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抗癌药物羟基脲在石墨烯、氮化硼、氮化铝和氮化镓纳米片及其掺杂结构上的吸附行为研究:密度泛函理论(DFT)和导体屏蔽模型(COSMO)计算

Investigation of the adsorption behavior of the anti-cancer drug hydroxyurea on the graphene, BN, AlN, and GaN nanosheets and their doped structures DFT and COSMO calculations.

作者信息

Piya Afiya Akter, Hossain A K M Akther

机构信息

Department of Physics, Mawlana Bhashani Science and Technology University Tangail Bangladesh

Department of Physics, Bangladesh University of Engineering and Technology Dhaka Bangladesh

出版信息

RSC Adv. 2023 Sep 12;13(39):27309-27320. doi: 10.1039/d3ra04072k. eCollection 2023 Sep 8.

Abstract

To reduce the direct side effects of chemotherapy, researchers are trying to establish a new approach of a drug-delivery system using nanomaterials. In this study, we investigated graphene and its derivative nanomaterials for their favorable adsorption behavior with the anti-cancer drug hydroxyurea (HU) using DFT calculations. Initially, different pristine and doped graphene and its derivatives were taken into consideration as HU drug carriers. Among them, AlN, GaN, GaN-doped AlN, and AlN-doped GaN nanosheets exhibited favorable adsorption behavior with HU. The HU adsorbed on these four nanosheets with adsorption energies of -0.92, -0.75, -0.83, and -0.69 eV, transferring 0.16, 0.032, 0.108, and 0.230 e charges to the nanosheets, respectively, in air medium. In water solvent media, these four nanosheets interacted with HU by -0.56, -0.45, -0.58, and -0.56 eV by accepting a significant amount of charge of about 0.125, 0.128, 0.192, and 0.126 e from HU. The dipole moment and COSMO analysis also indicated that these nanosheets, except for GaN-doped AlN, show high asymmetricity and solubility in water solvent media due to the increased values of the dipole moment by two or three times after the adsorption of the HU drug. Quantum molecular descriptors also suggest that the sensitivity and reactivity of the nanosheets are enhanced during the interaction with HU. Therefore, these nanosheets can be used as anti-cancer drug carriers.

摘要

为了降低化疗的直接副作用,研究人员正试图建立一种使用纳米材料的药物递送系统新方法。在本研究中,我们使用密度泛函理论计算研究了石墨烯及其衍生物纳米材料与抗癌药物羟基脲(HU)的良好吸附行为。最初,考虑了不同的原始和掺杂石墨烯及其衍生物作为HU药物载体。其中,AlN、GaN、GaN掺杂的AlN和AlN掺杂的GaN纳米片与HU表现出良好的吸附行为。在空气介质中,HU吸附在这四种纳米片上的吸附能分别为-0.92、-0.75、-0.83和-0.69 eV,分别向纳米片转移了0.16、0.032、0.108和0.230个电子电荷。在水溶剂介质中,这四种纳米片通过从HU接受约0.125、0.128、0.192和0.126个电子的大量电荷,与HU的相互作用能分别为-0.56、-0.45、-0.58和-0.56 eV。偶极矩和COSMO分析还表明,除了GaN掺杂的AlN外,这些纳米片在吸附HU药物后偶极矩值增加了两到三倍,在水溶剂介质中表现出高不对称性和溶解性。量子分子描述符也表明,纳米片在与HU相互作用期间的敏感性和反应性增强。因此,这些纳米片可作为抗癌药物载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b523/10496457/08d954d97217/d3ra04072k-f1.jpg

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