Devrim Kilinc

Biomedical Engineering Drexel University, Philadelphia, PA, United States 
"Devrim Kilinc"
Mean distance: 24.34 (cluster 52)


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Kenneth A. Barbee grad student 2004-2008 Drexel
 (Mechanisms and prevention of axonal damage in response to mechanical trauma to cultured neurons.)
Gil Lee post-doc University College Dublin
Bernard Brugg post-doc 2008-2009 Université Pierre et Marie Curie
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Lesniak A, Kilinc D, Blasiak A, et al. (2018) Rapid Growth Cone Uptake and Dynein-Mediated Axonal Retrograde Transport of Negatively Charged Nanoparticles in Neurons Is Dependent on Size and Cell Type. Small (Weinheim An Der Bergstrasse, Germany). e1803758
Blasiak A, Kilinc D, Lee GU. (2016) Neuronal Cell Bodies Remotely Regulate Axonal Growth Response to Localized Netrin-1 Treatment via Second Messenger and DCC Dynamics. Frontiers in Cellular Neuroscience. 10: 298
Kilinc D, Dennis CL, Lee GU. (2016) Bio-Nano-Magnetic Materials for Localized Mechanochemical Stimulation of Cell Growth and Death. Advanced Materials (Deerfield Beach, Fla.)
Kilinc D, Schwab J, Rampini S, et al. (2015) A microfluidic dual gradient generator for conducting cell-based drug combination assays. Integrative Biology : Quantitative Biosciences From Nano to Macro
Kilinc D, Blasiak A, Lee GU. (2015) Microtechnologies for studying the role of mechanics in axon growth and guidance. Frontiers in Cellular Neuroscience. 9: 282
Blasiak A, Lee GU, Kilinc D. (2015) Neuron Subpopulations with Different Elongation Rates and DCC Dynamics Exhibit Distinct Responses to Isolated Netrin-1 Treatment. Acs Chemical Neuroscience
Rampini S, Kilinc D, Li P, et al. (2015) Micromagnet arrays for on-chip focusing, switching, and separation of superparamagnetic beads and single cells. Lab On a Chip. 15: 3370-9
Kilinc D, Lesniak A, Rashdan SA, et al. (2015) Mechanochemical stimulation of MCF7 cells with rod-shaped Fe-Au Janus particles induces cell death through paradoxical hyperactivation of ERK. Advanced Healthcare Materials. 4: 395-404
Rampini S, Kilinc D, Li P, et al. (2015) Miarrays for on-chip focusing, switching, and separation of superparamagnetic beads and single cells Lab On a Chip - Miniaturisation For Chemistry and Biology. 15: 3370-3379
Kilinc D, Blasiak A, O'Mahony JJ, et al. (2014) Low piconewton towing of CNS axons against diffusing and surface-bound repellents requires the inhibition of motor protein-associated pathways. Scientific Reports. 4: 7128
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