Litcius/Paper detail

Synchronous conjugation of i-motif DNA and therapeutic siRNA on the vertexes of tetrahedral DNA nanocages for efficient gene silence

Xiu Han, Xiang Xu, Ziheng Wu, Ziheng Wu, Zhenghong Wu, Zhenghong Wu, Xiaole Qi

2021Acta Pharmaceutica Sinica B22 citationsDOIOpen Access PDF

Abstract

The functionality of DNA biomacromolecules has been widely excavated, as therapeutic drugs, carriers, and functionalized modification derivatives. In this study, we developed a series of DNA tetrahedron nanocages (Td), via synchronous conjugating different numbers of i-(X) and therapeutic siRNA on four vertexes of tetrahedral DNA nanocage ([email protected], a+b = 4). This i-motif-conjugated Td exhibited good endosomal escape behaviours in A549 tumor cells, and the escape efficiency was affected by the number of i-motif. Furthermore, the downregulating mRNA and protein expression level of epidermal growth factor receptor (EGFR) caused by this siRNA embedded Td were verified in A549 cells. The tumor growth inhibition efficiency of the [email protected] treated group in tumor-bearing mice was significantly higher than that of non-i-motif-conjugated [email protected] (3.14-fold) and free siRNA (3.63-fold). These results demonstrate a general strategy for endowing DNA nanostructures with endosomal escape behaviours to achieve effective in vivo gene delivery and therapy.

Topics & Concepts

NanocagesDNAChemistryRGD motifCell biologyEndosomeTetrahedronSmall interfering RNAGene silencingDNA nanotechnologyGeneCancer researchMolecular biologyBiologyRNAReceptorCellBiochemistryCrystallographyCell adhesionCatalysisAdvanced biosensing and bioanalysis techniquesRNA Interference and Gene DeliveryDNA and Nucleic Acid Chemistry