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Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging

Magnetic resonance (MR)/optical dual-mode imaging with high sensitivity and high tissue resolution have attracted many attentions in biomedical applications. To avert aggregation-caused quenching of conventional fluorescence chromophores, an aggregation-induced emission molecule tetraphenylethylene...

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Autores principales: Yang, Li, Fu, Shengxiang, Liu, Li, Cai, Zhongyuan, Xia, Chunchao, Song, Bin, Gong, Qiyong, Lu, Zhiyun, Ai, Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8240647/
https://www.ncbi.nlm.nih.gov/pubmed/34211733
http://dx.doi.org/10.1093/rb/rbab023
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author Yang, Li
Fu, Shengxiang
Liu, Li
Cai, Zhongyuan
Xia, Chunchao
Song, Bin
Gong, Qiyong
Lu, Zhiyun
Ai, Hua
author_facet Yang, Li
Fu, Shengxiang
Liu, Li
Cai, Zhongyuan
Xia, Chunchao
Song, Bin
Gong, Qiyong
Lu, Zhiyun
Ai, Hua
author_sort Yang, Li
collection PubMed
description Magnetic resonance (MR)/optical dual-mode imaging with high sensitivity and high tissue resolution have attracted many attentions in biomedical applications. To avert aggregation-caused quenching of conventional fluorescence chromophores, an aggregation-induced emission molecule tetraphenylethylene (TPE)-conjugated amphiphilic polyethylenimine (PEI) covered superparamagnetic iron oxide (Alkyl-PEI-LAC-TPE/SPIO nanocomposites) was prepared as an MR/optical dual-mode probe. Alkyl-PEI-LAC-TPE/SPIO nanocomposites exhibited good fluorescence property and presented higher T(2) relaxivity (352 Fe mM(−1)s(−1)) than a commercial contrast agent Feridex (120 Fe mM(−1)s(−1)) at 1.5 T. The alkylation degree of Alkyl-PEI-LAC-TPE effects the restriction of intramolecular rotation process of TPE. Reducing alkane chain grafting ratio aggravated the stack of TPE, increasing the fluorescence lifetime of Alkyl-PEI-LAC-TPE/SPIO nanocomposites. Alkyl-PEI-LAC-TPE/SPIO nanocomposites can effectively labelled HeLa cells and resulted in high fluorescence intensity and excellent MR imaging sensitivity. As an MR/optical imaging probe, Alkyl-PEI-LAC-TPE/SPIO nanocomposites may be used in biomedical imaging for certain applications.
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spelling pubmed-82406472021-06-30 Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging Yang, Li Fu, Shengxiang Liu, Li Cai, Zhongyuan Xia, Chunchao Song, Bin Gong, Qiyong Lu, Zhiyun Ai, Hua Regen Biomater Research Article Magnetic resonance (MR)/optical dual-mode imaging with high sensitivity and high tissue resolution have attracted many attentions in biomedical applications. To avert aggregation-caused quenching of conventional fluorescence chromophores, an aggregation-induced emission molecule tetraphenylethylene (TPE)-conjugated amphiphilic polyethylenimine (PEI) covered superparamagnetic iron oxide (Alkyl-PEI-LAC-TPE/SPIO nanocomposites) was prepared as an MR/optical dual-mode probe. Alkyl-PEI-LAC-TPE/SPIO nanocomposites exhibited good fluorescence property and presented higher T(2) relaxivity (352 Fe mM(−1)s(−1)) than a commercial contrast agent Feridex (120 Fe mM(−1)s(−1)) at 1.5 T. The alkylation degree of Alkyl-PEI-LAC-TPE effects the restriction of intramolecular rotation process of TPE. Reducing alkane chain grafting ratio aggravated the stack of TPE, increasing the fluorescence lifetime of Alkyl-PEI-LAC-TPE/SPIO nanocomposites. Alkyl-PEI-LAC-TPE/SPIO nanocomposites can effectively labelled HeLa cells and resulted in high fluorescence intensity and excellent MR imaging sensitivity. As an MR/optical imaging probe, Alkyl-PEI-LAC-TPE/SPIO nanocomposites may be used in biomedical imaging for certain applications. Oxford University Press 2021-06-14 /pmc/articles/PMC8240647/ /pubmed/34211733 http://dx.doi.org/10.1093/rb/rbab023 Text en © The Author(s) 2021. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Yang, Li
Fu, Shengxiang
Liu, Li
Cai, Zhongyuan
Xia, Chunchao
Song, Bin
Gong, Qiyong
Lu, Zhiyun
Ai, Hua
Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
title Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
title_full Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
title_fullStr Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
title_full_unstemmed Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
title_short Tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
title_sort tetraphenylethylene-conjugated polycation covered iron oxide nanoparticles for magnetic resonance/optical dual-mode imaging
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8240647/
https://www.ncbi.nlm.nih.gov/pubmed/34211733
http://dx.doi.org/10.1093/rb/rbab023
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