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Article

Bioabsorbable Polymeric Stent for the Treatment of Coarctation of the Aorta (CoA) in Children: A Methodology to Evaluate the Design and Mechanical Properties of PLA Polymer

by
Flávio José dos Santos
1,*,
Bruno Agostinho Hernandez
1,
Rosana Santos
2,
Marcel Machado
1,
Mateus Souza
1,
Edson A. Capello Sousa
1 and
Aron Andrade
3
1
Department of Mechanical Engineering, Centre for Simulation in Bioengineering, Biomechanics and Biomaterials, School of Engineering (CS3B), Campus of Bauru, UNESP—São Paulo State University, São Paulo 17033-360, Brazil
2
Department of Engineering, PUC—Pontifical Catholic University of São Paulo, São Paulo 05014-901, Brazil
3
CEAC—Centre for Engineering in Circulatory Assistance, Dante Pazzanese Institute of Cardiology, São Paulo 04012-909, Brazil
*
Author to whom correspondence should be addressed.
Materials 2023, 16(12), 4403; https://doi.org/10.3390/ma16124403
Submission received: 16 March 2023 / Revised: 26 April 2023 / Accepted: 11 May 2023 / Published: 15 June 2023
(This article belongs to the Topic Computational Materials Science for Polymers)

Abstract

This study presents a methodology that combines experimental tests and the finite element method, which is able to analyse the influence of the geometry on the mechanical behaviour of stents made of bioabsorbable polymer PLA (PolyLactic Acid) during their expansion in the treatment of coarctation of the aorta (CoA). Tensile tests with standardized specimen samples were conducted to determine the properties of a 3D-printed PLA. A finite element model of a new stent prototype was generated from CAD files. A rigid cylinder simulating the expansion balloon was also created to simulate the stent opening performance. A tensile test with 3D-printed customized stent specimens was performed to validate the FE stent model. Stent performance was evaluated in terms of elastic return, recoil, and stress levels. The 3D-printed PLA presented an elastic modulus of 1.5 GPa and a yield strength of 30.6 MPa, lower than non-3D-printed PLA. It can also be inferred that crimping had little effect on stent circular recoil performance, as the difference between the two scenarios was on average 1.81%. For an expansion of diameters ranging from 12 mm to 15 mm, as the maximum opening diameter increases, the recoil levels decrease, ranging from 10 to 16.75% within the reported range. These results point out the importance of testing the 3D-printed PLA under the conditions of using it to access its material properties; the results also indicate that the crimping process could be disregarded in simulations to obtain fast results with lower computational cost and that new proposed stent geometry made of PLA might be suitable for use in CoA treatments—the approach that has not been applied before. The next steps will be to simulate the opening of an aorta vessel using this geometry.
Keywords: bioabsorbable stent; coarctation of the aorta; finite element analysis bioabsorbable stent; coarctation of the aorta; finite element analysis

Share and Cite

MDPI and ACS Style

dos Santos, F.J.; Hernandez, B.A.; Santos, R.; Machado, M.; Souza, M.; Capello Sousa, E.A.; Andrade, A. Bioabsorbable Polymeric Stent for the Treatment of Coarctation of the Aorta (CoA) in Children: A Methodology to Evaluate the Design and Mechanical Properties of PLA Polymer. Materials 2023, 16, 4403. https://doi.org/10.3390/ma16124403

AMA Style

dos Santos FJ, Hernandez BA, Santos R, Machado M, Souza M, Capello Sousa EA, Andrade A. Bioabsorbable Polymeric Stent for the Treatment of Coarctation of the Aorta (CoA) in Children: A Methodology to Evaluate the Design and Mechanical Properties of PLA Polymer. Materials. 2023; 16(12):4403. https://doi.org/10.3390/ma16124403

Chicago/Turabian Style

dos Santos, Flávio José, Bruno Agostinho Hernandez, Rosana Santos, Marcel Machado, Mateus Souza, Edson A. Capello Sousa, and Aron Andrade. 2023. "Bioabsorbable Polymeric Stent for the Treatment of Coarctation of the Aorta (CoA) in Children: A Methodology to Evaluate the Design and Mechanical Properties of PLA Polymer" Materials 16, no. 12: 4403. https://doi.org/10.3390/ma16124403

APA Style

dos Santos, F. J., Hernandez, B. A., Santos, R., Machado, M., Souza, M., Capello Sousa, E. A., & Andrade, A. (2023). Bioabsorbable Polymeric Stent for the Treatment of Coarctation of the Aorta (CoA) in Children: A Methodology to Evaluate the Design and Mechanical Properties of PLA Polymer. Materials, 16(12), 4403. https://doi.org/10.3390/ma16124403

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