Biodegradable and antithrombogenic chitosan/elastin blended polyurethane electrospun membrane for vascular tissue integration

Author:

Selvaras Thiviya1,Alshamrani Somyah Ali1,Gopal Rathosivan1,Jaganathan Saravana Kumar2,Sivalingam Sivakumar3,Kadiman Suhaini4,Saidin Syafiqah15

Affiliation:

1. Department of Biomedical Engineering & Health Sciences, Faculty of Electrical Engineering Universiti Teknologi Malaysia Johor Bahru Malaysia

2. School of Engineering, College of Science University of Lincoln Lincoln UK

3. Department of Cardiothoracic Surgery Institut Jantung Negara Kuala Lumpur Malaysia

4. Department of Clinical Research Institut Jantung Negara Kuala Lumpur Malaysia

5. IJN‐UTM Cardiovascular Engineering Centre, Institute of Human Centered Engineering Universiti Teknologi Malaysia Johor Bahru Malaysia

Abstract

AbstractCurrent commercialized vascular membranes to treat coronary heart disease (CHD) such as Dacron and expanded polytetrafluoroethylene (ePTFE) have been associated with biodegradable and thrombogenic issues that limit tissue integration. In this study, biodegradable vascular membranes were fabricated in a structure of electrospun nanofibers composed of polyurethane (PU), chitosan (CS) and elastin (0.5%, 1.0%, and 1.5%). The physicochemical properties of the membranes were analyzed, followed by the conduction of several test analyses. The blending of CS and elastin has increased the fiber diameter, pore size and porosity percentage with the appearance of identical chemical groups. The wettability of PU membranes was enhanced up to 39.6%, demonstrating higher degradation following the incorporation of both natural polymers. The PU/CS/elastin electrospun membranes exhibited a controlled release of CS (Higuchi and first‐order mechanisms) and elastin (Higuchi and Korsmeyer‐Peppas mechanisms). Delayed blood clotting time was observed through both activated partial thromboplastin time (APTT) and partial thromboplastin time (PT) analyses where significantly delay of 26.8% APTT was recorded on the PU membranes blended with CS and elastin, in comparison with the PU membranes, supporting the membrane's antithrombogenic properties. Besides, these membranes produced a minimum of 2.6 ± 0.1 low hemolytic percentage, projecting its hemocompatibility to be used as vascular membrane.

Publisher

Wiley

Subject

Biomedical Engineering,Biomaterials

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