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RNA-DNA hybrid nano-materials for highly efficient and long lasting RNA interference effect.
Kim, Joung Sug; Park, Junghyun; Choi, Jang Hyeon; Kang, Seungjae; Park, Nokyoung.
Afiliação
  • Kim JS; Department of Chemistry, The Natural Science Research Institute, Myongji University 116 Myongji-Ro Yongin Gyeonggi-do Republic of Korea pospnk@mju.ac.kr.
  • Park J; Department of Chemistry, The Natural Science Research Institute, Myongji University 116 Myongji-Ro Yongin Gyeonggi-do Republic of Korea pospnk@mju.ac.kr.
  • Choi JH; Department of Chemistry, The Natural Science Research Institute, Myongji University 116 Myongji-Ro Yongin Gyeonggi-do Republic of Korea pospnk@mju.ac.kr.
  • Kang S; Department of Chemistry, The Natural Science Research Institute, Myongji University 116 Myongji-Ro Yongin Gyeonggi-do Republic of Korea pospnk@mju.ac.kr.
  • Park N; Department of Chemistry, The Natural Science Research Institute, Myongji University 116 Myongji-Ro Yongin Gyeonggi-do Republic of Korea pospnk@mju.ac.kr.
RSC Adv ; 13(5): 3139-3146, 2023 Jan 18.
Article em En | MEDLINE | ID: mdl-36756454
ABSTRACT
In attempts to effectively improve RNAi function, we herein report a new RNAi approach using X-shaped RDNA and Dgel (RNA interfering DNA hydrogel, Ri-Dgel). X-shaped RDNA is a 4 branched nanostructure which was composed of three dsDNA branches and one dsRNA branch, and the structure was made by annealing partially complementary ssDNAs and chimeric RNA-DNA oligonucleotides. Ri-Dgel was synthesized through the ligation of the X-shaped RDNAs using their palindromic sticky ends. In MDCK/GFP cells transfected with 1 µM of each format of siRNA, Ri-Dgel and X-RDNA, the intensity of GFP fluorescence was significantly reduced by 65% and 56%, respectively, while dsRNA which is a conventional siRNA format showed a relatively weak reduction intensity of 7% compared with a negative control. We also observed the decreased intensity of GFP fluorescence by approximately 59% in MDA-MB-231/GFP cells transfected with 5 nM Ri-Dgel. Furthermore, the Ri-Dgel showed persistent RNAi efficiency up to 6 days from the treatment. The use of Ri-Dgel to trigger RNAi resulted in enhanced efficacy and longer duration at lower concentration compared to traditional dsRNA implying the nanostructured DNA-RNA hybrid materials have great potential as a platform technology for RNAi-based therapy.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article