2022
DOI: 10.1002/adfm.202207845
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The Hydrophobicity of AIE Dye Facilitates DNA Condensation for Carrier‐Free Gene Therapy

Abstract: A nanomaterial with a high payload of nucleic acid drugs and low cytotoxicity is desirable for gene therapy. Herein, a new DNA assembly method triggered by hydrophobic interaction and strengthened by Mg2+ electrostatic interaction for carrier‐free gene transfection is reported. It is discovered that a hydrophobic aggregation‐induced emission dye with a low molecular weight that is modified to an oligonucleotide will greatly change the condensation properties of DNA. The conditions and the possible mechanism of… Show more

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Cited by 10 publications
(4 citation statements)
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“…[11] Polyanionic DNA nanomaterials are known to target SRs, followed by internalization along the endosome-lysosome pathway via caveolae-mediated endocytosis. [12] Since SRs are abundant on cancer cells, various nucleic acid nanodevices have been established to co-opt SRs for intracellular delivery of therapeutic agents [13] and lysosome-targeted delivery of chemical reporters. [14] However, the potential of SRs as an applicable LTR to mediate protein degradation has not been explored yet.…”
mentioning
confidence: 99%
“…[11] Polyanionic DNA nanomaterials are known to target SRs, followed by internalization along the endosome-lysosome pathway via caveolae-mediated endocytosis. [12] Since SRs are abundant on cancer cells, various nucleic acid nanodevices have been established to co-opt SRs for intracellular delivery of therapeutic agents [13] and lysosome-targeted delivery of chemical reporters. [14] However, the potential of SRs as an applicable LTR to mediate protein degradation has not been explored yet.…”
mentioning
confidence: 99%
“…This copolymer exhibited distinct self-assembly behaviors for generating polyplex with DNA, along with the AIE emissions with tunable colors for monitoring. 159 In addition, the emission related to charged states of dyes can be modulated by the formation of a polyplex between the negatively charged DNA and the positively charged sulfonium segments in the shell. These works have demonstrated the potential of AIE-based DNA nanostructures for biological applications.…”
Section: Tion Of Photostable Biosensing Nanodevices For Biological Ap...mentioning
confidence: 99%
“…[15] Modifying DNA ends with hydrophobic materials such as AIE materials, block copolymers or cholesterol molecules can be an alternative to promote DNA self-assembly. [16][17][18] But additional chemical modifications increase the complexity of synthesis.…”
Section: Introductionmentioning
confidence: 99%