Literature DB >> 19908839

De novo design of saccharide-peptide hydrogels as synthetic scaffolds for tailored cell responses.

Sophia W Liao1, Ting-Bin Yu, Zhibin Guan.   

Abstract

A new class of functional saccharide-peptide copolymer-based hydrogels was synthesized and investigated as synthetic extracellular matrices for regenerative medicine applications. The polymer was composed entirely of natural building blocks, namely, galactaric acid and lysine on the backbone, with tyrosine grafted onto the side chain as a handle for enzyme-catalyzed hydrogelation. The resulting hydrogels are degradable under simulated physiological conditions and exhibit minimal cytotoxicity on dermal fibroblast and PC-12 cells. As a demonstration of the versatility of the system, the mechanical properties of the gels can be independently controlled without changing the polymer chemical composition. Using an identical copolymer solution, by simply allowing different lengths of cross-linking time, a series of hydrogels was obtained with different mechanical moduli at constant chemical structure. The moduli of the resulting hydrogels varied stepwise from 1.7, 4.1, 6.9, and 12.5 kPa to allow for systematic studies on the effects of modulus on cell behavior. It was exciting to observe that a simple change in hydrogel physical properties could induce a direct phenotypic change in cell adhesion and proliferation. Depending on the substrate mechanical modulus, the cell morphology changed and proliferation rate differed by an order of magnitude for different cell lines. These data suggest our saccharide-peptide hydrogels as promising synthetic extracellular matrices for cell culture and tissue regeneration.

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Year:  2009        PMID: 19908839     DOI: 10.1021/ja907097t

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  17 in total

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Authors:  Clayton T McKee; Julie A Last; Paul Russell; Christopher J Murphy
Journal:  Tissue Eng Part B Rev       Date:  2011-03-21       Impact factor: 6.389

2.  Poly-amido-saccharides: synthesis via anionic polymerization of a β-lactam sugar monomer.

Authors:  Eric L Dane; Mark W Grinstaff
Journal:  J Am Chem Soc       Date:  2012-09-21       Impact factor: 15.419

3.  Direct synthesis of polyamides via catalytic dehydrogenation of diols and diamines.

Authors:  Hanxiang Zeng; Zhibin Guan
Journal:  J Am Chem Soc       Date:  2011-01-04       Impact factor: 15.419

4.  The effect of biophysical attributes of the ocular trabecular meshwork associated with glaucoma on the cell response to therapeutic agents.

Authors:  Clayton T McKee; Joshua A Wood; Nihar M Shah; Marion E Fischer; Christopher M Reilly; Christopher J Murphy; Paul Russell
Journal:  Biomaterials       Date:  2011-01-08       Impact factor: 12.479

5.  Nylon-3 polymers that enable selective culture of endothelial cells.

Authors:  Runhui Liu; Xinyu Chen; Samuel H Gellman; Kristyn S Masters
Journal:  J Am Chem Soc       Date:  2013-11-06       Impact factor: 15.419

6.  Poly(Acrylic Acid-b-Styrene) Amphiphilic Multiblock Copolymers as Building Blocks for the Assembly of Discrete Nanoparticles.

Authors:  Anna C Greene; Jiahua Zhu; Darrin J Pochan; Xinqiao Jia; Kristi L Kiick
Journal:  Macromolecules       Date:  2011-03-04       Impact factor: 5.985

7.  Biodegradable and biocompatible synthetic saccharide-Peptide hydrogels for three-dimensional stem cell culture.

Authors:  Kanika Chawla; Ting-Bin Yu; Sophia W Liao; Zhibin Guan
Journal:  Biomacromolecules       Date:  2011-02-08       Impact factor: 6.988

Review 8.  Modular and orthogonal synthesis of hybrid polymers and networks.

Authors:  Shuang Liu; Kevin T Dicker; Xinqiao Jia
Journal:  Chem Commun (Camb)       Date:  2015-03-28       Impact factor: 6.222

9.  Modulation of chondrocyte behavior through tailoring functional synthetic saccharide-peptide hydrogels.

Authors:  Kanika Chawla; Ting-bin Yu; Lisa Stutts; Max Yen; Zhibin Guan
Journal:  Biomaterials       Date:  2012-06-04       Impact factor: 12.479

10.  Maintaining functional islets through encapsulation in an injectable saccharide-peptide hydrogel.

Authors:  Sophia W Liao; Jeffrey Rawson; Keiko Omori; Kohei Ishiyama; Davoud Mozhdehi; Alina R Oancea; Taihei Ito; Zhibin Guan; Yoko Mullen
Journal:  Biomaterials       Date:  2013-03-07       Impact factor: 12.479

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