Pillar[5]arene‐Modified Gold Nanorods as Nanocarriers for Multi‐Modal Imaging‐Guided Synergistic Photodynamic‐Photothermal Therapy
Nan Song
1, 2, 3
,
Zhijun Zhang
1, 2
,
Peiying Liu
1
,
Dihua Dai
4
,
Chao Chen
3
,
YOUMEI LI
1, 2
,
Lei Wang
1, 2
,
Ting Han
1
,
Ying-Wei Yang
4
,
Dong Wang
1
,
2
Publication type: Journal Article
Publication date: 2021-03-18
scimago Q1
wos Q1
SJR: 5.439
CiteScore: 27.7
Impact factor: 19.0
ISSN: 1616301X, 16163028
Electronic, Optical and Magnetic Materials
Electrochemistry
Condensed Matter Physics
Biomaterials
Abstract
Supramolecular approaches have opened up vast possibilities in the construction of versatile functional materials, especially those with stimuli-responsiveness and integrated functionalities of multi-modal diagnosis and synergistic therapeutics. In this study, a hybrid theranostic nanosystem named TTPY-PyICP5@AuNR is constructed via facile host-guest interactions, where TTPY-Py is a photosensitizer with aggregation-induced emission and CP5@AuNR represents the carboxylatopillar[5]arene (CP5)-modified Au nanorods. TTPY-PyICP5@AuNR integrates the respective advantages of TTPY-Py and CP5@AuNR such as the high performance of reactive oxygen species (ROS) generation and photothermal conversion, and meanwhile shows fluorescence responses to both temperature and pH stimuli due to the non-covalent interactions. The successful modification of CP5 macrocycles on AuNRs surfaces can eliminate the cytotoxicity of AuNRs and enable them to serve as the nanocarrier of TTPY-Py for further theranostic application. Significantly, both in vitro and in vivo evaluations demonstrate that this supramolecular nanotheranostic system possesses multiple phototheranostic modalities including intensive fluorescence imaging (FLI), photoacoustic imaging (PAI), efficient photodynamic therapy (PDT), and photothermal therapy (PTT), indicating its great potentials for FLI-PAI imaging-guided synergistic PDT-PTT therapy. Besides, TTPY-Py can be released from the nanocarriers upon activating by the acidic environment of lysosomes and then specifically light up mitochondria. This study brings up a new strategy into the design of versatile nanotheranostics for accurate tumor imaging and cancer therapies.
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98
Total citations:
98
Citations from 2024:
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(38.78%)
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GOST
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Song N. et al. Pillar[5]arene‐Modified Gold Nanorods as Nanocarriers for Multi‐Modal Imaging‐Guided Synergistic Photodynamic‐Photothermal Therapy // Advanced Functional Materials. 2021. Vol. 31. No. 21. p. 2009924.
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Song N., Zhang Z., Liu P., Dai D., Chen C., LI Y., Wang L., Han T., Yang Y., Wang D., Wang D. Pillar[5]arene‐Modified Gold Nanorods as Nanocarriers for Multi‐Modal Imaging‐Guided Synergistic Photodynamic‐Photothermal Therapy // Advanced Functional Materials. 2021. Vol. 31. No. 21. p. 2009924.
Cite this
RIS
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TY - JOUR
DO - 10.1002/adfm.202009924
UR - https://doi.org/10.1002/adfm.202009924
TI - Pillar[5]arene‐Modified Gold Nanorods as Nanocarriers for Multi‐Modal Imaging‐Guided Synergistic Photodynamic‐Photothermal Therapy
T2 - Advanced Functional Materials
AU - Song, Nan
AU - Zhang, Zhijun
AU - Liu, Peiying
AU - Dai, Dihua
AU - Chen, Chao
AU - LI, YOUMEI
AU - Wang, Lei
AU - Han, Ting
AU - Yang, Ying-Wei
AU - Wang, Dong
AU - Wang, Dong
PY - 2021
DA - 2021/03/18
PB - Wiley
SP - 2009924
IS - 21
VL - 31
SN - 1616-301X
SN - 1616-3028
ER -
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@article{2021_Song,
author = {Nan Song and Zhijun Zhang and Peiying Liu and Dihua Dai and Chao Chen and YOUMEI LI and Lei Wang and Ting Han and Ying-Wei Yang and Dong Wang and Dong Wang},
title = {Pillar[5]arene‐Modified Gold Nanorods as Nanocarriers for Multi‐Modal Imaging‐Guided Synergistic Photodynamic‐Photothermal Therapy},
journal = {Advanced Functional Materials},
year = {2021},
volume = {31},
publisher = {Wiley},
month = {mar},
url = {https://doi.org/10.1002/adfm.202009924},
number = {21},
pages = {2009924},
doi = {10.1002/adfm.202009924}
}
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Song, Nan, et al. “Pillar[5]arene‐Modified Gold Nanorods as Nanocarriers for Multi‐Modal Imaging‐Guided Synergistic Photodynamic‐Photothermal Therapy.” Advanced Functional Materials, vol. 31, no. 21, Mar. 2021, p. 2009924. https://doi.org/10.1002/adfm.202009924.