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Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan

The clinical use of anticancer drugs necessitates new technologies for their safe, sensitive, and selective detection. In this article, lanthanide (Eu(3+) and Tb(3+))-loaded γ-cyclodextrin nano-aggregates (ECA and TCA) are reported, which sensitively detects the anticancer drug irinotecan by fluores...

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Detalles Bibliográficos
Autores principales: Guo, Yaowei, Liu, Jin, Tang, Qinglin, Li, Cuicui, Zhang, Yanying, Wang, Yao, Wang, Yanxin, Bi, Yupeng, Snow, Christopher D., Kipper, Matt J., Belfiore, Laurence A., Tang, Jianguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9223530/
https://www.ncbi.nlm.nih.gov/pubmed/35743042
http://dx.doi.org/10.3390/ijms23126597
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author Guo, Yaowei
Liu, Jin
Tang, Qinglin
Li, Cuicui
Zhang, Yanying
Wang, Yao
Wang, Yanxin
Bi, Yupeng
Snow, Christopher D.
Kipper, Matt J.
Belfiore, Laurence A.
Tang, Jianguo
author_facet Guo, Yaowei
Liu, Jin
Tang, Qinglin
Li, Cuicui
Zhang, Yanying
Wang, Yao
Wang, Yanxin
Bi, Yupeng
Snow, Christopher D.
Kipper, Matt J.
Belfiore, Laurence A.
Tang, Jianguo
author_sort Guo, Yaowei
collection PubMed
description The clinical use of anticancer drugs necessitates new technologies for their safe, sensitive, and selective detection. In this article, lanthanide (Eu(3+) and Tb(3+))-loaded γ-cyclodextrin nano-aggregates (ECA and TCA) are reported, which sensitively detects the anticancer drug irinotecan by fluorescence intensity changes. Fluorescent lanthanide (Eu(3+) and Tb(3+)) complexes exhibit high fluorescence intensity, narrow and distinct emission bands, long fluorescence lifetime, and insensitivity to photobleaching. However, these lanthanide (Eu(3+) and Tb(3+)) complexes are essentially hydrophobic, toxic, and non-biocompatible. Lanthanide (Eu(3+) and Tb(3+)) complexes were loaded into naturally hydrophilic γ-cyclodextrin to form fluorescent nano-aggregates. The biological nontoxicity and cytocompatibility of ECA and TCA fluorescent nanoparticles were demonstrated by cytotoxicity experiments. The ECA and TCA fluorescence nanosensors can detect irinotecan selectively and sensitively through the change of fluorescence intensity, with detection limits of 6.80 μM and 2.89 μM, respectively. ECA can safely detect irinotecan in the cellular environment, while TCA can detect irinotecan intracellularly and is suitable for cell labeling.
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spelling pubmed-92235302022-06-24 Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan Guo, Yaowei Liu, Jin Tang, Qinglin Li, Cuicui Zhang, Yanying Wang, Yao Wang, Yanxin Bi, Yupeng Snow, Christopher D. Kipper, Matt J. Belfiore, Laurence A. Tang, Jianguo Int J Mol Sci Article The clinical use of anticancer drugs necessitates new technologies for their safe, sensitive, and selective detection. In this article, lanthanide (Eu(3+) and Tb(3+))-loaded γ-cyclodextrin nano-aggregates (ECA and TCA) are reported, which sensitively detects the anticancer drug irinotecan by fluorescence intensity changes. Fluorescent lanthanide (Eu(3+) and Tb(3+)) complexes exhibit high fluorescence intensity, narrow and distinct emission bands, long fluorescence lifetime, and insensitivity to photobleaching. However, these lanthanide (Eu(3+) and Tb(3+)) complexes are essentially hydrophobic, toxic, and non-biocompatible. Lanthanide (Eu(3+) and Tb(3+)) complexes were loaded into naturally hydrophilic γ-cyclodextrin to form fluorescent nano-aggregates. The biological nontoxicity and cytocompatibility of ECA and TCA fluorescent nanoparticles were demonstrated by cytotoxicity experiments. The ECA and TCA fluorescence nanosensors can detect irinotecan selectively and sensitively through the change of fluorescence intensity, with detection limits of 6.80 μM and 2.89 μM, respectively. ECA can safely detect irinotecan in the cellular environment, while TCA can detect irinotecan intracellularly and is suitable for cell labeling. MDPI 2022-06-13 /pmc/articles/PMC9223530/ /pubmed/35743042 http://dx.doi.org/10.3390/ijms23126597 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guo, Yaowei
Liu, Jin
Tang, Qinglin
Li, Cuicui
Zhang, Yanying
Wang, Yao
Wang, Yanxin
Bi, Yupeng
Snow, Christopher D.
Kipper, Matt J.
Belfiore, Laurence A.
Tang, Jianguo
Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan
title Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan
title_full Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan
title_fullStr Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan
title_full_unstemmed Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan
title_short Lanthanide (Eu(3+)/Tb(3+))-Loaded γ-Cyclodextrin Nano-Aggregates for Smart Sensing of the Anticancer Drug Irinotecan
title_sort lanthanide (eu(3+)/tb(3+))-loaded γ-cyclodextrin nano-aggregates for smart sensing of the anticancer drug irinotecan
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9223530/
https://www.ncbi.nlm.nih.gov/pubmed/35743042
http://dx.doi.org/10.3390/ijms23126597
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