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Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm

Ruthenium complexes are emerging as potential complements to platinum drugs. They also show promise as photo-diagnostic and therapeutic agents. However, most ruthenium species studied to date as potential drugs are characterized by short excitation/emission wavelengths. This limits their applicabili...

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Autores principales: Li, Chonglu, Xu, Yuling, Tu, Le, Choi, Minhyeok, Fan, Yifan, Chen, Xiaoqiang, Sessler, Jonathan L., Kim, Jong Seung, Sun, Yao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9172562/
https://www.ncbi.nlm.nih.gov/pubmed/35756528
http://dx.doi.org/10.1039/d2sc01518h
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author Li, Chonglu
Xu, Yuling
Tu, Le
Choi, Minhyeok
Fan, Yifan
Chen, Xiaoqiang
Sessler, Jonathan L.
Kim, Jong Seung
Sun, Yao
author_facet Li, Chonglu
Xu, Yuling
Tu, Le
Choi, Minhyeok
Fan, Yifan
Chen, Xiaoqiang
Sessler, Jonathan L.
Kim, Jong Seung
Sun, Yao
author_sort Li, Chonglu
collection PubMed
description Ruthenium complexes are emerging as potential complements to platinum drugs. They also show promise as photo-diagnostic and therapeutic agents. However, most ruthenium species studied to date as potential drugs are characterized by short excitation/emission wavelengths. This limits their applicability for deep-tissue fluorescence imaging and light-based therapeutic treatments. Here, we report a Ru(ii) metallacycle (Ru1100) that emits at ≥1000 nm. This system possesses excellent deep-tissue penetration capability (∼7 mm) and displays good chemo-phototherapeutic performance. In vitro studies revealed that Ru1100 benefits from good cellular uptake and produces a strong anticancer response against several cancer cell lines, including a cisplatin-resistant A549 cell line (IC(50) = 1.6 μM vs. 51.4 μM for cisplatin). On the basis of in vitro studies, it is concluded that Ru1100 exerts its anticancer action by regulating cell cycle progression and triggering cancer cell apoptosis. In vivo studies involving the use of a nanoparticle formulation served to confirm that Ru1100 allows for high-performance NIR-II fluorescence imaging-guided precise chemo-phototherapy in the case of A549 tumour mouse xenografts with no obvious side effects. This work thus provides a paradigm for the development of long-wavelength emissive supramolecular theranostic agents based on ruthenium.
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spelling pubmed-91725622022-06-23 Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm Li, Chonglu Xu, Yuling Tu, Le Choi, Minhyeok Fan, Yifan Chen, Xiaoqiang Sessler, Jonathan L. Kim, Jong Seung Sun, Yao Chem Sci Chemistry Ruthenium complexes are emerging as potential complements to platinum drugs. They also show promise as photo-diagnostic and therapeutic agents. However, most ruthenium species studied to date as potential drugs are characterized by short excitation/emission wavelengths. This limits their applicability for deep-tissue fluorescence imaging and light-based therapeutic treatments. Here, we report a Ru(ii) metallacycle (Ru1100) that emits at ≥1000 nm. This system possesses excellent deep-tissue penetration capability (∼7 mm) and displays good chemo-phototherapeutic performance. In vitro studies revealed that Ru1100 benefits from good cellular uptake and produces a strong anticancer response against several cancer cell lines, including a cisplatin-resistant A549 cell line (IC(50) = 1.6 μM vs. 51.4 μM for cisplatin). On the basis of in vitro studies, it is concluded that Ru1100 exerts its anticancer action by regulating cell cycle progression and triggering cancer cell apoptosis. In vivo studies involving the use of a nanoparticle formulation served to confirm that Ru1100 allows for high-performance NIR-II fluorescence imaging-guided precise chemo-phototherapy in the case of A549 tumour mouse xenografts with no obvious side effects. This work thus provides a paradigm for the development of long-wavelength emissive supramolecular theranostic agents based on ruthenium. The Royal Society of Chemistry 2022-05-18 /pmc/articles/PMC9172562/ /pubmed/35756528 http://dx.doi.org/10.1039/d2sc01518h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Li, Chonglu
Xu, Yuling
Tu, Le
Choi, Minhyeok
Fan, Yifan
Chen, Xiaoqiang
Sessler, Jonathan L.
Kim, Jong Seung
Sun, Yao
Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
title Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
title_full Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
title_fullStr Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
title_full_unstemmed Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
title_short Rationally designed Ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
title_sort rationally designed ru(ii)-metallacycle chemo-phototheranostic that emits beyond 1000 nm
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9172562/
https://www.ncbi.nlm.nih.gov/pubmed/35756528
http://dx.doi.org/10.1039/d2sc01518h
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