Literature DB >> 20153044

The ability of corneal epithelial cells to recognize high aspect ratio nanostructures.

Elizabeth J Tocce1, Valery K Smirnov, Dmitry S Kibalov, Sara J Liliensiek, Christopher J Murphy, Paul F Nealey.   

Abstract

The basement membrane of the human corneal epithelium comprises topographic features including fibers, pores, and elevations with feature dimensions on the order of 20-400 nm. Understanding the impact of sub-micron and nanotopography on corneal cell behavior will contribute to our understanding of biomechanical cues and will assist in the design of improved synthetic corneal implants. We utilized well defined ridge and groove wave-like nanostructures (wave ordered structures, WOS) of 60-140 pitches (30-70 nm ridge widths) and 200 nm depths to assess human corneal epithelial cell (HCEC) contact guidance and to establish HCEC contact acuity defined as the lower limit in feature dimensions at which cells respond to biomimetic topographic cues. Results using the WOS substrates demonstrate that HCEC contact acuity is in the range of 60 nm pitch for cells in a serum-free basal medium (EpiLife) and in the range of 90 nm pitch for cells in epithelial medium. To further investigate the influence of HCEC contact acuity in the presence of larger topographic cues, we fabricated 70 nm pitch WOS-overlaid parallel to the top of the ridges of 800-4000 nm pitch. HCEC cultured in epithelial medium demonstrate a significant increase in the percent of cells aligning to 4000 nm pitch topography with WOS-overlay compared to controls (both flat and 70 nm WOS alone) and 4000 nm pitch topography alone. These results highlight the significance of the lower range of basement membrane scale topographic cues on cell response and allow for improved prosthetic design. Published by Elsevier Ltd.

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Year:  2010        PMID: 20153044      PMCID: PMC2868502          DOI: 10.1016/j.biomaterials.2010.01.101

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


  44 in total

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Review 2.  Effects of synthetic micro- and nano-structured surfaces on cell behavior.

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3.  Biological length scale topography enhances cell-substratum adhesion of human corneal epithelial cells.

Authors:  Nancy W Karuri; Sara Liliensiek; Ana I Teixeira; George Abrams; Sean Campbell; Paul F Nealey; Christopher J Murphy
Journal:  J Cell Sci       Date:  2004-07-01       Impact factor: 5.285

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5.  Fine structure of the glomerular basement membrane of the rat kidney visualized by high-resolution scanning electron microscopy.

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Journal:  Cell Tissue Res       Date:  1991-10       Impact factor: 5.249

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Journal:  Proc Natl Acad Sci U S A       Date:  1997-12-09       Impact factor: 11.205

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Journal:  J Electron Microsc (Tokyo)       Date:  1998

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Journal:  Proc Natl Acad Sci U S A       Date:  1984-12       Impact factor: 11.205

9.  The translaminal fibrils of the human amnion basement membrane.

Authors:  S Campbell; T D Allen; B B Moser; J D Aplin
Journal:  J Cell Sci       Date:  1989-10       Impact factor: 5.285

10.  Guidance of CNS growth cones by substratum grooves and ridges: effects of inhibitors of the cytoskeleton, calcium channels and signal transduction pathways.

Authors:  A Rajnicek; C McCaig
Journal:  J Cell Sci       Date:  1997-12       Impact factor: 5.285

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  23 in total

1.  The modulation of canine mesenchymal stem cells by nano-topographic cues.

Authors:  Joshua A Wood; Irene Ly; Dori L Borjesson; Paul F Nealey; Paul Russell; Christopher J Murphy
Journal:  Exp Cell Res       Date:  2012-07-04       Impact factor: 3.905

2.  Characterizing nanoscale topography of the aortic heart valve basement membrane for tissue engineering heart valve scaffold design.

Authors:  Sarah Brody; Thapasimuthu Anilkumar; Sara Liliensiek; Julie A Last; Christopher J Murphy; Abhay Pandit
Journal:  Tissue Eng       Date:  2006-02

Review 3.  Biomechanical relationships between the corneal endothelium and Descemet's membrane.

Authors:  Maryam Ali; VijayKrishna Raghunathan; Jennifer Y Li; Christopher J Murphy; Sara M Thomasy
Journal:  Exp Eye Res       Date:  2016-09-14       Impact factor: 3.467

4.  Influence of extracellular matrix proteins and substratum topography on corneal epithelial cell alignment and migration.

Authors:  Vijaykrishna Raghunathan; Clayton McKee; Wai Cheung; Rachel Naik; Paul F Nealey; Paul Russell; Christopher J Murphy
Journal:  Tissue Eng Part A       Date:  2013-08       Impact factor: 3.845

5.  Focal adhesion kinase knockdown modulates the response of human corneal epithelial cells to topographic cues.

Authors:  Britta Dreier; Vijaya Krishna Raghunathan; Paul Russell; Christopher J Murphy
Journal:  Acta Biomater       Date:  2012-07-17       Impact factor: 8.947

Review 6.  3D Microfabricated Scaffolds and Microfluidic Devices for Ocular Surface Replacement: a Review.

Authors:  Elisabetta Prina; Pritesh Mistry; Laura E Sidney; Jing Yang; Ricky D Wildman; Marina Bertolin; Claudia Breda; Barbara Ferrari; Vanessa Barbaro; Andrew Hopkinson; Harminder S Dua; Stefano Ferrari; Felicity R A J Rose
Journal:  Stem Cell Rev Rep       Date:  2017-06       Impact factor: 5.739

7.  Promoting Cell Migration and Neurite Extension along Uniaxially Aligned Nanofibers with Biomacromolecular Particles in a Density Gradient.

Authors:  Jiajia Xue; Tong Wu; Jichuan Qiu; Sarah Rutledge; Michael L Tanes; Younan Xia
Journal:  Adv Funct Mater       Date:  2020-08-09       Impact factor: 18.808

8.  Biochemically and topographically engineered poly(ethylene glycol) diacrylate hydrogels with biomimetic characteristics as substrates for human corneal epithelial cells.

Authors:  B Yañez-Soto; S J Liliensiek; C J Murphy; P F Nealey
Journal:  J Biomed Mater Res A       Date:  2012-12-18       Impact factor: 4.396

9.  The influence of biomimetic topographical features and the extracellular matrix peptide RGD on human corneal epithelial contact guidance.

Authors:  E J Tocce; S J Liliensiek; A H Broderick; Y Jiang; K C Murphy; C J Murphy; D M Lynn; P F Nealey
Journal:  Acta Biomater       Date:  2012-10-13       Impact factor: 8.947

10.  Nuclear and cellular alignment of primary corneal epithelial cells on topography.

Authors:  Vijay Krishna Raghunathan; Clayton T McKee; Elizabeth J Tocce; Paul F Nealey; Paul Russell; Christopher J Murphy
Journal:  J Biomed Mater Res A       Date:  2012-09-11       Impact factor: 4.396

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