a Department of Mechanical Engineering , University of Alberta , Edmonton , AB , Canada.
J Biomol Struct Dyn. 2015;33(7):1567-97. doi: 10.1080/07391102.2014.954315. Epub 2014 Sep 11.
Functionalized carbon nanotubes (CNTs) constitute a new class of nanostructured materials that have vast applications in CNT purification and separation, biosensing, drug delivery, etc. Hybrids formed from the functionalization of CNT with biological molecules have shown interesting properties and have attracted great attention in recent years. Of particular interest is the hybridization of single- or double-stranded nucleic acid (NA) with CNT. Nucleobases, as the building blocks of NA, interact with CNT and contribute strongly to the stability of the NA-CNT hybrids and their properties. In this work, we present a thorough review of previous studies on the binding of nucleobases with graphene and CNT, with a focus on the simulation works that attempted to evaluate the structure and strength of binding. Discrepancies among these works are identified, and factors that might contribute to such discrepancies are discussed.
功能化碳纳米管 (CNT) 构成了一类新的纳米结构材料,在 CNT 纯化和分离、生物传感、药物输送等领域有广泛的应用。通过 CNT 与生物分子的功能化形成的杂化材料表现出了有趣的性质,近年来引起了极大的关注。特别引人关注的是单链或双链核酸 (NA) 与 CNT 的杂交。作为 NA 的构建模块,碱基与 CNT 相互作用,对 NA-CNT 杂化体的稳定性及其性质有重要贡献。在这项工作中,我们对以前关于碱基与石墨烯和 CNT 结合的研究进行了全面综述,重点介绍了尝试评估结合结构和强度的模拟工作。确定了这些工作之间的差异,并讨论了可能导致这些差异的因素。