Title of article :
Therapy with new generation of biodegradable and bioconjugate 3D printed artificial gastrointestinal lumen
Author/Authors :
Karbasian ، Matin Department of Mechanical Engineering - Islamic Azad University, Khomeinishahr Branch , Eftekhari ، Ali Department of Mechanical Engineering - Islamic Azad University, Khomeinishahr Branch , Karimzadeh Kolamroudi ، Mohammad Mechanical Engineering Department - Eastern Mediterranean University , Kamyab Moghadas ، Bahareh Department of Applied Researches, Department of Chemical Engineering - Chemical, Petroleum and Polymer Engineering Research Center - Islamic Azad University, Shiraz Branch , Nasri ، Peiman Metabolic Liver Disease Research Center, Child Growth and Development Research Center, Research Institute for Primordial Prevention of Non-Communicable Disease - Isfahan University of Medical Sciences , Jasemi ، Amir Department of Chemical Engineering - Islamic Azad University, Shiraz Branch , Telloo ، Mahshid Firoozgar Hospital - Iran University of Medical Sciences , Saber-Samandari ، Saeed New Technologies Research Center - Amirkabir University of Technology , Khandan ، Amirsalar New Technologies Research Center - Amirkabir University of Technology
From page :
391
To page :
399
Abstract :
Objective(s): Many patients die due to vascular, gastrointestinal lumen problems, and coronary heart diseases. Synthetic vessels that are made of biodegradablenanofiber polymers have significant properties such as proper biodegradability and efficient physical properties such as high strength and flexibility. Some of the best options for supporting cells in soft tissue engineering and design are applications of thermoplastic polyurethane polymer in the venous tissue. In this study, the first nanoparticlereinforced polymeric artificial prosthesis was designed and tested to be used in the human body.Materials and Methods: In this study, artificial gastrointestinal lumen were fabricated and prepared using a 3D printer. To improve cell adhesion, wettability properties and mechanical stability of elastin biopolymer with magnetic nanoparticles (MNPs) as well as singlewalled carbon nanotubes (SWCNT) were prepared as separate filaments. MNPs were made in 5–7 mm sizes and then examined for mechanical, biological, and hyperthermia properties. Then, the obtained results of the gastrointestinal lumen were simulated using the Abaqus software package with a threebranch. The results were evaluated by X-ray diffraction (XRD) and scanning electron microscopy (SEM) for morphology and phase analysis. Results: The obtained results of the designed vessels showed remarkable improvement in mechanical properties of the SWCNT vessels and hyperthermia properties of the vessels containing the MNPs. The results of computational fluid dynamics (CFD) analysis showed that the artificial vessels had lower shear stress at the output. Conclusion: Fivemm MNP containing vessels showed noticeable chemical and biological properties along with ideal magnetic results in the treatment of thrombosis and vascular obstruction.
Keywords :
Cardiovascular , Gastrointestinal lumen , Magnetite nanoparticle , Polyurethane , tissue
Journal title :
Iranian Journal of Basic Medical Sciences
Journal title :
Iranian Journal of Basic Medical Sciences
Record number :
2578934
Link To Document :
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