Cargando…

Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy

Real-time tracking for where (W), when (W), and how (H) prodrugs are delivered and activated in vivo is a great challenge for prodrug development. Disulfide linkage-based prodrugs as well as their delivery systems have been studied extensively, but the WWH question in spatial and temporal (spatiotem...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Mingzhou, Wang, Xiaohang, Tang, Jianbin, Guo, Zhiqian, Shen, Youqing, Tian, He, Zhu, Wei-Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6018301/
https://www.ncbi.nlm.nih.gov/pubmed/30155145
http://dx.doi.org/10.1039/c6sc00970k
_version_ 1783334927624830976
author Ye, Mingzhou
Wang, Xiaohang
Tang, Jianbin
Guo, Zhiqian
Shen, Youqing
Tian, He
Zhu, Wei-Hong
author_facet Ye, Mingzhou
Wang, Xiaohang
Tang, Jianbin
Guo, Zhiqian
Shen, Youqing
Tian, He
Zhu, Wei-Hong
author_sort Ye, Mingzhou
collection PubMed
description Real-time tracking for where (W), when (W), and how (H) prodrugs are delivered and activated in vivo is a great challenge for prodrug development. Disulfide linkage-based prodrugs as well as their delivery systems have been studied extensively, but the WWH question in spatial and temporal (spatiotemporal) precision remains unanswered. Herein, we present a novel prodrug of camptothecin (CPT) linked to a near-infrared (NIR) cyanine dye via a disulfide linkage (Cy-S-CPT). The cleavage of the disulfide bond in Cy-S-CPT by endogenous glutathione (GSH) can activate the anti-cancer drug CPT and induce a remarkable fluorescence shift from 825 to 650 nm, thereby providing dual fluorescent channels to real-time track the prodrug biodistribution and activation in vivo. Impressively, the dual-channel NIR fluorescence bioimaging exhibits the pervasive drug distribution, i.e., the biodistribution of the intact prodrug was traced at the 825 nm-NIR fluorescence channel, whereas the activated drug was tracked at the 650 nm red fluorescence channel. In this way, we can overcome the blind spot in the metabolism kinetics of prodrugs in a certain organ or tissue. As demonstrated, the prodrug prompts activation in all the organs, particularly in the liver after an intravenous injection, and achieves predominant accumulation and activation in tumors at 24 h post injection. Cy-S-CPT loaded in PEG–PLA nanoparticles display significantly improved therapeutic efficacy and low side effects with respect to the clinical used drug CPT-11. As a consequence, the NIR spatiotemporal bioimaging in vivo with dual fluorescence channels allows the prodrug release profile to be extracted precisely, particularly in visualizing drug-released information from complex biological systems such as mice, thereby providing a unique opportunity to take insight into the relationship between theranosis and pharmacokinetics.
format Online
Article
Text
id pubmed-6018301
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-60183012018-08-28 Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy Ye, Mingzhou Wang, Xiaohang Tang, Jianbin Guo, Zhiqian Shen, Youqing Tian, He Zhu, Wei-Hong Chem Sci Chemistry Real-time tracking for where (W), when (W), and how (H) prodrugs are delivered and activated in vivo is a great challenge for prodrug development. Disulfide linkage-based prodrugs as well as their delivery systems have been studied extensively, but the WWH question in spatial and temporal (spatiotemporal) precision remains unanswered. Herein, we present a novel prodrug of camptothecin (CPT) linked to a near-infrared (NIR) cyanine dye via a disulfide linkage (Cy-S-CPT). The cleavage of the disulfide bond in Cy-S-CPT by endogenous glutathione (GSH) can activate the anti-cancer drug CPT and induce a remarkable fluorescence shift from 825 to 650 nm, thereby providing dual fluorescent channels to real-time track the prodrug biodistribution and activation in vivo. Impressively, the dual-channel NIR fluorescence bioimaging exhibits the pervasive drug distribution, i.e., the biodistribution of the intact prodrug was traced at the 825 nm-NIR fluorescence channel, whereas the activated drug was tracked at the 650 nm red fluorescence channel. In this way, we can overcome the blind spot in the metabolism kinetics of prodrugs in a certain organ or tissue. As demonstrated, the prodrug prompts activation in all the organs, particularly in the liver after an intravenous injection, and achieves predominant accumulation and activation in tumors at 24 h post injection. Cy-S-CPT loaded in PEG–PLA nanoparticles display significantly improved therapeutic efficacy and low side effects with respect to the clinical used drug CPT-11. As a consequence, the NIR spatiotemporal bioimaging in vivo with dual fluorescence channels allows the prodrug release profile to be extracted precisely, particularly in visualizing drug-released information from complex biological systems such as mice, thereby providing a unique opportunity to take insight into the relationship between theranosis and pharmacokinetics. Royal Society of Chemistry 2016-08-01 2016-04-28 /pmc/articles/PMC6018301/ /pubmed/30155145 http://dx.doi.org/10.1039/c6sc00970k Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Ye, Mingzhou
Wang, Xiaohang
Tang, Jianbin
Guo, Zhiqian
Shen, Youqing
Tian, He
Zhu, Wei-Hong
Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
title Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
title_full Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
title_fullStr Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
title_full_unstemmed Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
title_short Dual-channel NIR activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
title_sort dual-channel nir activatable theranostic prodrug for in vivo spatiotemporal tracking thiol-triggered chemotherapy
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6018301/
https://www.ncbi.nlm.nih.gov/pubmed/30155145
http://dx.doi.org/10.1039/c6sc00970k
work_keys_str_mv AT yemingzhou dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy
AT wangxiaohang dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy
AT tangjianbin dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy
AT guozhiqian dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy
AT shenyouqing dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy
AT tianhe dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy
AT zhuweihong dualchannelniractivatabletheranosticprodrugforinvivospatiotemporaltrackingthioltriggeredchemotherapy