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首页> 外文期刊>RSC Advances >Synthesis of chiral R/S-pseudopeptide-based Cu(II) & Zn(II) complexes for use in targeted delivery for antitumor therapy: enantiomeric discrimination with CT-DNA and pBR322 DNA hydrolytic cleavage mechanism
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Synthesis of chiral R/S-pseudopeptide-based Cu(II) & Zn(II) complexes for use in targeted delivery for antitumor therapy: enantiomeric discrimination with CT-DNA and pBR322 DNA hydrolytic cleavage mechanism

机译:基于手性 R / S -伪肽的Cu(II)和Zn(II)复合物的合成,用于靶向递送以进行抗肿瘤治疗:CT-DNA和pBR322 DNA水解切割机理

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Chiral pseudopeptide Cu(II) and Zn(II) complexes (1S/R and 2S/R, respectively), were obtained by a de novo synthetic strategy employing pseudopeptide synthons derived from R/S-2-amino-2-phenylethanol and N-methyliminodiacetic acid. The complexes were thoroughly characterized by elemental analysis, mass spectrometry, and IR; the 2S/R complexes were further characterized by 1H, 13C NMR, whereas 1S/R complexes were studied by EPR spectroscopy. In vitro DNA binding studies were carried out by UV-Vis, fluorescence, thermal denaturation and circular dichroic techniques. The experimental results revealed that the complexes strongly bind to DNA via electrostatic interaction. The extent of binding was quantified by computing their intrinsic binding constant (Kb) and binding constant (K) values, which showed that the S-enantiomers of both complexes 1 and 2 exhibited higher binding propensities as compared to their R-enantiomeric analogs, and followed the trend 1S > 2S > 1R > 2R. Thermal denaturation studies of complexes in the absence and presence of CT-DNA have been carried out and the calculated ΔTm was found to be 1–3 °C, depicting the electrostatic mode of binding, which corroborated the results of the UV-Vis, fluorescence and other optical methods. The cleavage efficiencies of 1S and 2S with pBR322 DNA were evaluated by gel electrophoretic assay. S-Enantiomers of both Cu(II) and Zn(II) complexes were found to be efficient cleaving agents and cleavage reactions were mediated by hydrolytic pathways, which were further validated by relegation experiments using the T4 ligase enzyme. The cytotoxic activity of 1S and 2S showed pronounced GI50 values <10 μg mL?1 in the case of the HeLa cancer cell line, whereas for other cell lines, viz. MCF7, Hep-G2 and MIA-Pa-Ca-2, moderate activity was observed, which implicated the selective response of drug entities towards different cancer phenotypes.
机译:手性伪肽Cu( II )和Zn( II )配合物(1 S / R 和2 S / R )分别通过采用从 R / 衍生的假肽合成子的 denov 合成策略获得。 S -2-氨基-2-苯基乙醇和 N -甲基亚氨基二乙酸。通过元素分析,质谱和红外光谱对配合物进行了全面表征。 2 S / R 配合物的特征还在于 1 H, 13 C NMR,而1 S / R 配合物通过EPR光谱进行了研究。通过紫外-可见,荧光,热变性和圆二色性技术进行了体外 DNA结合研究。实验结果表明,复合物通过静电相互作用与DNA 牢固结合。通过计算其固有的结合常数( K b )和结合常数( K )定量结合的程度值,表明配合物1和2的 S -对映体与其 R -对映体类似物相比,具有更高的结合倾向,并遵循趋势1 S S R R 。在不存在和存在CT-DNA的情况下进行了复合物的热变性研究,发现计算出的Δ T m –3°C,描述了静电结合的模式,证实了UV-Vis,荧光和其他光学方法的结果。通过凝胶电泳法评价了1 S 和2 S 对pBR322 DNA的切割效率。 Cu( II )和Zn( II )配合物的 S -对映异构体均是有效的裂解剂,并且通过水解介导裂解反应通过使用T4连接酶的保级实验进一步验证了这些途径。 1 S 和2 S 的细胞毒活性显示出明显的GI 50 值<10μgmL ?1 ,而对于其他细胞系, viz。观察到MCF7,Hep-G2和MIA-Pa-Ca-2具有中等活性,这暗示了药物实体对不同癌症表型的选择性反应。

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