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Synthesis and characterization of shape memory polyurethane for biomedical applications

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2024
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Özet (EN)

Incorporation of shape memory polymers into biomedical devices is an attractive option due to their notable advantages of low cost, biocompatibility, tunable degradability, patient-specific design, and adjustable mechanical and thermal properties. Shape memory polyurethanes are particularly attractive due to their extensive temperature range for shape recovery as well as the ability to fine-tune the glass transition temperature. This study aimed to synthesize an SMPU using glycerol as a chain extender with a glass transition temperature within a suitable temperature range for biomedical applications. The results showed that the triggering temperatures for the synthesized samples changed between 63.95 °C and 88.21 °C. Shape memory properties were investigated for the temperature range of 40 °C and 75 °C. Shape recovery times were found to be substantially shorter with increasing temperature, with 102 seconds at 40 °C and ~1 second at 75 °C. Shape fixity and shape recovery rates for the same temperature ranges were 77.8 % & 85.6 % at 40 °C and 100 % & 100 % at 75 °C. Cytotoxicity assay results indicated promising biocompatibility of the synthesized material for biomedical purposes. Overall, the synthesized polymers were found to be a potential candidate for biomedical applications such as stents, aneurysm filling, or occlusion devices.

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Serap Başkır

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Serap Başkır (Doctorate thesis). Synthesis and characterization of shape memory polyurethane for biomedical applications, 2024, Boğaziçi University.

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