The selective modulation of endothelial cell mobility on RGD peptide containing surfaces by YIGSR peptides.
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Summary
The ability of the biomimetic peptides YIGSR, PHSRN and RGD to selectively affect adhesion and migration of human microvascular endothelial cells and vascular smooth muscle cells was evaluated and suggests that the desired response of specific cell types to tissue engineering scaffolds could be optimized through a combinatory approach to the use of biomimetically peptides.
- Type
- article
- Published
- 2005-01-01
- Cited by
- 211
- References
- 31
- Access
- Open access
- OpenAlex
- https://openalex.org/W2013261475
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206009102
Keywords
Peptide, Materials science, Cell adhesion, PEG ratio, Adhesion
References
- Biomaterials in Tissue Engineering
- Polymeric system for dual growth factor delivery
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- Identification of a novel integrin binding site in fibronectin. Differential utilization by beta 3 integrins.
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- The Focal Adhesion Kinase‐‐A Regulator of Cell Migration and Invasion
- The role of the ninth and tenth type III domains of human fibronectin in cell adhesion
- Surfaces modified with covalently-immobilized adhesive peptides affect fibroblast population motility.
- Roles of protein tyrosine phosphatases in cell migration and adhesion.
- Endothelial cell migration on surfaces modified with immobilized adhesive peptides.
- Membrane-type matrix metalloproteinases in human dermal microvascular endothelial cells: expression and morphogenetic correlation.
- The PHSRN sequence induces extracellular matrix invasion and accelerates wound healing in obese diabetic mice.
- Protein delivery from materials formed by self-selective conjugate addition reactions.
- A pentapeptide from the laminin B1 chain mediates cell adhesion and binds the 67,000 laminin receptor.
- Systematic modulation of Michael-type reactivity of thiols through the use of charged amino acids.
- Functional domains of cell adhesion molecules.
- Engineering of vascular ingrowth matrices: Are protein domains an alternative to peptides?
- Involvement of the YIGSR sequence of laminin in protein tyrosine phosphorylation
- Interactions of corneal epithelial cells and surfaces modified with cell adhesion peptide combinations
- Amino acids and peptides. Part 39: a bivalent poly(ethylene glycol) hybrid containing an active site (RGD) and its synergistic site (PHSRN) of fibronectin.
Cited by
- Synthesis of cell-adhesive dextran hydrogels and macroporous scaffolds.
- Characterization of the crosslinking kinetics of multi-arm poly(ethylene glycol) hydrogels formed via Michael-type addition
- The development of hyaluronic acid biomaterials for vascular tissue engineering
- CELL-MEDIATED ELASTIC MATRIX REGENERATION TOWARD REGRESSION OF ABDOMINAL AORTIC ANEURYSMS
- Aptamer-based capture molecules as a novel tool to isolate target cells and promote cell adhesion
- Drug eluting hydrogels design, synthesis and evaluation
- Shear resistance of human umbilical endothelial cells on different materials covered with or without extracellular matrix: Controlled in-vitro study
- Biochemical and microscale modification of polymer for endothelial cell angiogenesis
- Dual-peptide-modified alginate hydrogels for the promotion of angiogenesis
- Endothelialization of implanted cardiovascular biomaterial surfaces: the development from in vitro to in vivo.
- Regenerative medicine in dermatology: biomaterials, tissue engineering, stem cells, gene transfer and beyond
- Cell responses to biomimetic protein scaffolds used in tissue repair and engineering.
- Nuovi materiali funzionali per l'ingegneria del tessuto vascolare
- Antimicrobial surfaces grafted random copolymers with REDV peptide beneficial for endothelialization.
- Surface modification and endothelialization of biomaterials as potential scaffolds for vascular tissue engineering applications.
- Biomaterial mediated strategies targeting vascularization for bone repair
- Modifying alginate with early embryonic extracellular matrix, laminin, and hyaluronic acid for adipose tissue engineering.
- Using Polymeric Materials to Control Stem Cell Behavior for Tissue Regeneration
- Negatively charged polyelectrolyte gels as bio-tissue model system and for biomedical application
- A Poloxamine–Polylysine Acrylate Scaffold for Modular Tissue Engineering
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