Open Access
Single-atom engineering of hemicyanine and its amphiphilic derivative for optimized near infrared phototheranostics
Тип публикации: Journal Article
Дата публикации: 2023-01-01
scimago Q1
wos Q1
white level БС1
SJR: 2.138
CiteScore: 12.6
Impact factor: 7.4
ISSN: 20416520, 20416539
PubMed ID:
36756327
Краткое описание
Near-infrared (NIR) dyes are widely used in the field of in vivo phototheranostics. Hemicyanine dyes (HDs) have recently received tremendous attention due to their easy synthesis and excellent NIR features. However, HDs can easily form non-fluorescent aggregates and their potential for phototherapy still needs further exploration due to their poor ability to generate reactive oxygen species (ROS). Herein, a series of hemicyanine dyes with different chalcogen atom (O, S, Se) substitutions were constructed to achieve optimized potential for phototheranostics. By replacing O with the heavy atom Se in the xanthene skeleton, CySe-NEt2 showed much more favourable features such as extended NIR absorption/emission wavelength, boosted 1O2 generation rate and higher photothermal effect. In addition, a poly(ethylene glycol) (PEG) group was introduced into the scaffold and yielded a nanotheranostic agent CySe-mPEG5K, which easily formed nanoparticles with appealing features such as excellent photostability, effective prevention of unpleasant H-aggregation, fast/selective tumor accumulation and minimum dark toxicity. Solid tumor growth was significantly suppressed through combined photodynamic therapy (PDT) and photothermal therapy (PTT) guided by NIR fluorescence (NIRF) and photoacoustic (PA) imaging. This study not only presents the first example of selenium-substituted hemicyanine dyes, but also offers a reliable design strategy for the development of potent NIR phototheranostic agents with multi-mode imaging-guided combination therapeutic ability.
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Yao S. et al. Single-atom engineering of hemicyanine and its amphiphilic derivative for optimized near infrared phototheranostics // Chemical Science. 2023. Vol. 14. No. 5. pp. 1234-1243.
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Yao S., Chen Y., Ding W., Xu F., Liu Z., Li Y., Wu Y., Li S., He W., Guo Z. Single-atom engineering of hemicyanine and its amphiphilic derivative for optimized near infrared phototheranostics // Chemical Science. 2023. Vol. 14. No. 5. pp. 1234-1243.
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TY - JOUR
DO - 10.1039/d2sc05982g
UR - https://xlink.rsc.org/?DOI=D2SC05982G
TI - Single-atom engineering of hemicyanine and its amphiphilic derivative for optimized near infrared phototheranostics
T2 - Chemical Science
AU - Yao, Shankun
AU - Chen, Yuncong
AU - Ding, Weizhong
AU - Xu, Fengwu
AU - Liu, Zhipeng
AU - Li, Yaheng
AU - Wu, Yanping
AU - Li, Shumeng
AU - He, Weijiang
AU - Guo, Zijian
PY - 2023
DA - 2023/01/01
PB - Royal Society of Chemistry (RSC)
SP - 1234-1243
IS - 5
VL - 14
PMID - 36756327
SN - 2041-6520
SN - 2041-6539
ER -
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@article{2023_Yao,
author = {Shankun Yao and Yuncong Chen and Weizhong Ding and Fengwu Xu and Zhipeng Liu and Yaheng Li and Yanping Wu and Shumeng Li and Weijiang He and Zijian Guo},
title = {Single-atom engineering of hemicyanine and its amphiphilic derivative for optimized near infrared phototheranostics},
journal = {Chemical Science},
year = {2023},
volume = {14},
publisher = {Royal Society of Chemistry (RSC)},
month = {jan},
url = {https://xlink.rsc.org/?DOI=D2SC05982G},
number = {5},
pages = {1234--1243},
doi = {10.1039/d2sc05982g}
}
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MLA
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Yao, Shankun, et al. “Single-atom engineering of hemicyanine and its amphiphilic derivative for optimized near infrared phototheranostics.” Chemical Science, vol. 14, no. 5, Jan. 2023, pp. 1234-1243. https://xlink.rsc.org/?DOI=D2SC05982G.
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