4.8 Article

Modulation of the Cellular Uptake of DNA Origami through Control over Mass and Shape

期刊

NANO LETTERS
卷 18, 期 6, 页码 3557-3564

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.8b00660

关键词

DNA origami; nanotechnology; cellular uptake; nanoparticles; structure-function relationship

资金

  1. Wyss Institute for Biologically Inspired Engineering at Harvard
  2. NIH New Innovator Award [1DP2OD004641-01]
  3. NSF Expeditions Award [CCF-1317291]
  4. Intramural Research Program of KIST [2E27960]
  5. Human Frontier Science Foundation
  6. Alexander S. Onassis Scholarship for Hellenes
  7. Schlumberger Faculty for Future Fellowship

向作者/读者索取更多资源

Designer nanoparticles with controlled shapes and sizes are increasingly popular vehicles for therapeutic delivery due to their enhanced cell-delivery performance. However, our ability to fashion nanoparticles has offered only limited control over these parameters. Structural DNA nanotechnology has an unparalleled ability to self-assemble three-dimensional nanostructures with near-atomic resolution features, and thus, it offers an attractive platform for the systematic exploration of the parameter space relevant to nanoparticle uptake by living cells. In this study, we examined the cell uptake of a panel of 11 distinct DNA-origami shapes, with the largest dimension ranging from 50-400 nm, in 3 different cell lines. We found that larger particles with a greater compactness were preferentially internalized compared with elongated, high-aspect-ratio particles. Uptake kinetics were also found to be more cell-type-dependent than shape-dependent, with specialized endocytosing dendritic cells failing to saturate over 12 h of study. The knowledge gained in the current study furthers our understanding of how particle shape affects cellular uptake and heralds the development of DNA nanotechnologies toward the improvement of current state-of-the-art cell-delivery vehicles.

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