Russell T. Matthews, Ph.D.

Affiliations: 
2001 Yale University, New Haven, CT 
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"Russell Matthews"
Mean distance: 15.84 (cluster 6)
 
SNBCP

Parents

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Susan J. Hockfield grad student 2001 Yale
 (Characterization of lecticans in normal brain and glioma: A complex tale of post-translational modification and processing.)

Children

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Michael Rutledge research assistant SUNY Upstate Medical University
Wenya L. Bi grad student 2007 Yale
Paulette A. McRae grad student 2007 Yale
Markus Morawski research scientist 2012-2012 SUNY Upstate Medical University
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Publications

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Sinha A, Kawakami J, Cole KS, et al. (2023) Protein-protein interactions between tenascin-R and RPTPζ/phosphacan are critical to maintain the architecture of perineuronal nets. The Journal of Biological Chemistry. 104952
Giamanco KA, Matthews RT. (2020) The Role of BEHAB/Brevican in the Tumor Microenvironment: Mediating Glioma Cell Invasion and Motility. Advances in Experimental Medicine and Biology. 1272: 117-132
Eill GJ, Sinha A, Morawski M, et al. (2019) The protein tyrosine phosphatase RPTPζ/phosphacan is critical for perineuronal net structure. The Journal of Biological Chemistry
Blosa M, Bursch C, Weigel S, et al. (2016) Reorganization of Synaptic Connections and Perineuronal Nets in the Deep Cerebellar Nuclei of Purkinje Cell Degeneration Mutant Mice. Neural Plasticity. 2016: 2828536
Blosa M, Sonntag M, Jäger C, et al. (2015) The extracellular matrix molecule brevican is an integral component of the machinery mediating fast synaptic transmission at the calyx of Held. The Journal of Physiology. 593: 4341-60
Dwyer CA, Katoh T, Tiemeyer M, et al. (2015) Neurons and glia modify receptor protein-tyrosine phosphatase ζ (RPTPζ)/phosphacan with cell-specific O-mannosyl glycans in the developing brain. The Journal of Biological Chemistry. 290: 10256-73
Dwyer CA, Bi WL, Viapiano MS, et al. (2014) Brevican knockdown reduces late-stage glioma tumor aggressiveness. Journal of Neuro-Oncology. 120: 63-72
Jäger C, Lendvai D, Seeger G, et al. (2013) Perineuronal and perisynaptic extracellular matrix in the human spinal cord. Neuroscience. 238: 168-84
Blosa M, Sonntag M, Brückner G, et al. (2013) Unique features of extracellular matrix in the mouse medial nucleus of trapezoid body--implications for physiological functions. Neuroscience. 228: 215-34
Kind PC, Sengpiel F, Beaver CJ, et al. (2013) The development and activity-dependent expression of aggrecan in the cat visual cortex. Cerebral Cortex (New York, N.Y. : 1991). 23: 349-60
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