A DNA Origami-based Bactericide for Efficient Healing of Infected Wounds

Tiantian Wu, Hong Wang, Run Tian, Shuang Guo, Yuhui Liao, Prof. Jianbing Liu, Prof. Baoquan Ding
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Abstract

Bacteria infection is a significant obstacle in the clinical treatment of exposed wounds facing widespread pathogens. Herein, we report a DNA origami-based bactericide for efficient anti-infection therapy of infected wounds in vivo. In our design, abundant DNAzymes (G4/hemin) can be precisely organized on the DNA origami for controllable generation of reactive oxygen species (ROS) to break bacterial membranes. After the destruction of the membrane, broad-spectrum antibiotic levofloxacin (LEV, loaded in the DNA origami through interaction with DNA duplex) can be easily delivered into the bacteria for successful sterilization. With the incorporation of DNA aptamer targeting bacterial peptidoglycan, the DNA origami-based bactericide can achieve targeted and combined antibacterial therapy for efficiently promoting the healing of infected wounds. This tailored DNA origami-based nanoplatform provides a new strategy for the treatment of infectious diseases in vivo.

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一种用于感染伤口有效愈合的DNA折纸杀菌剂
细菌感染是临床治疗面临广泛病原体的暴露伤口的一个重大障碍。在此,我们报道了一种基于DNA折纸的杀菌剂,用于体内感染伤口的有效抗感染治疗。在我们的设计中,丰富的脱氧核酶(G4/hemin)可以在DNA折纸上精确组织,以可控地产生活性氧(ROS)来破坏细菌膜。在膜被破坏后,广谱抗生素左氧氟沙星(LEV,通过与DNA双链体的相互作用装载在DNA折纸中)可以很容易地输送到细菌中,从而成功杀菌。通过掺入靶向细菌肽聚糖的DNA适体,基于DNA折纸的杀菌剂可以实现靶向和联合抗菌治疗,有效促进感染伤口的愈合。这种量身定制的基于DNA折纸的纳米平台为体内治疗传染病提供了一种新的策略。
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来源期刊
Angewandte Chemie
Angewandte Chemie 化学科学, 有机化学, 有机合成
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