Biomaterials that Regulate Growth Factor Activity via Bioinspired Interactions
- 29 April 2011
- journal article
- research article
- Published by Wiley in Advanced Functional Materials
- Vol. 21 (10), 1754-1768
- https://doi.org/10.1002/adfm.201002468
Abstract
Growth factor activity is localized within the natural extracellular matrix (ECM) by specific noncovalent interactions with core ECM biomolecules, such as proteins and proteoglycans. Recently, these interactions inspired the development of synthetic biomaterials that can noncovalently regulate growth factor activity for tissue‐engineering applications. For example, biomaterials covalently or noncovalently modified with heparin glycosaminoglycans can augment growth factor‐release strategies. In addition, recent studies demonstrate that biomaterials modified with heparin‐binding peptides can sequester cell‐secreted heparin proteoglycans and, in turn, sequester growth factors and regulate stem cell behavior. Another set of studies shows that modular versions of growth factor molecules can be designed to interact with specific components of natural and synthetic ECMs, including collagen and hydroxyapatite. In addition, layer‐by‐layer assemblies of GAGs and other natural polyelectrolytes retain growth factors at a cell/material interface via specific noncovalent interactions. This Feature Article provides a detailed overview of the various bioinspired strategies that are used to noncovalently localize growth factor activity within biomaterials, and will highlight in vivo examples of the efficacy of these materials to promote tissue regeneration.This publication has 157 references indexed in Scilit:
- Modular peptides promote human mesenchymal stem cell differentiation on biomaterial surfacesActa Biomaterialia, 2010
- Modular Peptide Growth Factors for Substrate‐Mediated Stem Cell DifferentiationAngewandte Chemie International Edition, 2009
- Controlled release of neurotrophin‐3 from fibrin‐based tissue engineering scaffolds enhances neural fiber sprouting following subacute spinal cord injuryBiotechnology & Bioengineering, 2009
- Functional PEG–peptide hydrogels to modulate local inflammation inducedby the pro-inflammatory cytokine TNFαBiomaterials, 2009
- Hydrogels as extracellular matrix mimics for 3D cell cultureBiotechnology & Bioengineering, 2009
- Enhanced flexor tendon healing through controlled delivery of PDGF‐BBJournal of Orthopaedic Research, 2009
- Connective tissue growth factor with a novel fibronectin binding site promotes cell adhesion and migration during rat oval cell activationHepatology, 2008
- Cellular and molecular mechanisms of fibrosisThe Journal of Pathology, 2007
- The core protein of growth plate perlecan binds FGF-18 and alters its mitogenic effect on chondrocytesArchives of Biochemistry and Biophysics, 2007
- Multifunctional Hydrogels that Promote Osteogenic Human Mesenchymal Stem Cell Differentiation Through Stimulation and Sequestering of Bone Morphogenic Protein 2Advanced Functional Materials, 2007