Biomacromolecules 2014-10-13

Expanding functionality of recombinant human collagen through engineered non-native cysteines.

Richard Que, Ali Mohraz, Nancy A Da Silva, Szu-Wen Wang

Index: Biomacromolecules 15(10) , 3540-9, (2014)

Full Text: HTML

Abstract

Collagen is the most abundant protein in extracellular matrices and is commonly used as a tissue engineering scaffold. However, collagen and other biopolymers from native sources can exhibit limitations when tuning mechanical and biological properties. Cysteines do not naturally occur within the triple-helical region of any native collagen. We utilized a novel modular synthesis strategy to fabricate variants of recombinant human collagen that contained 2, 4, or 8 non-native cysteines at precisely defined locations within each biopolymer. This bottom-up approach introduced capabilities using sulfhydryl chemistry to form hydrogels and immobilize bioactive factors. Collagen variants retained their triple-helical structure and supported cellular adhesion. Hydrogels were characterized using rheology, and the storage moduli were comparable to fibrillar collagen gels at similar concentrations. Furthermore, the introduced cysteines functioned as anchoring sites, with TGF-β1-conjugated collagens promoting myofibroblast differentiation. This approach demonstrates the feasibility to produce custom-designed collagens with chemical functionality not available from native sources.


Related Compounds

  • Acrylamide Crysta...
  • D-Galactose
  • PMSF
  • galactose
  • N-Succinimidyl 4-...

Related Articles:

Genetic and pharmacologic inhibition of eIF4E reduces breast cancer cell migration, invasion, and metastasis.

2015-03-15

[Cancer Res. 75(6) , 1102-12, (2015)]

Aptamer-based polyvalent ligands for regulated cell attachment on the hydrogel surface.

2015-04-13

[Biomacromolecules 16(4) , 1382-9, (2015)]

The surface rhamnopolysaccharide epa of Enterococcus faecalis is a key determinant of intestinal colonization.

2015-01-01

[J. Infect. Dis. 211(1) , 62-71, (2015)]

Polymerization of affinity ligands on a surface for enhanced ligand display and cell binding.

2014-12-08

[Biomacromolecules 15(12) , 4561-9, (2014)]

Use of an enzyme-assisted method to improve protein extraction from olive leaves.

2015-02-15

[Food Chem. 169 , 28-33, (2014)]

More Articles...