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First-principles and Molecular Dynamics simulation studies of functionalization of Au 32 golden fullerene with amino acids

机译:Au 32黄金富勒烯与氨基酸功能化的第一性原理和分子动力学模拟研究

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With the growing potential applications of nanoparticles in biomedicine especially the increasing concerns of nanotoxicity of gold nanoparticles, the interaction between protein and nanoparticles is proving to be of fundamental interest for bio-functionalization of materials. The interaction of glycine (Gly) amino acid with Au32 fullerene was first investigated with B3LYP-D3/TZVP model. Several forms of glycine were selected to better understand the trends in binding nature of glycine interacting with the nanocage. We have evaluated various stable configurations of the Gly/Au32 complexes and the calculated adsorption energies and AIM analysis indicate that non-Gly, z-Gly and also tripeptide glycine can form stable bindings with Au32 at aqueous solution via their amino nitrogen (N) and/or carbonyl/carboxyl oxygen (O) active sites. Furthermore, cysteine, tyrosine, histidine and phenylalanine amino acids bound also strongly to the Au32 nanocage. Electronic structures and quantum molecular descriptors calculations also demonstrate the significant changes in the electronic properties of the nanocage due to the attachment of selected amino acids. DFT based MD simulation for the most stable complex demonstrate that Gly/Au32 complex is quite stable at ambient condition. Our first-principles findings offer fundamental insights into the functionalization of Au32 nanocage and envisage its applicability as novel carrier of the drugs.
机译:随着纳米颗粒在生物医学中的潜在应用的增长,特别是金纳米颗粒对纳米毒性的关注日益增加,蛋白质和纳米颗粒之间的相互作用被证明是材料生物功能化的基础。首先利用B3LYP-D3 / TZVP模型研究了甘氨酸(Gly)氨基酸与Au32富勒烯的相互作用。选择了几种形式的甘氨酸以更好地理解甘氨酸与纳米笼相互作用的结合性质的趋势。我们评估了Gly / Au32配合物的各种稳定构型,计算得出的吸附能和AIM分析表明,非Gly,z-Gly以及三肽甘氨酸可在水溶液中通过其氨基氮(N)和Au32与Au32形成稳定结合。 /或羰基/羧基氧(O)活性位。此外,半胱氨酸,酪氨酸,组氨酸和苯丙氨酸氨基酸也与Au32纳米笼牢固结合。电子结构和量子分子描述符的计算也表明,由于所选氨基酸的附着,纳米笼的电子性质发生了显着变化。基于DFT的最稳定配合物的MD模拟表明,Gly / Au32配合物在环境条件下非常稳定。我们的第一原理发现为Au32纳米笼的功能化提供了基本见识,并设想了其作为药物的新型载体的适用性。

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