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Applications of carbon nanotubes-based biomaterials in biomedical nanotechnology

机译:碳纳米管基生物材料在生物医学纳米技术中的应用

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摘要

One of the facets of nanotechnology applications is the immense opportunities they offer for new developments in medicine and health sciences. Carbon nanotubes (CNTs) have particularly attracted attention for designing new monitoring systems for environment and living cells as well as nanosensors. Carbon nanotubes-based biomaterials are also employed as support for active prosthesis or functional matrices in reparation of parts of the human body. These nanostructures are studied as molecular-level building blocks for the complex and miniaturized medical device, and substrate for stimulation of cellular growth. The CNTs are cylindrical shaped with caged molecules which can act as nanoscale containers for molecular species, well required for biomolecular recognition and drug delivery systems. Endowed with very large aspect ratios, an excellent electrical conductivity and inertness along with mechanical robustness, nanotubes found enormous applications in molecular electronics and bioelectronics. The ballistic electrical behaviour of SWNTs conjugated with functionalization promotes a large variety of biosensors for individual molecules. Actuative response of CNTs is considered very promising feature for nanodevices, micro-robots and artificial muscles. An description of CNTs based biomaterials is attempted in this review, in order to point out their enormous potential for biomedical nanotechnology and nanobiotechnology.
机译:纳米技术应用的方面之一是它们为医学和健康科学的新发展提供了巨大的机会。碳纳米管(CNT)在设计用于环境和活细胞以及纳米传感器的新型监测系统方面尤其引起关注。基于碳纳米管的生物材料也被用作人体修复中活性假体或功能性基质的载体。这些纳米结构被研究为复杂和小型化医疗设备的分子水平构建基块,以及刺激细胞生长的底物。碳纳米管是圆柱形的,带有笼状分子,可以充当分子物种的纳米级容器,这是生物分子识别和药物输送系统非常需要的。纳米管具有非常高的纵横比,出色的导电性和惰性以及机械强度,因此在分子电子学和生物电子学中得到了广泛的应用。与功能化结合的单壁碳纳米管的弹道电学行为促进了各种针对单个分子的生物传感器。碳纳米管的驱动响应被认为是纳米设备,微型机器人和人造肌肉非常有前途的功能。在本综述中,尝试对基于CNT的生物材料进行描述,以指出其在生物医学纳米技术和纳米生物技术方面的巨大潜力。

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