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碳纳米管载药策略:分子动力学模拟的新视角

Carbon Nanotube Loading Strategies for Peptide Drugs: Insights from Molecular Dynamics Simulations.

机构信息

School of Biological and Chemical Engineering, Zhejiang University of Science and Technology, Hangzhou 310023, People's Republic of China.

出版信息

Langmuir. 2024 Jul 2;40(26):13515-13526. doi: 10.1021/acs.langmuir.4c00973. Epub 2024 Jun 18.

DOI:10.1021/acs.langmuir.4c00973
PMID:38887887
Abstract

Carbon nanotubes (CNTs) can be regarded as a potential platform for transmembrane drug delivery as many experimental works have demonstrated their capability to effectively transport bioactive molecules into living cells. Within this framework, the loading of a peptide drug onto either the interior or exterior of CNTs has gained considerable interest. This study aims to conduct a comprehensive comparison of these two loading methods. To this end, we performed molecular dynamics simulations and the umbrella sampling technique to investigate the interaction energy, conformational changes, and free energy changes of a model peptide drug containing α-helical structure interacting with the inner or outer walls of a 14.7-nm-long (20,20) CNT. Our finding reveals that, for a tube of such dimensions, it is thermodynamically more favorable for the peptide to be loaded onto the inner tube wall than the outer tube wall, primarily due to a larger free energy change for the former strategy. Conversely, unloading the drug from the tube interior poses greater challenges. Moreover, the tube's curvature plays an essential role in influencing the conformation of the adsorbed peptide. Despite the relatively weaker van der Waals interaction between the CNT exterior and the peptide, loading the peptide onto the exterior may induce significant conformational changes, particularly affecting the peptide's α-helix structure. In contrast, loading of the peptide on the CNT interior could maintain most of the α-helical content. CNTs do not typically attract specific peptide residues, with adsorbed groups primarily determined by the peptide's configurations and orientations. Finally, we offer a guideline for selecting an optimal loading strategy for CNT-based drug delivery.

摘要

碳纳米管 (CNTs) 可以被视为一种潜在的跨膜药物输送平台,因为许多实验工作已经证明了它们将生物活性分子有效输送到活细胞中的能力。在这个框架内,将肽药物装载到 CNT 的内部或外部已经引起了相当大的兴趣。本研究旨在对这两种装载方法进行全面比较。为此,我们进行了分子动力学模拟和伞状采样技术,以研究含有 α-螺旋结构的模型肽药物与 14.7nm 长 (20,20) CNT 的内或外壁相互作用的相互作用能、构象变化和自由能变化。我们的发现表明,对于这样尺寸的管,肽药物装载到管内壁比装载到管外壁在热力学上更有利,主要是因为前者策略的自由能变化更大。相反,从管内卸载药物更具挑战性。此外,管的曲率在影响吸附肽的构象方面起着重要作用。尽管 CNT 外部与肽之间的范德华相互作用相对较弱,但将肽装载到外部可能会引起显著的构象变化,特别是影响肽的α-螺旋结构。相比之下,将肽装载到 CNT 内部可以保持大部分α-螺旋含量。CNTs 通常不会吸引特定的肽残基,吸附基团主要由肽的构型和取向决定。最后,我们为基于 CNT 的药物输送选择最佳装载策略提供了指导。

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