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Plasticised Regenerated Silk/Gold Nanorods Hybrids as Sealant and Bio-Piezoelectric Materials

机译:作为密封剂和生物压电材料的塑化再生丝绸/金纳米杆杂交物

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摘要

Manual and mechanical suturing are currently the gold standard for bowel anastomosis. If tissue approximation fails, anastomotic leaks occur. Anastomotic leaks may have catastrophic consequences. The development of a fully absorbable, biocompatible sealant material based on a bio-ink silk fibroin can reduce the chance of anastomotic leaks. We have produced a Ca-modified plasticised regenerated silk (RS) with gold nanorods sealant. This sealant was applied to anastomosed porcine intestine. Water absorption from wet tissue substrate applied compressive strains on hybrid RS films. This compression results in a sealant effect on anastomosis. The increased toughness of the hybrid plasticised RS resulted in the designing of a bio-film with superior elongation at break (i.e., ≈200%) and bursting pressure. We have also reported structure-dependent piezoelectricity of the RS film that shows a piezoelectric effect out of the plane. We hope that in the future, bowel anastomosis can be simplified by providing a multifunctional bio-film that makes feasible the mechanical tissue joint without the need for specific tools and could be used in piezoelectric sealant heads.
机译:手动和机械缝合目前是肠吻合术的金标准。如果组织近似失败,则发生吻合泄漏。吻合泄漏可能具有灾难性的后果。基于生物墨水丝素蛋白的完全可吸收的生物相容性密封剂的开发可以减少吻合泄漏的可能性。我们生产了具有金纳米棒密封剂的CA改性的塑化再生丝绸(RS)。将该密封剂施用于亚麻疹肠肠。湿组织基材的吸水施加杂交RS膜上的压缩菌株。这种压缩导致对吻合术的密封效果。杂交塑化的韧性增加,导致在断裂(即,≈200%)和爆破压力下具有优异的伸长率的生物膜。我们还报告了RS膜的结构依赖性压电性,其显示出平面的压电效果。我们希望在未来,通过提供多功能生物膜,可以简化肠吻合,这使得机械组织接头不需要特定工具,可以在压电密封剂头中使用。

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