том 135 издание 50 страницы 18850-18858

Cell-specific and pH-activatable rubyrin-loaded nanoparticles for highly selective near-infrared photodynamic therapy against cancer.

Тип публикацииJournal Article
Дата публикации2013-12-09
SCImago Q1
Tоп 10% SCImago
WOS Q1
БС1
SJR5.491
CiteScore22
Impact factor16.6
ISSN00027863, 15205126
General Chemistry
Catalysis
Biochemistry
Colloid and Surface Chemistry
Краткое описание
Spatiotemporal control of singlet oxygen ((1)O2) release is a major challenge for photodynamic therapy (PDT) against cancer with high therapeutic efficacy and minimum side effects. Here a selenium-rubyrin (NMe2Se4N2)-loaded nanoparticle functionalized with folate (FA) was designed and synthesized as an acidic pH-activatable targeted photosensitizer. The nanoparticles could specifically recognize cancer cells via the FA-FA receptor binding and were selectively taken up by cancer cells via receptor-mediated endocytosis to enter lysosomes, in which NMe2Se4N2 was activated to produce (1)O2. The pH-controllable release of (1)O2 specially damaged the lysosomes and thus killed cancer cells in a lysosome-associated pathway. The introduction of selenium into the rubyrin core enhanced the (1)O2 generation efficiency due to the heavy atom effect, and the substitution of dimethylaminophenyl moiety at meso-position led to the pH-controllable activation of NMe2Se4N2. Under near-infrared (NIR) irradiation, NMe2Se4N2 possessed high singlet oxygen quantum yield (ΦΔ) at an acidic pH (ΦΔ = 0.69 at pH 5.0 at 635 nm) and could be deactivated at physiological pH (ΦΔ = 0.06 at pH 7.4 at 635 nm). The subcellular location-confined pH-activatable photosensitization at NIR region and the cancer cell-targeting feature led to excellent capability to selectively kill cancer cells and prevent the damage to normal cells, which greatly lowered the side effects. Through intravenous injection of FA-NMe2Se4N2 nanoparticles in tumor-bearing mice, tumor elimination was observed after NIR irradiation. This work presents a new paradigm for specific PDT against cancer and provides a new avenue for preparation of highly efficient photosensitizers.
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Tian J. et al. Cell-specific and pH-activatable rubyrin-loaded nanoparticles for highly selective near-infrared photodynamic therapy against cancer. // Journal of the American Chemical Society. 2013. Vol. 135. No. 50. pp. 18850-18858.
ГОСТ со всеми авторами (до 50) Скопировать
Tian J., Ding L., Xu H., Shen Z., Ju H., Li J., Bao L., Yu J. S. Cell-specific and pH-activatable rubyrin-loaded nanoparticles for highly selective near-infrared photodynamic therapy against cancer. // Journal of the American Chemical Society. 2013. Vol. 135. No. 50. pp. 18850-18858.
RIS |
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TY - JOUR
DO - 10.1021/ja408286k
UR - https://doi.org/10.1021/ja408286k
TI - Cell-specific and pH-activatable rubyrin-loaded nanoparticles for highly selective near-infrared photodynamic therapy against cancer.
T2 - Journal of the American Chemical Society
AU - Tian, Jiangwei
AU - Ding, Lin
AU - Xu, Hai-Jun
AU - Shen, Zhen-zhou
AU - Ju, Huangxian
AU - Li, Jia
AU - Bao, Lei
AU - Yu, Jun Sheng
PY - 2013
DA - 2013/12/09
PB - American Chemical Society (ACS)
SP - 18850-18858
IS - 50
VL - 135
PMID - 24294991
SN - 0002-7863
SN - 1520-5126
ER -
BibTex |
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@article{2013_Tian,
author = {Jiangwei Tian and Lin Ding and Hai-Jun Xu and Zhen-zhou Shen and Huangxian Ju and Jia Li and Lei Bao and Jun Sheng Yu},
title = {Cell-specific and pH-activatable rubyrin-loaded nanoparticles for highly selective near-infrared photodynamic therapy against cancer.},
journal = {Journal of the American Chemical Society},
year = {2013},
volume = {135},
publisher = {American Chemical Society (ACS)},
month = {dec},
url = {https://doi.org/10.1021/ja408286k},
number = {50},
pages = {18850--18858},
doi = {10.1021/ja408286k}
}
MLA
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Tian, Jiangwei, et al. “Cell-specific and pH-activatable rubyrin-loaded nanoparticles for highly selective near-infrared photodynamic therapy against cancer..” Journal of the American Chemical Society, vol. 135, no. 50, Dec. 2013, pp. 18850-18858. https://doi.org/10.1021/ja408286k.
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