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首页> 外文期刊>Journal of Molecular Liquids >Multi experimental and computational studies for DNA and HSA interaction of new nano-scale ultrasound-assisted synthesized Pd(II) complex as a potent anticancer drug
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Multi experimental and computational studies for DNA and HSA interaction of new nano-scale ultrasound-assisted synthesized Pd(II) complex as a potent anticancer drug

机译:新纳米超声辅助合成PD(II)复合物作为一种强化抗癌药物的DNA和HSA与HSA相互作用的多实验和计算研究

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As for daily increasing mortality rate in world due to the growth of cancer causing agents, design and synthesis of new compounds with anticancer potential benefits is one of the most important challenges for researchers. In the present work, we synthesized a new Schiff base Pd(II) complex in bulk-scale and also in nano-scales by Sonochemical method. The structure of synthesized complex was determined by single crystal X-ray diffraction technique. Then the cell viability percent of HeLa cancer cells was studied by MTT assay. The results confirmed that reducing the size has salient effect in annihilation of cancer cells. Also, nano-scale complex reached to IC50 in 10 mu M of concentration. Binding ability of the nano- and bulk-scale Pd(II) Schiff base complex with calf thymus DNA and human serum albumin was investigated using combination of experimental (fluorescence, circular dichroism (CD) and viscosity) and computational (molecular docking, molecular dynamics simulation and QM/MM) methods. The estimated binding constants for the complex in both of bulk- and nano-scales showed that the nano-scale complex binds more tightly to DNA than its bulk-scale form. This finding is in good agreement with MTT assay results. Molecular docking studies revealed that Pd(II) complex binds to the minor groove and IB binding site of DNA and HSA, respectively. Also, MD simulation studies showed that complexation with the Pd(II) complex changes the structure of HSA with compared to free protein. Finally, the ONIOM results indicated that the structural parameters of the compound changed along with binding to DNA and HSA, indicating the strong interaction between the compound and these biomacromolecules. The values of binding constants depend on the extent of the resultant changes. (C) 2018 Elsevier B.V. All rights reserved.
机译:至于世界上日常增长的死亡率导致导致药剂的生长,抗癌潜在利益的新化合物的设计和合成是研究人员最重要的挑战之一。在目前的工作中,我们通过SONOCHEMICAL方法综合了批量尺度的新席夫基地PD(II)络合物,也以纳米鳞片合成。通过单晶X射线衍射技术确定合成复合物的结构。然后通过MTT测定研究了HeLa癌细胞的细胞活力百分比。结果证实,降低尺寸对癌细胞的湮灭具有显着的效果。此外,纳米级复合体达到10μm浓度10μm的IC50。使用实验性(荧光,圆形二色(CD)和粘度)和计算(分子对接,分子动力学),研究了与小牛胸腺DNA和人血清白蛋白的纳米和体积级Pd(II)席克植物和人血清白蛋白的结合能力。(分子对接,分子动力学仿真和QM / mm)方法。批量和纳米尺度中复合物的估计结合常数表明,纳米级复合物比其体积形式更紧密地结合到DNA中。这种发现与MTT测定结果吻合良好。分子对接研究表明,Pd(II)复合物分别与DNA和HSA的次脉冲和IB结合位点结合。此外,MD模拟研究表明,与游离蛋白质相比,与Pd(II)复合物复合物的络合改变了HSA的结构。最后,oniom结果表明化合物的结构参数随着与DNA和HSA的结合而变化,表明化合物和这些生物致摩尔之间的强相互作用。绑定常数的值取决于所得变化的程度。 (c)2018年elestvier b.v.保留所有权利。

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