Literature DB >> 23375052

Linear fibroblast alignment on sinusoidal wave micropatterns.

Jessica R Gamboa1, Samir Mohandes, Phat L Tran, Marvin J Slepian, Jeong-Yeol Yoon.   

Abstract

Micrometer and nanometer grooved surfaces have been determined to influence cellular orientation, morphology, and migration through contact guidance. Cells typically elongate along the direction of an underlying groove and often migrate with guidance provided by constraints of the pattern. This phenomenon has been studied primarily using linear grooves, post, or well patterns. We investigated the behavior of mouse embryonic fibroblasts on non-linear, sinusoidal wave grooves created via electron beam lithography on a polymethyl methacrylate (PMMA) substrate that was spin-coated onto a positively charged glass surface. Three different wave patterns, with varying wavelengths and amplitudes, and two different line patterns were created. Cell orientation and adhesion was examined after 4, 24, and 48 h after cell seeding. Attachment strength was studied via subjecting cells on substrates to centrifugal force following a 24-h incubation period. For all wave patterns studied, it was noted that cells did not reside within the groove, rather they were observed to cross over each groove, residing both inside and outside of each wave pattern, aligning linearly along the long axis of the pattern. For the linear patterns, we observed that cells tended to reside within the grooves, consistent with previous observations. The ability to add texture to a surface to manipulate cell adhesion strength and growth with only localized attachment, maintaining free space in curvilinear microtopography underlying the cell, may be a useful addition for tissue engineering and the fabrication of novel biomedical devices.
Copyright © 2012 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 23375052      PMCID: PMC3582717          DOI: 10.1016/j.colsurfb.2012.11.035

Source DB:  PubMed          Journal:  Colloids Surf B Biointerfaces        ISSN: 0927-7765            Impact factor:   5.268


  32 in total

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2.  The influence of microscale topography on fibroblast attachment and motility.

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Journal:  Biomaterials       Date:  2004-11       Impact factor: 12.479

3.  Cells react to nanoscale order and symmetry in their surroundings.

Authors:  A S G Curtis; N Gadegaard; M J Dalby; M O Riehle; C D W Wilkinson; G Aitchison
Journal:  IEEE Trans Nanobioscience       Date:  2004-03       Impact factor: 2.935

4.  Observation of fibroblast motility on a micro-grooved hydrophobic elastomer substrate with different geometric characteristics.

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Journal:  Micron       Date:  2006-05-15       Impact factor: 2.251

5.  The control of human mesenchymal cell differentiation using nanoscale symmetry and disorder.

Authors:  Matthew J Dalby; Nikolaj Gadegaard; Rahul Tare; Abhay Andar; Mathis O Riehle; Pawel Herzyk; Chris D W Wilkinson; Richard O C Oreffo
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6.  Effects of artificial micro- and nano-structured surfaces on cell behaviour.

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7.  Topographic compensation: guidance and directed locomotion of fibroblasts on grooved micromachined substrata in the absence of microtubules.

Authors:  C Oakley; D M Brunette
Journal:  Cell Motil Cytoskeleton       Date:  1995

Review 8.  Surface micromorphology and cellular interactions.

Authors:  J Meyle; H Wolburg; A F von Recum
Journal:  J Biomater Appl       Date:  1993-04       Impact factor: 2.646

9.  Mechanosensitivity of fibroblast cell shape and movement to anisotropic substratum topography gradients.

Authors:  Deok-Ho Kim; Karam Han; Kshitiz Gupta; Keon W Kwon; Kahp-Yang Suh; Andre Levchenko
Journal:  Biomaterials       Date:  2009-10       Impact factor: 12.479

10.  Alignment of fibroblasts on grooved surfaces described by a simple geometric transformation.

Authors:  G A Dunn; A F Brown
Journal:  J Cell Sci       Date:  1986-07       Impact factor: 5.285

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  7 in total

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2.  The Functional Response of Mesenchymal Stem Cells to Electron-Beam Patterned Elastomeric Surfaces Presenting Micrometer to Nanoscale Heterogeneous Rigidity.

Authors:  Manus J P Biggs; Marc Fernandez; Dilip Thomas; Ryan Cooper; Matteo Palma; Jinyu Liao; Teresa Fazio; Carl Dahlberg; Helen Wheadon; Anuradha Pallipurath; Abhay Pandit; Jeffrey Kysar; Shalom J Wind
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3.  Deterministic Integration of Biological and Soft Materials onto 3D Microscale Cellular Frameworks.

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Review 4.  Biomaterials: Foreign Bodies or Tuners for the Immune Response?

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Review 5.  Innate Immunity and Biomaterials at the Nexus: Friends or Foes.

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6.  Effect of Novel Design Modifications on Fibrotic Encapsulation: An In Vivo Glaucoma Drainage Device Study in a Rabbit Model.

Authors:  Nathan A Fischer; Malik Y Kahook; Suhail Abdullah; Eric Porteous; David A Ammar; Jennifer L Patnaik; Jeffrey R SooHoo
Journal:  Ophthalmol Ther       Date:  2020-03-09

7.  Electron Beam Structuring of Ti6Al4V: New Insights on the Metal Surface Properties Influencing the Bacterial Adhesion.

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Journal:  Materials (Basel)       Date:  2020-01-15       Impact factor: 3.623

  7 in total

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