Dipartimento di Ingegneria Civile e Ambientale, Università degli Studi di Perugia, Strada di Pentima 4, Terni 05100, Italy.
Italian Consortium for Science and Technology of Materials (INSTM), Via Giusti 9, Firenze 50121, Italy.
ACS Appl Mater Interfaces. 2021 May 12;13(18):21007-21017. doi: 10.1021/acsami.1c03288. Epub 2021 May 3.
In this study, regenerated silk (RS) obtained from cocoons is compounded with carboxyl-functionalized carbon nanotubes (f-CNTs) in an aqueous environment for the fabrication of functional bio-adhesives. Molecular interactions between RS and carboxyl groups of CNTs result in structural increase of the β-sheet formation, obtaining a resistant adhesive suitable for a wet biological substrate. Moreover, the functionalization of CNTs promotes their dispersion in RS, thus enabling the production of films with controlled electrical conductivity. The practical utility of such a property is demonstrated through the fabrication of a piezoelectric device implanted in a rat to monitor the breathing in vivo and to be used as a self-powered system. Finally, RS/f-CNTs were used as a printable biomaterial ink to three dimensionally print bilayer hollow tubular structures composed of poly(3-hydroxybutyrate--3-hydroxyvalerate) (PHBV) and RS. Initial tests carried out by seeding and growing human skin fibroblasts demonstrated that the 3D printed bilayer hollow cylindrical structures offer a suitable surface for the seeded cells to attach and proliferate. In general, the herein proposed RS/f-CNT composite serves as a versatile material for solvent-free dispersion processing and 3D printing, thus paving a new approach to prepare multifunctional materials with potential applications of great interest in sealing biological substrates and implantable devices for regenerative medicine.
在这项研究中,从蚕茧中获得的再生丝(RS)与羧基功能化的碳纳米管(f-CNTs)在水相环境中复合,用于制备功能性生物胶粘剂。RS 和 CNTs 的羧基之间的分子相互作用导致β-折叠结构增加,从而获得适合湿生物基底的耐粘胶。此外,CNTs 的功能化促进了其在 RS 中的分散,从而能够生产具有可控导电性的薄膜。这种特性的实际应用通过制造植入大鼠体内的压电装置得以证明,该装置用于监测体内呼吸并用作自供电系统。最后,RS/f-CNTs 被用作可打印的生物材料墨水,以三维打印由聚(3-羟基丁酸酯-3-羟基戊酸酯)(PHBV)和 RS 组成的双层中空管状结构。通过接种和培养人皮肤成纤维细胞进行的初步测试表明,3D 打印的双层中空圆柱形结构为接种细胞提供了一个合适的附着和增殖表面。总的来说,本文提出的 RS/f-CNT 复合材料可用作无溶剂分散加工和 3D 打印的多功能材料,为制备具有潜在应用价值的多功能材料开辟了新途径,这些材料在密封生物基底和用于再生医学的植入式设备方面具有重要意义。