adhesion and proliferation peptide modified conducting ... · peptide modified conducting polymer...

3
Peptide Modified Conducting Polymer as Biofunctional Surface: Monitoring of Cell Adhesion and Proliferation G. Oyman, C. Geyik, R. Ayranci, M. Ak, D. Odaci Demirkol, S. Timur, and H. Coskunol Supplementary Information Fig. S1. 13 C-NMR spectra of SNS-mNH 2 monomer. Electronic Supplementary Material (ESI) for RSC Advances. This journal is © The Royal Society of Chemistry 2014

Upload: others

Post on 11-Jun-2020

3 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Adhesion and Proliferation Peptide Modified Conducting ... · Peptide Modified Conducting Polymer as Biofunctional Surface: Monitoring of Cell Adhesion and Proliferation G. Oyman,

Peptide Modified Conducting Polymer as Biofunctional Surface: Monitoring of Cell

Adhesion and Proliferation

G. Oyman, C. Geyik, R. Ayranci, M. Ak, D. Odaci Demirkol, S. Timur, and H. Coskunol

Supplementary Information

Fig. S1. 13C-NMR spectra of SNS-mNH2 monomer.

Electronic Supplementary Material (ESI) for RSC Advances.This journal is © The Royal Society of Chemistry 2014

Page 2: Adhesion and Proliferation Peptide Modified Conducting ... · Peptide Modified Conducting Polymer as Biofunctional Surface: Monitoring of Cell Adhesion and Proliferation G. Oyman,

Fig. S2. Cyclic voltammograms of poly-(SNS-mNH2) at different scan rates in monomer free electrolyte. Inset figure shows peak current vs scan rate graph.

Fig. S3. (a) 2D and (b) 3D topographic AFM height images of Vero cell morphology after 72 h incubation ITO/SNS-mNH2/RGD surface.

Page 3: Adhesion and Proliferation Peptide Modified Conducting ... · Peptide Modified Conducting Polymer as Biofunctional Surface: Monitoring of Cell Adhesion and Proliferation G. Oyman,

Fig. S4. Proliferation behavior of SH-SY5Y cell line on (a) ITO/SNS-mNH2 and (b) ITO/SNS-mNH2/RGD surfaces was examined by SEM.