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首页> 外文期刊>RSC Advances >Synthesis, crystal structure from PXRD of a MnII(purp)2 complex, interaction with DNA at different temperatures and pH and lack of stimulated ROS formation by the complex
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Synthesis, crystal structure from PXRD of a MnII(purp)2 complex, interaction with DNA at different temperatures and pH and lack of stimulated ROS formation by the complex

机译:合成,来自迷你(紫胶)2复合物的XRD的晶体结构,与不同温度和pH的DNA相互作用,并通过复合物缺乏刺激的ROS形成

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The formation of reactive oxygen species (ROS) by anthracycline anticancer drugs is essential for their antitumor activity but they also make these drugs cardiotoxic. When complexed with metal ions there is a decrease in ROS formation and therefore in cardiotoxicity. Interestingly, in spite of producing fewer ROS, some of the complexes are effective antitumor agents, often better than the parent anthracycline. Purpurin (LH _(3) ), a hydroxy-9,10-anthraquinone, resembles doxorubicin at the core. An Mn ~(II) complex of LH _(3) [Mn ~(II) (LH _(2) ) _(2) ] was synthesized to see the extent to which the complex resembles metal–anthracyclines with regard to structure and function. The crystal structure was determined by Rietveld refinement of PXRD data using an appropriate structural model developed on the basis of spectroscopic information. This is only the second report on the crystal structure of a hydroxy-9,10-anthraquinone with a 3d-transition metal ion. Bond lengths and bond angles were obtained by structural refinement. The structure is supported by DFT calculations. DNA binding of the complex is slightly better than for purpurin but more importantly unlike purpurin, the binding constant values remained constant even with an increase in the pH of the medium. The NADH dehydrogenase assay and the DCFDA-ROS generation assay showed that generation of superoxide in the former and ROS in general in the latter were significantly less for the complex than for purpurin. Even with decreased ROS formation, the complex is able to maintain the biological activity of purpurin.
机译:通过蒽环藻抗癌药物形成活性氧(ROS)对其抗肿瘤活性至关重要,但它们也使这些药物心脏毒性。当用金属离子复合时,ROS形成有降低,因此在心脏毒性中。有趣的是,尽管生产较少的ROS,但一些复合物是有效的抗肿瘤剂,通常比母蒽环素更好。 Purpurin(LH _(3)),羟基-9,10-蒽醌,在核心上类似于多柔比星。合成了LH _(3)[Mn〜(II)(LH _(2))(LH _(2))_(2)]的Mn〜(II)络合物,以了解复合物在结构和结构上类似于金属 - 蒽环类的程度功能。通过使用基于光谱信息开发的适当的结构模型,通过RIETVELD通过PXRD数据进行RIETVELD改进晶体结构。这仅是具有3D-过渡金属离子的羟基-9,10-蒽醌的晶体结构的第二个报告。通过结构细化获得键长和键角。该结构由DFT计算支持。复合物的DNA结合略好于丙嘌呤,但更重要的是与丙林蛋白不同,即使在培养基的pH增加,结合常数也保持恒定。 NADH脱氢酶测定和DCFDA-ROS生成测定表明,对于紫癜的复合物,在后者中,前者和RO中的超氧化物的产生显着较低。即使ROS形成下降,该复合物也能够保持紫癜的生物活性。

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