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Potential applications of armchair, zigzag, and chiral boron nitride nanotubes as a drug delivery system: Letrozole anticancer drug encapsulation

机译:扶手椅,Zigzag和手性硼氮化物纳米管作为药物递送系统的潜在应用:Letrozole抗癌药物包封

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A density functional theory calculation has been applied to be investigated the ability of (12,12) armchair, (21,0) zigzag, and (18,5) chiral boron nitride nanotubes (BNNT) as the drug nanocarrier in Letrozole delivery. For this purpose, the behavior of drug Letrozole when encapsulated into different chirality of BNNTs with the same diameter was studied. Moreover, the reduced side effects and increasing solubility of Letrozole can be achieved by encapsulation in boron nitride nanotubes. A complete understanding of the encapsulation process of drug molecules into BNNTs is necessary for the development of drug delivery systems. Geometry optimizations of the three types of BNNTs and drug Letrozole have been performed by means of density functional theory calculation, using the functional wb97xd with 6-31G basis set. The results indicate that Letrozole is encapsulated in cavity of the nanotubes. The structural and the electronic properties of encapsulated Letrozole in the studied systems have been also predicted by quantum mechanical descriptors such as equilibrium distances, highest occupied molecular orbital (HOMO)-lowest unoccupied molecular orbital (LUMO) energy gap. The quantum mechanical calculations verify that the armchair and the chiral single-walled boron nitride nanotubes could spontaneously adsorb Letrozole in a chemisorption process while the physisorption process plays a large role in adsorption within the zigzag single-walled boron nitride nanotube.
机译:应用了密度函数理论计算来研究(12,12)扶手椅,(21,0)曲折,(18,5)手性氮化硼纳米管(BNNT)作为Letrozole递送中的药物纳米载体的能力。为此目的,研究了当封装成具有相同直径的BNNT的不同手性时的药物Letrozole的行为。此外,通过在氮化硼纳米管中的包封,可以实现降低的副作用和越来越多的苯并溶解度。对药物递送系统的发育是必要的对药物分子的封装过程的完全理解。通过密度泛函理论计算进行了三种类型的BNNT和药物Letrozole的几何优化,使用了6-31G基础设定的功能性WB97XD。结果表明,Letrozole封装在纳米管的腔体中。所研究系统中封装的Letrozole的结构和电子性质已经预测了诸如平衡距离,最高占用的分子轨道(HOMO) - 最无人居构的分子轨道(Lumo)能隙的量子机械描述符也预测。量子力学计算验证了扶手椅和手性单壁硼氮化物纳米管可以在化学吸附过程中自发地吸附Letrozole,而在理化过程中在Z字形单壁氮化硼纳米管内的吸附中发挥着重要作用。

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