Literature DB >> 17316788

The influence of biomaterials on endothelial cell thrombogenicity.

Alison P McGuigan1, Michael V Sefton.   

Abstract

Driven by tissue engineering and regenerative medicine, endothelial cells are being used in combination with biomaterials in a number of applications for the purpose of improving blood compatibility and host integration. Endothelialized vascular grafts are beginning to be used clinically with some success in some centers, while endothelial seeding is being explored as a means of creating a vasculature within engineered tissues. The underlying assumption of this strategy is that when cultured on artificial biomaterials, a confluent layer of endothelial cells maintain their non-thrombogenic phenotype. In this review the existing knowledge base of endothelial cell thrombogenicity cultured on a number of different biomaterials is summarized. The importance of selecting appropriate endpoint measures that are most reflective of overall surface thrombogenicity is the focus of this review. Endothelial cells inhibit thrombosis through three interconnected regulatory systems (1) the coagulation cascade, (2) the cellular components of the blood such as leukocytes and platelets and (3) the complement cascade, and also through effects on fibrinolysis and vascular tone, the latter which influences blood flow. Thus, in order to demonstrate the thrombogenic benefit of seeding a biomaterial with EC, the conditions under which EC surfaces are more likely to exhibit lower thrombogenicity than unseeded biomaterial surfaces need to be consistent with the experimental context. The endpoints selected should be appropriate for the dominant thrombotic process that occurs under the given experimental conditions.

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Year:  2007        PMID: 17316788      PMCID: PMC1868518          DOI: 10.1016/j.biomaterials.2007.01.039

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


  217 in total

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  52 in total

1.  Impact of processing parameters on the haemocompatibility of Bombyx mori silk films.

Authors:  F Philipp Seib; Manfred F Maitz; Xiao Hu; Carsten Werner; David L Kaplan
Journal:  Biomaterials       Date:  2011-11-09       Impact factor: 12.479

Review 2.  Tissue Engineering at the Blood-Contacting Surface: A Review of Challenges and Strategies in Vascular Graft Development.

Authors:  Daniel Radke; Wenkai Jia; Dhavan Sharma; Kemin Fena; Guifang Wang; Jeremy Goldman; Feng Zhao
Journal:  Adv Healthc Mater       Date:  2018-05-07       Impact factor: 9.933

3.  The thrombogenicity of human umbilical vein endothelial cell seeded collagen modules.

Authors:  Alison P McGuigan; Michael V Sefton
Journal:  Biomaterials       Date:  2008-03-05       Impact factor: 12.479

Review 4.  Endothelial outgrowth cells: function and performance in vascular grafts.

Authors:  Jeremy J Glynn; Monica T Hinds
Journal:  Tissue Eng Part B Rev       Date:  2013-10-10       Impact factor: 6.389

5.  Novel electrospun polyurethane/gelatin composite meshes for vascular grafts.

Authors:  Nicola Detta; Cesare Errico; Dinuccio Dinucci; Dario Puppi; David A Clarke; Gwendolen C Reilly; Federica Chiellini
Journal:  J Mater Sci Mater Med       Date:  2010-02-05       Impact factor: 3.896

6.  Two surface gradients of polyethylene glycol for a reduction in protein adsorption.

Authors:  Nathan W Gooch; Vladimir Hlady
Journal:  Surf Innov       Date:  2015-10-01       Impact factor: 3.016

7.  Multifunctional silk-heparin biomaterials for vascular tissue engineering applications.

Authors:  F Philipp Seib; Manuela Herklotz; Kelly A Burke; Manfred F Maitz; Carsten Werner; David L Kaplan
Journal:  Biomaterials       Date:  2013-10-04       Impact factor: 12.479

8.  The blood and vascular cell compatibility of heparin-modified ePTFE vascular grafts.

Authors:  Ryan A Hoshi; Robert Van Lith; Michele C Jen; Josephine B Allen; Karen A Lapidos; Guillermo Ameer
Journal:  Biomaterials       Date:  2012-10-12       Impact factor: 12.479

9.  Characterization and biocompatibility studies of new degradable poly(urea)urethanes prepared with arginine, glycine or aspartic acid as chain extenders.

Authors:  L H Chan-Chan; C Tkaczyk; R F Vargas-Coronado; J M Cervantes-Uc; M Tabrizian; J V Cauich-Rodriguez
Journal:  J Mater Sci Mater Med       Date:  2013-04-25       Impact factor: 3.896

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Authors:  Jeremy J Glynn; Monica T Hinds
Journal:  Tissue Eng Part A       Date:  2014-07-31       Impact factor: 3.845

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