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过渡金属修饰的氧化镁纳米团簇作为生物传感器和二甲双胍抗癌药物的高效药物载体

Transition Metal-Decorated MgO Nanoclusters as Biosensors and Efficient Drug Carriers for the Metformin Anticancer Drug.

作者信息

Arshad Muhammad, Arshad Shafia, Majeed Muhammad K, Frueh Johannes, Chang Chun, Bilal Ibtsam, Niaz Shah Iram, Khan Muhammad Shahzeb, Tariq Muhammad Adeel, Yasir Mehboob Muhammad

机构信息

Institute of Chemical Sciences, Gomal University, 29050 Dera Ismail Khan, KPK, Pakistan.

University College of Conventional Medicine, Faculty of Medicine and Allied Health Sciences, The Islamia University Bahawalpur, Bahawalpur, Punjab 63100, Pakistan.

出版信息

ACS Omega. 2023 Mar 15;8(12):11318-11325. doi: 10.1021/acsomega.3c00058. eCollection 2023 Mar 28.

Abstract

Drug carriers have been designed and investigated remarkably due to their effective use in the modern medication process. In this study, the decoration of the MgO nanocluster has been done with transition metals (Ni and Zn) for effective adsorption of metformin (anticancer drug). Decoration of Ni and Zn on a nanocluster allows two geometries, and similarly, the adsorption of metformin also provides two geometries. Density functional theory and time-dependent density functional theory have been employed at the B3LYP with 6-311G(d,p) level. The decoration of Ni and Zn offers good attachment and detachment of the drug, which is observed from their good adsorption energy values. Further, the reduction in the energy band gap is noted in the metformin-adsorbed nanocluster, which allows high charge transfer from a lower energy level to a high energy level. The drug carrier systems show an efficient working mechanism in a water solvent with the visible-light absorption range. Natural bonding orbital and dipole moment values suggested that the adsorption of the metformin causes charge separation in these systems. Moreover, low values of chemical softness with a high electrophilic index recommended that these systems are naturally stable with the least reactivity. Thus, we offer novel kinds of Ni- and Zn-decorated MgO nanoclusters as efficient carriers for metformin and also recommend them to experimentalists for the future development of drug carriers.

摘要

由于药物载体在现代药物治疗过程中的有效应用,人们对其进行了大量的设计和研究。在本研究中,通过过渡金属(镍和锌)对氧化镁纳米团簇进行修饰,以实现对二甲双胍(抗癌药物)的有效吸附。镍和锌在纳米团簇上的修饰产生了两种几何构型,同样,二甲双胍的吸附也提供了两种几何构型。在B3LYP/6-311G(d,p)水平上采用了密度泛函理论和含时密度泛函理论。从镍和锌修饰后的良好吸附能值可以看出,它们对药物具有良好的附着和脱附性能。此外,在吸附了二甲双胍的纳米团簇中发现能带隙减小,这使得电荷能够从低能级高效转移到高能级。药物载体系统在水溶剂中具有可见光吸收范围内的高效工作机制。自然键轨道和偶极矩值表明,二甲双胍的吸附导致了这些系统中的电荷分离。此外,化学柔软度值低且亲电指数高表明这些系统天然稳定,反应活性最低。因此,我们提供了新型的镍和锌修饰的氧化镁纳米团簇作为二甲双胍的高效载体,并建议实验人员在未来药物载体的开发中采用。

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