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Article

Influence of Oligomeric Lactic Acid and Structural Design on Biodegradation and Absorption of PLA-PHB Blends for Tissue Engineering

1
Department of Biomedical Engineering and Measurement, Faculty of Mechanical Engineering, Technical University of Košice, 042 00 Košice, Slovakia
2
Department of Applied Mathematics and Informatics, Faculty of Mechanical Engineering, Technical University of Košice, Letná 9, 042 00 Košice, Slovakia
*
Author to whom correspondence should be addressed.
Polymers 2024, 16(21), 2969; https://doi.org/10.3390/polym16212969
Submission received: 27 September 2024 / Revised: 18 October 2024 / Accepted: 21 October 2024 / Published: 23 October 2024
(This article belongs to the Special Issue Bio-Inspired Polymers: Synthesis, Properties and Applications)

Abstract

The advancing development in biomaterials and biology has enabled the extension of 3D printing technology to the bioadditive manufacturing of degradable hard tissue substitutes. One of the key advantages of bioadditive manufacturing is that it has much smaller design limitations than conventional manufacturing and is therefore capable of producing implants with complex geometries. In this study, three distinct blends of polylactic acid (PLA) and polyhydroxybutyrate (PHB) were produced using Fused Deposition Modeling (FDM) technology. Two of these blends were plasticized with oligomeric lactic acid (OLA) at concentrations of 5 wt% and 10 wt%, while the third blend remained unplasticized. Each blend was fabricated in two structural modifications: solid and porous. The biodegradation behavior of the produced specimens was examined through an in vitro experiment using three different immersion solutions: saline solution, Hank’s balanced salt solution (HBSS), and phosphate-buffered saline (PBS). All examined samples were also subjected to chemical analysis: atomic absorption spectroscopy (AAS), scanning electron microscopy (SEM), and energy-dispersive spectrometry (EDS). The results of the degradation experiments indicated a predominantly better absorption capacity of the samples with a porous structure compared to the full structure. At the same time, the blend containing a higher concentration of OLA exhibited enhanced pH stability over the evaluation period, maintaining relatively constant pH values before experiencing a minor decline at the end of the study. This observation indicates that the increased presence of the plasticizer may provide a buffering effect, effectively mitigating the acidification associated with material degradation.
Keywords: PLA/PHB polymer mixture; scaffold; 3D printing; in vitro; biodegradation PLA/PHB polymer mixture; scaffold; 3D printing; in vitro; biodegradation
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MDPI and ACS Style

Čajková, J.; Trebuňová, M.; Modrák, M.; Ižaríková, G.; Bačenková, D.; Balint, T.; Živčák, J. Influence of Oligomeric Lactic Acid and Structural Design on Biodegradation and Absorption of PLA-PHB Blends for Tissue Engineering. Polymers 2024, 16, 2969. https://doi.org/10.3390/polym16212969

AMA Style

Čajková J, Trebuňová M, Modrák M, Ižaríková G, Bačenková D, Balint T, Živčák J. Influence of Oligomeric Lactic Acid and Structural Design on Biodegradation and Absorption of PLA-PHB Blends for Tissue Engineering. Polymers. 2024; 16(21):2969. https://doi.org/10.3390/polym16212969

Chicago/Turabian Style

Čajková, Jana, Marianna Trebuňová, Marcel Modrák, Gabriela Ižaríková, Darina Bačenková, Tomáš Balint, and Jozef Živčák. 2024. "Influence of Oligomeric Lactic Acid and Structural Design on Biodegradation and Absorption of PLA-PHB Blends for Tissue Engineering" Polymers 16, no. 21: 2969. https://doi.org/10.3390/polym16212969

APA Style

Čajková, J., Trebuňová, M., Modrák, M., Ižaríková, G., Bačenková, D., Balint, T., & Živčák, J. (2024). Influence of Oligomeric Lactic Acid and Structural Design on Biodegradation and Absorption of PLA-PHB Blends for Tissue Engineering. Polymers, 16(21), 2969. https://doi.org/10.3390/polym16212969

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