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Optimization of Schwann cell adhesion in response to shear stress in an in vitro model for peripheral nerve tissue engineering
Journal article

Optimization of Schwann cell adhesion in response to shear stress in an in vitro model for peripheral nerve tissue engineering

Dara Chafik, David Bear, Phong Bui, Arush Patel, Neil F. Jones, Brian T. Kim, Clark T. Hung and Ranjan Gupta
Tissue Engineering, Vol.9(2)
2003

Abstract

Animals Biological Markers Cell Adhesion Cell Division Collagen Type IV Fibronectins Laminin Myelin Basic Proteins Myelin-Associated Glycoprotein Nerve Regeneration Nerve Tissue Proteins Polylysine Rats Rats, Sprague-Dawley Rheology S100 Proteins Schwann Cells Sciatic Nerve Stress, Mechanical Tissue Engineering collagen type 4 fibronectin laminin poly dextro lysine biological marker collagen type 4 fibronectin laminin myelin associated glycoprotein myelin basic protein nerve protein polylysine protein S 100 animal cell article cell adhesion cell assay cell interaction cell proliferation comparative study controlled study device environment experimental model flow rate fluid flow host in vitro study laminar flow material coating mechanical stimulation nerve regeneration newborn nonhuman peripheral nerve priority journal rat scanning electron microscopy Schwann cell shear stress statistical significance tissue engineering animal cell division chemistry cytology drug effect flow kinetics instrumentation mechanical stress methodology sciatic nerve Sprague Dawley rat

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