Umemura Kazuo
Biophysics Section, Department of Physics, Tokyo University of Science, 1-3 Kagurazaka, Shinjuku, Tokyo 1628601, Japan.
Nanomaterials (Basel). 2015 Mar 12;5(1):321-350. doi: 10.3390/nano5010321.
Recent progress in the combination of nucleic acids and carbon nanotubes (CNTs) has been briefly reviewed here. Since discovering the hybridization phenomenon of DNA molecules and CNTs in 2003, a large amount of fundamental and applied research has been carried out. Among thousands of papers published since 2003, approximately 240 papers focused on biological applications were selected and categorized based on the types of nucleic acids used, but not the types of CNTs. This survey revealed that the hybridization phenomenon is strongly affected by various factors, such as DNA sequences, and for this reason, fundamental studies on the hybridization phenomenon are important. Additionally, many research groups have proposed numerous practical applications, such as nanobiosensors. The goal of this review is to provide perspective on biological applications using hybrids of nucleic acids and CNTs.
本文简要回顾了核酸与碳纳米管(CNTs)结合的最新进展。自2003年发现DNA分子与碳纳米管的杂交现象以来,已经开展了大量的基础研究和应用研究。在2003年以来发表的数千篇论文中,大约240篇专注于生物应用的论文根据所使用的核酸类型而非碳纳米管类型进行了选择和分类。这项调查表明,杂交现象受到多种因素的强烈影响,如DNA序列,因此,对杂交现象的基础研究很重要。此外,许多研究小组提出了许多实际应用,如纳米生物传感器。本综述的目的是提供关于使用核酸与碳纳米管杂交体的生物应用的观点。