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In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics

The development of precision nanomedicines to direct nanostructure-based reagents into tumour-targeted areas remains a critical challenge in clinics. Chemical reaction-mediated localization in response to tumour environmental perturbations offers promising opportunities for rational design of effect...

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Autores principales: Ai, Xiangzhao, Ho, Chris Jun Hui, Aw, Junxin, Attia, Amalina Binte Ebrahim, Mu, Jing, Wang, Yu, Wang, Xiaoyong, Wang, Yong, Liu, Xiaogang, Chen, Huabing, Gao, Mingyuan, Chen, Xiaoyuan, Yeow, Edwin K.L., Liu, Gang, Olivo, Malini, Xing, Bengang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4736106/
https://www.ncbi.nlm.nih.gov/pubmed/26786559
http://dx.doi.org/10.1038/ncomms10432
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author Ai, Xiangzhao
Ho, Chris Jun Hui
Aw, Junxin
Attia, Amalina Binte Ebrahim
Mu, Jing
Wang, Yu
Wang, Xiaoyong
Wang, Yong
Liu, Xiaogang
Chen, Huabing
Gao, Mingyuan
Chen, Xiaoyuan
Yeow, Edwin K.L.
Liu, Gang
Olivo, Malini
Xing, Bengang
author_facet Ai, Xiangzhao
Ho, Chris Jun Hui
Aw, Junxin
Attia, Amalina Binte Ebrahim
Mu, Jing
Wang, Yu
Wang, Xiaoyong
Wang, Yong
Liu, Xiaogang
Chen, Huabing
Gao, Mingyuan
Chen, Xiaoyuan
Yeow, Edwin K.L.
Liu, Gang
Olivo, Malini
Xing, Bengang
author_sort Ai, Xiangzhao
collection PubMed
description The development of precision nanomedicines to direct nanostructure-based reagents into tumour-targeted areas remains a critical challenge in clinics. Chemical reaction-mediated localization in response to tumour environmental perturbations offers promising opportunities for rational design of effective nano-theranostics. Here, we present a unique microenvironment-sensitive strategy for localization of peptide-premodified upconversion nanocrystals (UCNs) within tumour areas. Upon tumour-specific cathepsin protease reactions, the cleavage of peptides induces covalent cross-linking between the exposed cysteine and 2-cyanobenzothiazole on neighbouring particles, thus triggering the accumulation of UCNs into tumour site. Such enzyme-triggered cross-linking of UCNs leads to enhanced upconversion emission upon 808 nm laser irradiation, and in turn amplifies the singlet oxygen generation from the photosensitizers attached on UCNs. Importantly, this design enables remarkable tumour inhibition through either intratumoral UCNs injection or intravenous injection of nanoparticles modified with the targeting ligand. Our strategy may provide a multimodality solution for effective molecular sensing and site-specific tumour treatment.
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spelling pubmed-47361062016-03-04 In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics Ai, Xiangzhao Ho, Chris Jun Hui Aw, Junxin Attia, Amalina Binte Ebrahim Mu, Jing Wang, Yu Wang, Xiaoyong Wang, Yong Liu, Xiaogang Chen, Huabing Gao, Mingyuan Chen, Xiaoyuan Yeow, Edwin K.L. Liu, Gang Olivo, Malini Xing, Bengang Nat Commun Article The development of precision nanomedicines to direct nanostructure-based reagents into tumour-targeted areas remains a critical challenge in clinics. Chemical reaction-mediated localization in response to tumour environmental perturbations offers promising opportunities for rational design of effective nano-theranostics. Here, we present a unique microenvironment-sensitive strategy for localization of peptide-premodified upconversion nanocrystals (UCNs) within tumour areas. Upon tumour-specific cathepsin protease reactions, the cleavage of peptides induces covalent cross-linking between the exposed cysteine and 2-cyanobenzothiazole on neighbouring particles, thus triggering the accumulation of UCNs into tumour site. Such enzyme-triggered cross-linking of UCNs leads to enhanced upconversion emission upon 808 nm laser irradiation, and in turn amplifies the singlet oxygen generation from the photosensitizers attached on UCNs. Importantly, this design enables remarkable tumour inhibition through either intratumoral UCNs injection or intravenous injection of nanoparticles modified with the targeting ligand. Our strategy may provide a multimodality solution for effective molecular sensing and site-specific tumour treatment. Nature Publishing Group 2016-01-20 /pmc/articles/PMC4736106/ /pubmed/26786559 http://dx.doi.org/10.1038/ncomms10432 Text en Copyright © 2016, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Ai, Xiangzhao
Ho, Chris Jun Hui
Aw, Junxin
Attia, Amalina Binte Ebrahim
Mu, Jing
Wang, Yu
Wang, Xiaoyong
Wang, Yong
Liu, Xiaogang
Chen, Huabing
Gao, Mingyuan
Chen, Xiaoyuan
Yeow, Edwin K.L.
Liu, Gang
Olivo, Malini
Xing, Bengang
In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
title In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
title_full In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
title_fullStr In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
title_full_unstemmed In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
title_short In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
title_sort in vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4736106/
https://www.ncbi.nlm.nih.gov/pubmed/26786559
http://dx.doi.org/10.1038/ncomms10432
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