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Bacterial Resistance and Prostate Cancer Susceptibility Toward Metal-Ion-doped DNA Complexes

机译:细菌抗性和前列腺癌对金属离子掺杂DNA复合物的敏感性

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DNA nanotechnology has laid a platform to construct a variety of custom shaped nanoscale objects for functionalization of specific target materials to achieve programmability and molecular recognition. Herein, we prepared DNA nanostructures [namely, synthetic DNA rings (RDNA) and DNA duplexes extracted from salmon (SDNA)] containing metal ions (M2+) such as Cu2+, Ni2+, and Zn2+ as payloads for delivery to exterminate highly pathologic hospital bacterial strains (e.g., Escherichia coli and Bacillus subtilis) and prostate cancer cells (i.e., PC3, LNCaP, TRAMP -C1, 22Rvl, and DU145). Morphologies of these M2+-doped RDNA were visualized using atomic force microscopy. Interactions between M2+ and DNA were studied using UV-vis and Fourier transform infrared spectroscopy. Quantitative composition and chemical changes in DNA without or with M2+ were obtained using X-ray photoelectron spectroscopy. In addition, M2+-doped DNA complexes were subjected to antibacterial activity studies. They showed no bacteriostatic or bactericidal effects on bacterial strains used. Finally, in vitro cellular toxicity study was conducted to evaluate the effect of pristine DNA and M2+-doped DNA complexes on Cytotoxicities conferred by M2+-doped DNA complexes for most cell lines were significantly higher than those of M2+ without DNA. Cellular uptake of these complexes was confirmed by fluorescence microscopy using PhenGreen FL indicator. On the basis of our observations, DNA nanostructures can be used as safe and efficient nanocarriers for delivery of therapeutics. They have enhanced therapeutic window than bare metals. prostate cancer cells.
机译:DNA纳米技术已经奠定了一种平台,用于构造各种定制的纳米级目录,用于实现特定目标材料的功能化,以实现可编程性和分子识别。在此,我们制备DNA纳米结构[即,从鲑鱼(SDNA)]含有金属离子(M2 +)的合成DNA环(RDNA)和DNA双链体,例如Cu 2 +,Ni2 +和Zn2 +作为有效载荷,用于消灭高病理医院的细菌菌株(例如,大肠杆菌和枯草芽孢杆菌)和前列腺癌细胞(即PC3,LNCAP,TRAMP -C1,22RVL和DU145)。使用原子力显微镜可视化这些M2 +掺杂的RDNA的形态学。使用UV-Vis和傅里叶变换红外光谱研究M2 +和DNA之间的相互作用。使用X射线光电子光谱法获得无含DNA的定量组成和DNA的化学变化。此外,对M2 +掺杂的DNA复合物进行抗菌活性研究。它们没有对使用的细菌菌株没有抑菌或杀菌作用。最后,进行体外细胞毒性研究以评估原始DNA和M2 +掺杂的DNA复合物对M2 +掺杂的DNA复合物赋予的细胞毒性,大多数细胞系明显高于M2 +而没有DNA。通过使用空白FL指示器通过荧光显微镜确认这些复合物的细胞吸收。在我们的观察结果的基础上,DNA纳米结构可用作安全和有效的纳米载体,用于提供治疗剂。它们具有增强的治疗窗口而不是裸金属。前列腺癌细胞。

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