Literature DB >> 21612821

The promotion of microvasculature formation in poly(ethylene glycol) diacrylate hydrogels by an immobilized VEGF-mimetic peptide.

Julia E Leslie-Barbick1, Jennifer E Saik, Daniel J Gould, Mary E Dickinson, Jennifer L West.   

Abstract

Microvascularization of tissue engineered constructs was achieved by utilizing a VEGF-mimicking peptide, QK, covalently bound to a poly(ethylene glycol) hydrogel matrix. The 15-amino acid peptide, developed by D'Andrea et al., was modified with a PEG-succinimidyl ester linker on the N-terminus of the peptide, then photocrosslinked onto the surface or throughout PEG hydrogels. PEGylation of the peptide increased its solubility and bioactivity, as evidenced by endothelial cell proliferation. PEG-QK showed equal or superior ability to promote angiogenesis in vitro, on the surface of hydrogels and within three-dimensional collagenase-degradable hydrogels, compared to RGDS only or PEG-VEGF hydrogels. Endothelial cells were shown to form tubule structures, migrate, and make cell-cell contacts in response to covalently-bound PEG-QK. In vivo in a mouse cornea micropocket angiogenesis assay, PEG-QK hydrogels promoted more complete coverage of host microvasculature within the hydrogel. PEG-QK was shown to enhance vessel branch points and vessel density as well as space filling properties of fractal dimension and lacunarity. This report shows the ability to promote angiogenesis in tissue engineered constructs using a covalently-bound small peptide rather than a large protein and may point to an advance in designing biomimetic cellular environments.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21612821     DOI: 10.1016/j.biomaterials.2011.04.060

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  49 in total

1.  Biomimetic poly(ethylene glycol)-based hydrogels as scaffolds for inducing endothelial adhesion and capillary-like network formation.

Authors:  Junmin Zhu; Ping He; Lin Lin; Derek R Jones; Roger E Marchant
Journal:  Biomacromolecules       Date:  2012-02-22       Impact factor: 6.988

Review 2.  How blood vessel networks are made and measured.

Authors:  John C Chappell; David M Wiley; Victoria L Bautch
Journal:  Cells Tissues Organs       Date:  2011-10-12       Impact factor: 2.481

3.  Differential effects of a soluble or immobilized VEGFR-binding peptide.

Authors:  Justin T Koepsel; Eric H Nguyen; William L Murphy
Journal:  Integr Biol (Camb)       Date:  2012-06-25       Impact factor: 2.192

4.  Matrix-Bound VEGF Mimetic Peptides: Design and Endothelial Cell Activation in Collagen Scaffolds.

Authors:  Tania R Chan; Patrick J Stahl; S Michael Yu
Journal:  Adv Funct Mater       Date:  2011-11-22       Impact factor: 18.808

5.  Density gradient multilayer polymerization for creating complex tissue.

Authors:  Jerome V Karpiak; Yogesh Ner; Adah Almutairi
Journal:  Adv Mater       Date:  2012-02-09       Impact factor: 30.849

6.  PEG-maleimide hydrogels for protein and cell delivery in regenerative medicine.

Authors:  Andrés J García
Journal:  Ann Biomed Eng       Date:  2013-07-24       Impact factor: 3.934

Review 7.  25th anniversary article: Rational design and applications of hydrogels in regenerative medicine.

Authors:  Nasim Annabi; Ali Tamayol; Jorge Alfredo Uquillas; Mohsen Akbari; Luiz E Bertassoni; Chaenyung Cha; Gulden Camci-Unal; Mehmet R Dokmeci; Nicholas A Peppas; Ali Khademhosseini
Journal:  Adv Mater       Date:  2014-01-08       Impact factor: 30.849

Review 8.  Customizable biomaterials as tools for advanced anti-angiogenic drug discovery.

Authors:  Eric H Nguyen; William L Murphy
Journal:  Biomaterials       Date:  2018-07-26       Impact factor: 12.479

9.  Multi-peptide presentation and hydrogel mechanics jointly enhance therapeutic duo-potential of entrapped stromal cells.

Authors:  Ben P Hung; Tomas Gonzalez-Fernandez; Jenny B Lin; Takeyah Campbell; Yu Bin Lee; Alyssa Panitch; Eben Alsberg; J Kent Leach
Journal:  Biomaterials       Date:  2020-03-20       Impact factor: 12.479

10.  A multilayered microfluidic blood vessel-like structure.

Authors:  Anwarul Hasan; Arghya Paul; Adnan Memic; Ali Khademhosseini
Journal:  Biomed Microdevices       Date:  2015-10       Impact factor: 2.838

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