Multifunctional DNA Nanogels for Aptamer-Based Targeted Delivery and Stimuli-Triggered Release of Cancer Therapeutics

  • KYUNGSENE LEE; 
  • KIM TAEHYUNG; 
  • YOUNG MIN KIM; 
  • KYUNGJIK YANG; 
  • 최인석; 
  • 외 1명
Citations

SCOPUS

0

초록

Targeted, stimulus-responsive DNA nanogels hold considerable promise for cancer therapeutics. To expand their functionality including thermoresponsiveness, here, multifunctional DNA nanogels are developed for potential application toward cancer-targeted delivery and stimuli-responsive release of cancer therapeutics. Three types of functionalized DNA nanobuilding units are formed into DNA nanogels of ?200?nm via sequence-dependent self-assembly. The sequence-dependent assembly of nanobuilding units is precisely designed for controlled assembly and thermal disassembly at physiological temperatures. The supramolecular structure exhibits multifunctionalities including temperature-induced disassembly, aptamer-mediated cancer cell targeting, and light-triggered temperature increase. The nanogels support co-loading of cancer therapeutics including anti-sense oligonucleotides and doxorubicin along with stimuli-responsive release of loaded drugs through temperature-responsive structural disassembly and pH-responsive deintercalation. The nanogels exhibit efficient aptamer-mediated cancer-specific intracellular delivery and combinational anticancer effects upon light triggering. The developed DNA nanogels, thus, constitute potential noncationic nanovectors for targeted delivery of combinational cancer therapeutics.

키워드

cancer therapeutics; DNA nanogels; drug delivery; gold nanoparticles; stimuli?triggered release
제목
Multifunctional DNA Nanogels for Aptamer-Based Targeted Delivery and Stimuli-Triggered Release of Cancer Therapeutics
저자
KYUNGSENE LEE; KIM TAEHYUNG; YOUNG MIN KIM; KYUNGJIK YANG; 최인석; Young Hoon Roh
DOI
10.1002/marc.202000457
발행일
2021-01
저널명
Macromolecular Rapid Communications
권
42
호
2
페이지
2000457-1 ~ 2000457-6