Department of Chemistry, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran.
Chemistry & Chemical Engineering Research Center of Iran, Tehran, Iran.
Biometals. 2022 Oct;35(5):987-1009. doi: 10.1007/s10534-022-00418-0. Epub 2022 Jul 13.
Small molecules have potential usage in cancer therapy due to their remarkable potency of disarranging the natural structure of nucleic acids. In this study, two complexes [Pt(NH)(IBgly)]NO (1) and [Pt(bipy)(IBgly)]NO (2) based on Pt(II), N-isobutylglycine (IBgly), 2,2'-bipyridine, and ammonia were prepared and characterized by spectroscopic methods. Pharmacokinetic ADME data, absorption, distribution, metabolism, excretion, and bioavailability radar showed two complexes can be introduced for Pt-based anti-cancer drugs. Mechanism of tumor inhibition and DNA interaction of these compounds was studied by UV-Vis, fluorescence, and CD spectroscopies. Also, thermodynamic parameters and the binding constants were calculated through absorption measurements. The fluorescence data showed that a static quenching mechanism occurred for both complexes with a binding constant and binding affinity towards DNA (K ≈ 3500 M and k ≈ 2.1 × 10 M s). The thermodynamic parameters indicated electrostatic approaching and groove binding were more feasible than intercalation mode between Pt(II) complexes and DNA. CD spectra indicated the increasing intensity of the positive band and the negative band decreasing. Density functional theory calculations confirmed the experimental data and determined the quantum chemical descriptors including total energy, hardness, chemical potential, electrophilicity, electronegativity, etc. According to this, the binding tendency of these compounds with DNA could be predicted. Further, molecular docking studies were also performed. Docking studies revealed that the desolvation, hydrogen, and electrostatic binding were effective for the interaction between complexes and DNA with binding energy (- 10.44 and - 9.57 kcal/mol) for complexes 1 and 2, respectively, which is mainly of partially electrostatic and groove binding type. The cytotoxic activity of Pt complexes was examined against human colon cancer cell line which indicated good activity with IC values of (41.66 and 47.30 μM) for both complexes after 72 h, respectively. Also, they demonstrated more inhibitory effects compared to carboplatin.
小分子由于其显著扰乱核酸天然结构的能力,在癌症治疗中有潜在的用途。在这项研究中,基于 Pt(II)、N-异丁基甘氨酸 (IBgly)、2,2'-联吡啶和氨制备了两个配合物 [Pt(NH)(IBgly)]NO(1)和 [Pt(bipy)(IBgly)]NO(2),并通过光谱方法进行了表征。药代动力学 ADME 数据、吸收、分布、代谢、排泄和生物利用度雷达表明,这两种配合物可被引入到基于铂的抗癌药物中。通过紫外-可见、荧光和 CD 光谱研究了这些化合物的肿瘤抑制和 DNA 相互作用机制。此外,还通过吸收测量计算了热力学参数和结合常数。荧光数据表明,两种配合物都发生了静态猝灭机制,与 DNA 的结合常数和结合亲和力 (K≈3500 M,k≈2.1×10 M s)。热力学参数表明,Pt(II)配合物与 DNA 之间更有可能的结合模式是静电接近和沟结合,而不是嵌入模式。CD 光谱表明,正带的强度增加,负带的强度降低。密度泛函理论计算证实了实验数据,并确定了量子化学描述符,包括总能量、硬度、化学势、电导率、电负性等。根据这些描述符,可以预测这些化合物与 DNA 的结合趋势。此外,还进行了分子对接研究。对接研究表明,去溶剂化、氢键和静电结合对复合物与 DNA 的相互作用有效,复合物 1 和 2 的结合能分别为-10.44 和-9.57 kcal/mol,主要为部分静电和沟结合类型。Pt 配合物的细胞毒性活性通过人结肠癌细胞系进行了测试,结果表明,两种配合物在 72 小时后,IC 值分别为(41.66 和 47.30 μM),具有良好的活性,与顺铂相比,它们表现出更强的抑制作用。