Literature DB >> 31454565

Endothelialization of cardiovascular devices.

Soumen Jana1.   

Abstract

Blood-contacting surfaces of cardiovascular devices are not biocompatible for creating an endothelial layer on them. Numerous research studies have mainly sought to modify these surfaces through physical, chemical and biological means to ease early endothelial cell (EC) adhesion, migration and proliferation, and eventually to build an endothelial layer on the surfaces. The first priority for surface modification is inhibition of protein adsorption that leads to inhibition of platelet adhesion to the device surfaces, which may favor EC adhesion. Surface modification through surface texturing, if applicable, can bring some hopeful outcomes in this regard. Surface modifications through chemical and/or biological means may play a significant role in easy endothelialization of cardiovascular devices and inhibit smooth muscle cell proliferation. Cellular engineering of cells relevant to endothelialization can boost the positive outcomes obtained through surface engineering. This review briefly summarizes recent developments and research in early endothelialization of cardiovascular devices. STATEMENT OF SIGNIFICANCE: Endothelialization of cardiovascular implants, including heart valves, vascular stents and vascular grafts is crucial to solve many problems in our health care system. Numerous research efforts have been made to improve endothelialization on the surfaces of cardiovascular implants, mainly through surface modifications in three ways - physically, chemically and biologically. This review is intended to highlight comprehensive research studies to date on surface modifications aiming for early endothelialization on the blood-contacting surfaces of cardiovascular implants. It also discusses future perspectives to help guide endothelialization strategies and inspire further innovations.
Copyright © 2019 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Keywords:  Cardiovascular; Endothelialization; Heart valve; Vascular graft; Vascular stent

Year:  2019        PMID: 31454565     DOI: 10.1016/j.actbio.2019.08.042

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  16 in total

1.  In Vitro Analysis of the Cytocompatibility of a Novel Porcine Aortic Patch for Vascular Reconstruction.

Authors:  Sven Pantermehl; Said Alkildani; Elisa Meyer; Ignacio Stowe; Jens Pissarek; Pia Moosmann; Ole Jung; Mike Barbeck
Journal:  In Vivo       Date:  2022 Jan-Feb       Impact factor: 2.155

2.  Hemodynamic alternations following stent deployment and post-dilation in a heavily calcified coronary artery: In silico and ex-vivo approaches.

Authors:  Peshala T Gamage; Pengfei Dong; Juhwan Lee; Yazan Gharaibeh; Vladislav N Zimin; Luis A P Dallan; Hiram G Bezerra; David L Wilson; Linxia Gu
Journal:  Comput Biol Med       Date:  2021-10-21       Impact factor: 4.589

Review 3.  Iron Oxide Nanoparticles in Regenerative Medicine and Tissue Engineering.

Authors:  Ralf P Friedrich; Iwona Cicha; Christoph Alexiou
Journal:  Nanomaterials (Basel)       Date:  2021-09-08       Impact factor: 5.719

4.  In-Vitro Endothelialization Assessment of Heparinized Bovine Pericardial Scaffold for Cardiovascular Application.

Authors:  My Thi Ngoc Nguyen; Ha Le Bao Tran
Journal:  Polymers (Basel)       Date:  2022-05-26       Impact factor: 4.967

5.  Reduced plasma level of basic fibroblast growth factor is associated with incomplete device endothelialization at six months following left atrial appendage closure.

Authors:  Jing Xu; Xin Gong; Chuanzhi Chen; Jun Xing; Qi Wang; Weifeng Shen; Qi Zhang
Journal:  BMC Cardiovasc Disord       Date:  2021-05-16       Impact factor: 2.298

6.  Bloodstream Infection Following Cardiac Valve Repair: A Population-Based Study.

Authors:  Jack W McHugh; Khawaja M Talha; Larry M Baddour; Karen M Fischer; Juan Crestanello; Arman Arghami; Daniel C DeSimone
Journal:  Open Forum Infect Dis       Date:  2021-11-18       Impact factor: 3.835

Review 7.  Recent advance in treatment of atherosclerosis: Key targets and plaque-positioned delivery strategies.

Authors:  Li Li; Sainan Liu; Jianying Tan; Lai Wei; Dimeng Wu; Shuai Gao; Yajun Weng; Junying Chen
Journal:  J Tissue Eng       Date:  2022-03-24       Impact factor: 7.813

8.  Extracellular matrix-derived and low-cost proteins to improve polyurethane-based scaffolds for vascular grafts.

Authors:  Isabella C P Rodrigues; Éder S N Lopes; Karina D Pereira; Stephany C Huber; André Luiz Jardini; Joyce M Annichino-Bizzacchi; Augusto D Luchessi; Laís P Gabriel
Journal:  Sci Rep       Date:  2022-03-28       Impact factor: 4.379

9.  Vascular Polyurethane Prostheses Modified with a Bioactive Coating-Physicochemical, Mechanical and Biological Properties.

Authors:  Aleksandra Kuźmińska; Aleksandra Wojciechowska; Beata A Butruk-Raszeja
Journal:  Int J Mol Sci       Date:  2021-11-10       Impact factor: 5.923

10.  Tri-Layered Vascular Grafts Guide Vascular Cells' Native-like Arrangement.

Authors:  Xingyu Yuan; Wen Li; Bin Yao; Zhao Li; Deling Kong; Sha Huang; Meifeng Zhu
Journal:  Polymers (Basel)       Date:  2022-03-28       Impact factor: 4.329

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