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Screening two dimensional materials for the transportation and delivery of diverse genetic materials

机译:筛选的二维材料运输和交付不同的基因材料

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摘要

In spite of several reports of graphene and other 2D materials concerning their capacity for biomolecular adsorption and delivery, recent toxicity evaluations found them to be nanotoxic toward different biomolecules, especially nucleic acids. Therefore, there is urgent demand for the synthesis of 2D materials exhibiting biocompatible and non-nanotoxic features. In this article, employing classical molecular dynamics simulations, we provide a benchmarking of h2D-C2N, graphene and hexagonal boron nitride (h-BN) toward the adsorption, preservation, targeting and delivery of various classes of nucleic acids namely single stranded DNA, double stranded natural as well as unnatural base substituted DNA and two different types of human telomeric guanine quadruplexes, all comprising different secondary structures. Our simulations reveal that, while h2D-C2N preserves the structures of most of the nucleic acids, graphene and h-BN disrupt them through strong pi-pi stacking with aromatic nucleobases. Interestingly, for the first time we identified a 'quartet-by-quartet' disruption mechanism of guanine quadruplexes, but only on graphene and h-BN. The lateral diffusion of adsorbed nucleic acids over C2N is restricted unlike that over both graphene and h-BN, thereby increasing the targeting efficacy for C2N. Modeling of the delivery phenomena suggests orders of magnitude longer release times from graphene and h-BN compared to C2N, thereby demonstrating the preferential suitability of C2N for all the hierarchical steps of nucleic acid transportation.
机译:尽管一些石墨烯和其他的报告二维材料有关他们的能力生物分子吸附和交付,最近发现他们是nanotoxic毒性评估对不同的生物分子,尤其是核酸酸。合成二维材料展示生物相容性和non-nanotoxic特性。文章采用经典分子动力学模拟中,我们提供了一个基准h2D-C2N,石墨烯和六角氮化硼(h-BN)吸附,保存,各种类的目标和交付即核酸单链DNA,翻倍困自然以及自然的基础取代DNA和两种不同类型的人端粒的鸟嘌呤四重的,所有组成不同的二级结构。透露,虽然h2D-C2N保存大部分的核酸结构,石墨烯通过强大的介子和h-BN破坏它们与芳香碱基堆积。有趣的是,我们第一次发现了quartet-by-quartet中断机制鸟嘌呤四重的,但只有在石墨烯和h-BN。酸/ C2N限制与结束石墨烯和h-BN,从而增加了针对C2N功效。交货现象表明数量级再从石墨烯和h-BN释放时间C2N相比,从而展示了优惠C2N的适用性分层核酸的步骤交通工具。

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