Literature DB >> 22018383

Cell adhesion, spreading, and proliferation on surface functionalized with RGD nanopillar arrays.

Md Abdul Kafi1, Waleed Ahmed El-Said, Tae-Hyung Kim, Jeong-Woo Choi.   

Abstract

In this paper, a method was introduced for the fabrication of vertically and spatially-controlled peptide nanostructures that enhance cell adhesion, proliferation, spreading on artificial surfaces. The RGD nanostructures with different heights were fabricated on gold surfaces by self-assembly technique through a nanoporous alumina mask composed of nanoscale-controlled pores. Pore diameter and spatial distribution were controlled by manipulating the pore widening time at a constant voltage during the mask fabrication process. Two-dimensional RGD nanodot, three-dimensional RGD nanorod, and RGD nanopillar arrays were carried out using various concentrations of RGD peptide solution, self-assembly times, and pore sizes, which were 74 nm, 63 nm, and 43 nm in diameter, respectively. The fabricated RGD nanodot, nanorod, and nanopillar arrays were utilized as a cell adhesion layer to evaluate the cell adhesion force, adhesion speed, spreading assay, and phosphorylation of cofilin protein in PC12, HeLa, and HEK293T normal cells. Among the three different nanostructures, RGD nanopillar arrays were found to be suitable for cellular attachment, spreading, and proliferation due to the proper arrangement of the RGD motif, which mimics in vivo conditions. Hence, our newly fabricated RGD nanostructured array can be successfully applied as a bio-platform for improving cellular functions and in in vitro tissue engineering.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 22018383     DOI: 10.1016/j.biomaterials.2011.10.003

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  11 in total

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5.  Spectroscopy-Assisted Label-free Molecular Analysis of Live Cell Surface with Vertically Aligned Plasmonic Nanopillars.

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Review 7.  Engineered peptide-based nanobiomaterials for electrochemical cell chip.

Authors:  Md Abdul Kafi; Hyeon-Yeol Cho; Jeong-Woo Choi
Journal:  Nano Converg       Date:  2016-07-25

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9.  DNA orientation-specific adhesion and patterning of living mammalian cells on self-assembled DNA monolayers.

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Review 10.  Neural Cell Chip Based Electrochemical Detection of Nanotoxicity.

Authors:  Md Abdul Kafi; Hyeon-Yeol Cho; Jeong Woo Choi
Journal:  Nanomaterials (Basel)       Date:  2015-07-02       Impact factor: 5.076

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