首页> 外文期刊>Nucleosides, nucleotides and nucleic acids >Zirconia-Cu(I) stabilized copper oxide mesoporous nano-catalyst: Synthesis and DNA reactivity of 1,2,4-oxadiazole-quinolinepeptidomimetics-based metal(II) complexes
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Zirconia-Cu(I) stabilized copper oxide mesoporous nano-catalyst: Synthesis and DNA reactivity of 1,2,4-oxadiazole-quinolinepeptidomimetics-based metal(II) complexes

机译:氧化锆-Cu(I)稳定氧化铜介孔纳米催化剂:1,2,4-噁二唑-喹啉肽模拟物基金属(II)配合物的合成及DNA反应性

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摘要

Contemporary research reveals an undemanding protocol for the catalytic synthesis of 1,2,4-oxadiazole-quinolinepeptide in the incidence of a cost-effective and reusable mesoporous ZrO2-supported Cu2O (Cu2ZrO3) catalyst. This paper depicts a unique system for peptide bond synthesis staying away from toxic solvents and reactants. The catalyst was reused for four cycles without noteworthy loss in the activity, and the catalyst was genuinely heterogeneous. The method followed a simple workup procedure, and no column chromatography was needed. Further, the synthesized 1,2,4-oxadiazole-quinolinepeptide ligand (L), and its complexes of type, FeLCl2 and CuLCl-2 were synthesized and characterized by spectral and analytical techniques. An octahedral geometry has been projected for Fe(II) complexes, while the Cu(II) complex exhibits a square planar geometry. The binding properties of the complexes with CT-DNA were studied by absorption spectral analysis, followed by viscosity measurement and thermal denaturation studies. The photo-induced cleavage studies revealed that the complexes possess photonuclease activity against pUC19 DNA under UV?visible irradiation.
机译:当代研究揭示了一种要求不高的催化合成 1,2,4-噁二唑-喹啉肽的方案,该方案在具有成本效益且可重复使用的介孔 ZrO2 负载的 Cu2O (Cu2ZrO3) 催化剂的发生率中。本文描述了一种独特的肽键合成系统,远离有毒溶剂和反应物。催化剂重复使用四个循环,活性没有明显损失,催化剂确实是非均相的。该方法遵循简单的后处理程序,无需柱层析。此外,合成了合成的1,2,4-噁二唑喹啉肽配体(L)及其[FeLCl2]和[CuL]Cl-2型复合物,并通过光谱和分析技术对其进行了表征。Fe(II) 配合物的八面体几何形状被预测,而 Cu(II) 配合物则表现出方形平面几何形状。通过吸收光谱分析研究了配合物与CT-DNA的结合特性,然后进行了粘度测量和热变性研究。光诱导裂解研究表明,在紫外可见光照射下,该复合物对pUC19 DNA具有光核酸酶活性。

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