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DNA Dendrimer: An Efficient Nanocarrier of Functional Nucleic Acids for Intracellular Molecular Sensing
Author(s) -
HongMin Meng,
Xiaobing Zhang,
Yifan Lv,
Zilong Zhao,
Nannan Wang,
Ting Fu,
Huanhuan Fan,
Hao Liang,
Liping Qiu,
Guizhi Zhu,
Weihong Tan
Publication year - 2014
Publication title -
acs nano
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.554
H-Index - 382
eISSN - 1936-086X
pISSN - 1936-0851
DOI - 10.1021/nn5015962
Subject(s) - nanocarriers , aptamer , dendrimer , deoxyribozyme , nucleic acid , nanomedicine , nanotechnology , dna , drug delivery , biocompatibility , intracellular , biophysics , combinatorial chemistry , chemistry , materials science , biochemistry , microbiology and biotechnology , biology , nanoparticle , organic chemistry
Functional nucleic acid (FNA)-based sensing systems have been developed for efficient detection of a wide range of biorelated analytes by employing DNAzymes or aptamers as recognition units. However, their intracellular delivery has always been a concern, mainly in delivery efficiency, kinetics, and the amount of delivered FNAs. Here we report a DNA dendrimer scaffold as an efficient nanocarrier to deliver FNAs and to conduct in situ monitoring of biological molecules in living cells. A histidine-dependent DNAzyme and an anti-ATP aptamer were chosen separately as the model FNAs to make the FNA dendrimer. The FNA-embedded DNA dendrimers maintained the catalytic activity of the DNAzyme or the aptamer recognition function toward ATP in the cellular environment, with no change in sensitivity or specificity. Moreover, these DNA dendrimeric nanocarriers show excellent biocompatibility, high intracellular delivery efficiency, and sufficient stability in a cellular environment. This FNA dendrimeric nanocarrier may find a broad spectrum of applications in biomedical diagnosis and therapy.

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