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Multifunctional, biocompatible and pH-responsive carbon nanotube- and graphene oxide/tectomer hybrid composites and coatings

机译:多功能,生物相容且对pH敏感的碳纳米管和氧化石墨烯/弹性体杂化复合材料和涂料

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摘要

Here we present a route for non-covalent functionalization of carboxylated multi-walled carbon nanotubes and graphene oxide with novel two-dimensional peptide assemblies. We show that self-assembled amino-terminated biantennary and tetraantennary oligoglycine peptides (referred to as tectomers) effectively coat carboxylated multi-walled carbon nanotubes and also strongly interact with graphene oxide due to electrostatic interactions and hydrogen bonding as the driving force, respectively. The resulting hybrids can be made into free-standing conducting composites or applied in the form of thin, pH-switchable bioadhesive coatings onto graphene oxide fibers. Monitoring of cell viability of pancreatic cell lines, seeded on those CNT hybrids, show that they can be used as two- and three-dimensional scaffolds to tissue engineer tumour models for studying ex vivo the tumour development and response to treatment. This highly versatile method in producing pH-responsive hybrids and coatings offers an attractive platform for a variety of biomedical applications and for the development of functional materials such as smart textiles, sensors and bioelectronic devices.
机译:在这里,我们提出了具有新型二维肽组装体的羧基化多壁碳纳米管和氧化石墨烯的非共价官能化途径。我们显示自组装的氨基端接的双天线和四天线寡甘氨酸肽(称为保护子)有效地覆盖了羧基化的多壁碳纳米管,并且由于静电作用和氢键作用而分别与氧化石墨烯强烈相互作用。可以将所得的杂化物制成独立的导电复合材料,或以薄的,pH可切换的生物粘合剂涂层形式涂在氧化石墨烯纤维上。监测在这些CNT杂种上接种的胰腺细胞系的细胞活力,表明它们可用作组织工程学肿瘤模型的二维和三维支架,用于研究离体肿瘤的发展和对治疗的反应。这种生产pH值敏感的杂化物和涂料的高度通用的方法为各种生物医学应用以及功能性材料(如智能纺织品,传感器和生物电子设备)的开发提供了一个有吸引力的平台。

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