sinai, Los Angeles, CA, United States |
Area:
BiochemistryWebsite:
http://bio.csmc.edu/view/15171/Jennifer-Van-Eyk.aspxGoogle:
"Jennifer E Van Eyk"Bio:
https://thetranslationalscientist.com/issues/0116/lessons-ive-learned-with-jenny-van-eyk/
https://scholar.google.com/citations?user=_mKjQFcAAAAJ&hl=en
Mean distance: (not calculated yet)
Parents
Sign in to add mentorRobert Stanley Hodges | grad student | 1991 | University of Alberta | |
(Peptide chemistry answers questions in muscle regulation.) |
Children
Sign in to add traineeDarren B. Foster | grad student | 2001 | Queen's University, Canada |
Ninetta Buscemi | grad student | 2002 | Queen's University, Canada |
Ralf Labugger | grad student | 2003 | Queen's University, Canada |
David K. Arrell | grad student | 2004 | Queen's University, Canada |
Rebekah L. Gundry | grad student | 2006 | Johns Hopkins |
Geoffrey G. Hesketh | grad student | 2009 | Johns Hopkins |
Victoria J Dardov | grad student | 2014-2019 | Cedars Sinai Medical Center (Neurotree) |
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Publications
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Matlock AD, Vaibhav V, Holewinski R, et al. (2023) NeuroLINCS Proteomics: Defining human-derived iPSC proteomes and protein signatures of pluripotency. Scientific Data. 10: 24 |
Baxi EG, Thompson T, Li J, et al. (2022) Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines. Nature Neuroscience. 25: 226-237 |
Li J, Lim RG, et al. (2021) An integrated multi-omic analysis of iPSC-derived motor neurons from C9ORF72 ALS patients. Iscience. 24: 103221 |
Kammers K, Taub MA, Mathias RA, et al. (2021) Gene and protein expression in human megakaryocytes derived from induced pluripotent stem cells. Journal of Thrombosis and Haemostasis : Jth |
Adhikari S, Nice EC, Deutsch EW, et al. (2020) A high-stringency blueprint of the human proteome. Nature Communications. 11: 5301 |
Vatine GD, Barrile R, Workman MJ, et al. (2019) Human iPSC-Derived Blood-Brain Barrier Chips Enable Disease Modeling and Personalized Medicine Applications. Cell Stem Cell. 24: 995-1005.e6 |
Jones MK, Lu B, Chen DZ, et al. (2018) In vitro and in vivo Proteomic Comparison of Human Neural Progenitor Cell-Induced Photoreceptor Survival. Proteomics. e1800213 |
Nicolas A, Kenna KP, Renton AE, et al. (2018) Genome-wide Analyses Identify KIF5A as a Novel ALS Gene. Neuron. 97: 1268-1283.e6 |
Keenan AB, Jenkins SL, Jagodnik KM, et al. (2018) The Library of Integrated Network-Based Cellular Signatures NIH Program: System-Level Cataloging of Human Cells Response to Perturbations. Cell Systems. 6: 13-24 |
Vatine GD, Al-Ahmad A, Barriga BK, et al. (2017) Modeling Psychomotor Retardation using iPSCs from MCT8-Deficient Patients Indicates a Prominent Role for the Blood-Brain Barrier. Cell Stem Cell |