Tuning the Drug Loading and Release of DNA-Assembled Gold-Nanorod Superstructures. Raeesi, V., Chou, L. Y. T., & Chan, W. C. W. Advanced Materials, 28(38):8511–8518, 2016. _eprint: https://onlinelibrary.wiley.com/doi/pdf/10.1002/adma.201600773Paper Paper doi abstract bibtex The use of DNA to assemble inorganic nanoparticles into superstructures is an emerging strategy to build non-toxic delivery vehicles for targeting diseases in the body. The impact of the core–satellite nanosystem design in mediating drug storage, drug release (via heat), and killing of HeLa cells in culture is investigated.
@article{raeesi_tuning_2016,
title = {Tuning the {Drug} {Loading} and {Release} of {DNA}-{Assembled} {Gold}-{Nanorod} {Superstructures}},
volume = {28},
issn = {1521-4095},
url = {http://onlinelibrary.wiley.com/doi/abs/10.1002/adma.201600773},
doi = {10.1002/adma.201600773},
abstract = {The use of DNA to assemble inorganic nanoparticles into superstructures is an emerging strategy to build non-toxic delivery vehicles for targeting diseases in the body. The impact of the core–satellite nanosystem design in mediating drug storage, drug release (via heat), and killing of HeLa cells in culture is investigated.},
number = {38},
urldate = {2021-11-06},
journal = {Advanced Materials},
author = {Raeesi, Vahid and Chou, Leo Y. T. and Chan, Warren C. W.},
year = {2016},
note = {\_eprint: https://onlinelibrary.wiley.com/doi/pdf/10.1002/adma.201600773},
keywords = {cancer, controlled drug release, core–satellite, DNA assembly, gold nanorods, nanomedicine, nanotechnology},
pages = {8511--8518},
file = {Full Text PDF:files/1950/Raeesi et al. - 2016 - Tuning the Drug Loading and Release of DNA-Assembl.pdf:application/pdf;Snapshot:files/1952/adma.html:text/html},
url_Paper = {https://inbs.med.utoronto.ca/wp-content/uploads/2020/08/adma.201600773.pdf}
}
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