Literature DB >> 23243007

Bioactive polyacrylamide hydrogels with gradients in mechanical stiffness.

Vincent E G Diederich1, Peter Studer, Anita Kern, Marco Lattuada, Giuseppe Storti, Ram I Sharma, Jess G Snedeker, Massimo Morbidelli.   

Abstract

We propose a novel, single step method for the production of polyacrylamide hydrogels with a gradient in mechanical properties. In contrast to already existing techniques such as UV photo-polymerization with photomasks (limited penetration depth) or microfluidic gradient mixers (complex microfluidic chip), this technique is not suffering such limitations. Young's modulus of the hydrogels was varied by changing the total monomer concentration of the hydrogel precursor solution. Using programmable syringe pumps, the total monomer concentration in the solution fed to the hydrogel mold was varied from 16 wt% down to 5 wt% over the feeding time to obtain a gradient in compliance ranging from 150 kPa down to 20 kPa over a length of 10 mm down to 2.5 mm. Polymerization was achieved with the dual initiation system composed of ammonium persulfate and N,N,N',N'-tetramethylethylenediamine, which were both fed through separate capillaries to avoid premature polymerization. Functionalized with the model ligand collagen I, the substrates were bioactive and supported the attachment of human foreskin fibroblasts (around 30% of the cells seeded attached after 1 h). A kinetic morphology study on homogeneous hydrogels of different stiffness's indicated that fibroblasts tend to spread to their final size within 2 h on stiff substrates, while the spreading time was much longer (ca. 4-5 h) on soft substrates. These trends were confirmed on hydrogels with compliance gradients, showing well spread fibroblasts on the stiff end of the hydrogel after 2 h, while the cells on the soft end still had small area and rounded morphology.
Copyright © 2012 Wiley Periodicals, Inc.

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Year:  2013        PMID: 23243007     DOI: 10.1002/bit.24810

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  3 in total

1.  Kinetic models for the dynamical behavior of polyacrylamide (PAAm)-κ-carrageenan (κC) composite gels.

Authors:  Gülşen Akın Evingür; Önder Pekcan
Journal:  J Biol Phys       Date:  2014-10-11       Impact factor: 1.365

2.  Predicting Ligand-Free Cell Attachment on Next-Generation Cellulose-Chitosan Hydrogels.

Authors:  Marcus A Johns; Yongho Bae; Francisco E G Guimarães; Evandro M Lanzoni; Carlos A R Costa; Paul M Murray; Christoph Deneke; Fernando Galembeck; Janet L Scott; Ram I Sharma
Journal:  ACS Omega       Date:  2018-01-25

Review 3.  The physical microenvironment of hematopoietic stem cells and its emerging roles in engineering applications.

Authors:  Pan Zhang; Chen Zhang; Jing Li; Jiyang Han; Xiru Liu; Hui Yang
Journal:  Stem Cell Res Ther       Date:  2019-11-19       Impact factor: 6.832

  3 in total

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