Characterization of a water-dispersed biodegradable polyurethane-silk composite sponge using13c solid-state nuclear magnetic resonance as coating material for silk vascular grafts with small diameters

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Abstract

Recently, Bombyx mori silk fibroin (SF) has been shown to be a suitable material for vascular prostheses for small arteries. In this study, we developed a softer SF graft by coating water-dispersed biodegradable polyurethane (PU) based on polycaprolactone and an SF composite sponge on the knitted SF vascular graft. Three kinds of13C solid-state nuclear magnetic resonance (NMR), namely carbon-13 (13C) cross-polarization/magic angle spinning (MAS),13C dipolar decoupled MAS, and13C refocused insensitive nuclei enhanced by polarization transfer (r-INEPT) NMR, were used to characterize the PU-SF coating sponge. Especially the13C r-INEPT NMR spectrum of water-dispersed biodegradable PU showed that both main components of the non-crystalline domain of PU and amorphous domain of SF were highly mobile in the hydrated state. Then, the small-diameter SF artificial vascular grafts coated with this sponge were evaluated through implantation experiments with rats. The implanted PU-SF-coated SF grafts showed a high patency rate. It was confirmed that the inside of the SF grafts was covered with vascular endothelial cells 4 weeks after implantation. These results showed that the water-dispersed biodegradable PU-SF-coated SF graft created in this study could be a strong candidate for small-diameter artificial vascular graft.

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Tanaka, T., Ibe, Y., Jono, T., Tanaka, R., Naito, A., & Asakura, T. (2021). Characterization of a water-dispersed biodegradable polyurethane-silk composite sponge using13c solid-state nuclear magnetic resonance as coating material for silk vascular grafts with small diameters. Molecules, 26(15). https://doi.org/10.3390/molecules26154649

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