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Weizmann Group

Synthetic nucleic acids and photothermal nanomaterials design group

Enzymatic synthesis of periodic DNA nanoribbons for intracellular pH sensing and gene silencing

Gang Chen, Di Liu, Chunbai He, Theodore R. Gannett, Wenbin Lin, Yossi Weizmann

We report the construction of periodic DNA nanoribbons (DNRs) by a modified DNA origami method. Unlike the conventional DNA origami, the DNR scaffold is a long, single-stranded DNA of tandem repeats, originating from the rolling circular amplification (RCA). Consequently, the number of folding staple strands tremendously decreases from hundreds to a few, which makes the DNR production scalable and cost-effective, thus potentially removing the barrier for practical applications of DNA nanostructures. Moreover, the co-replicational synthesis of scaffold and staple strands by RCA-based enzymatic reactions allows the generation of DNRs in one pot, further reducing the cost. Due to their unique periodicity, rigidity, and high aspect ratio, DNRs are efficiently internalized into cells and escape from endosomal entrapment, making them potential nanocarriers for imaging agents and biological therapeutics. We demonstrated proof-of-concept applications of DNRs as an intracellular pH sensor and an efficient small interfering RNA delivery vehicle in human cancer cells.

Publication language English
Pages 3844-3851
Journal Journal of the American Chemical Society
Volume 137
Issue number 11
Publication status Published - 25.03.2015

ASJC Scopus subject areas

Catalysis
General Chemistry
Biochemistry
Colloid and Surface Chemistry

Sustainable Development Goals

SDG 3 - Good Health and Well-being
Access to Document
10.1021/ja512665z
Other files and links
Link to publication in Scopus