Literature DB >> 20666613

Improved endothelialization of titanium vascular implants by extracellular matrix secreted from endothelial cells.

Qiufen Tu1, Yuancong Zhao, Xiaoqing Xue, Jin Wang, Nan Huang.   

Abstract

A variety of metals have been widely used in construction of cardiovascular implants (CVIs), such as artificial heart valves, ventricular pumps, and vascular stents. Although great effects have been put into rigorous anticoagulation, late thrombosis still occurred due to inferior blood and cell compatibility. Natural endothelium is popularly regarded as the only substance that has long-term anticoagulant ability. So, establishment of a compact endothelial cell (EC) monolayer on CVIs surface is a guarantee for their long-term potency. In the work described here, titanium (Ti) disks were coated with extracellular matrix (ECM) directly secreted by human umbilical vein endothelial cells (HUVECs), so as to help ECs proliferate and migrate and to improve their endothelialization in vivo. Deposition of ECM on Ti disks was detected by immunofluorescence microscopy, diffuse reflectance Fourier transform infrared spectroscopy, scanning electron microscopy, and atomic force microscopy. The surface topography and wettability of the Ti disks significantly changed after ECM deposition. Most importantly, it was found that ECM deposition inhibited platelet adhesion, stimulated EC proliferation, increased EC migration speed in vitro, and eventually accelerated the re-cellularization speed of Ti disks in vivo. These important results render it reasonable and feasible to modify CVIs with ECM secreted from ECs for improving their long-term potency.

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Year:  2010        PMID: 20666613     DOI: 10.1089/ten.TEA.2010.0088

Source DB:  PubMed          Journal:  Tissue Eng Part A        ISSN: 1937-3341            Impact factor:   3.845


  7 in total

1.  Biomimetic modification of metallic cardiovascular biomaterials: from function mimicking to endothelialization in vivo.

Authors:  Yajun Weng; Junying Chen; Qiufen Tu; Quanli Li; Manfred F Maitz; Nan Huang
Journal:  Interface Focus       Date:  2012-03-28       Impact factor: 3.906

2.  A novel in vitro model for preclinical testing of the hemocompatibility of intravascular stents according to ISO 10993-4.

Authors:  Stefan Sinn; Torsten Scheuermann; Stephan Deichelbohrer; Gerhard Ziemer; Hans P Wendel
Journal:  J Mater Sci Mater Med       Date:  2011-05-21       Impact factor: 3.896

3.  Effect of tissue specificity on the performance of extracellular matrix in improving endothelialization of cardiovascular implants.

Authors:  Qiufen Tu; Zhilu Yang; Ying Zhu; Kaiqin Xiong; Manfred F Maitz; Jin Wang; Yuancong Zhao; Nan Huang; Jian Jin; Yuechang Lei
Journal:  Tissue Eng Part A       Date:  2012-10-04       Impact factor: 3.845

4.  Surface modification of polytetrafluoroethylene (PTFE) with a heparin-immobilized extracellular matrix (ECM) coating for small-diameter vascular grafts applications.

Authors:  Chenglong Yu; Huaguang Yang; Lu Wang; James A Thomson; Lih-Sheng Turng; Guoping Guan
Journal:  Mater Sci Eng C Mater Biol Appl       Date:  2021-07-09

5.  Collagen-mimetic hydrogels promote human endothelial cell adhesion, migration and phenotypic maturation.

Authors:  Dany J Munoz-Pinto; Viviana R Guiza-Arguello; Silvia M Becerra-Bayona; Josh Erndt-Marino; Satyavrata Samavedi; Sarah Malmut; Brooke Russell; Magnus Hӧӧk; Mariah S Hahn
Journal:  J Mater Chem B       Date:  2015-07-15       Impact factor: 6.331

6.  Notoginsenoside Fc Accelerates Reendothelialization following Vascular Injury in Diabetic Rats by Promoting Endothelial Cell Autophagy.

Authors:  Jingjing Liu; Chunyu Jiang; Xu Ma; Lishuai Feng; Jianbo Wang
Journal:  J Diabetes Res       Date:  2019-09-03       Impact factor: 4.011

7.  Tailoring ZE21B Alloy with Nature-Inspired Extracellular Matrix Secreted by Micro-Patterned Smooth Muscle Cells and Endothelial Cells to Promote Surface Biocompatibility.

Authors:  Changsheng Liu; Lan Chen; Kun Zhang; Jingan Li; Shaokang Guan
Journal:  Int J Mol Sci       Date:  2022-03-16       Impact factor: 5.923

  7 in total

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