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DNA flowerstructure co-localizes with human pathogens in infected macrophages

机译:DNA Flowerstrulure与感染的巨噬细胞的人类病原体共定定

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Herein, we characterize the cellular uptake of a DNA structure generated by rolling circle DNA amplification. The structure, termed nanoflower, was fluorescently labeled by incorporation of ATTO488-dUTP allowing the intracellular localization to be followed. The nanoflower had a hydrodynamic diameter of approximately 300 nanometer and was nontoxic for all mammalian cell lines tested. It was internalized specifically by mammalian macrophages by phagocytosis within a few hours resulting in specific compartmentalization in phagolysosomes. Maximum uptake was observed after eight hours and the nanoflower remained stable in the phagolysosomes with a half-life of 12 h. Interestingly, the nanoflower co-localized with both Mycobacterium tuberculosis and Leishmania infantum within infected macrophages although these pathogens escape lysosomal degradation by affecting the phagocytotic pathway in very different manners. These results suggest an intriguing and overlooked potential application of DNA structures in targeted treatment of infectious diseases such as tuberculosis and leishmaniasis that are caused by pathogens that escape the human immune system by modifying macrophage biology.
机译:在此,我们表征通过滚动圆DNA扩增产生的DNA结构的细胞吸收。通过掺入允许遵循细胞内定位的ATTO488-DUTP来荧光标记的结构,称为纳米灯。纳米滴大的流体动力直径为约300纳米,对所有测试的哺乳动物细胞系无毒。它由哺乳动物巨噬细胞在几小时内通过哺乳动物巨噬细胞进行内化,导致吞噬细胞的特定舱室化。在八小时后观察到最大摄取,纳米辊在吞噬细胞中保持稳定,半衰期为12小时。有趣的是,在感染的巨噬细胞内与肺结核术和Leishmania婴儿梗死的纳米杆菌都局部化,尽管这些病原体通过影响吞噬途径以非常不同的方式逃避溶酶体降解。这些结果表明,DNA结构在靶向治疗中的有趣和忽略潜在应用,所述传染性疾病如结核病和Leishmaniaisis,所述病原体通过改性巨噬细胞生物学逃脱人免疫系统。

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