Cargando…

A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy

Nontoxic prodrugs, especially activated by tumor microenvironment, are urgently required for reducing the side effects of cancer therapy. And combination of chemo-photodynamic therapy prodrugs show effectively synergetic therapeutic efficiency, however, this goal has not been achieved in a single mo...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Hong-Wen, Hu, Xiao-Xiao, Li, Ke, Liu, Yongchao, Rong, Qiming, Zhu, Longmin, Yuan, Lin, Qu, Feng-Li, Zhang, Xiao-Bing, Tan, Weihong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5861986/
https://www.ncbi.nlm.nih.gov/pubmed/29619164
http://dx.doi.org/10.1039/c7sc03454g
_version_ 1783308155486208000
author Liu, Hong-Wen
Hu, Xiao-Xiao
Li, Ke
Liu, Yongchao
Rong, Qiming
Zhu, Longmin
Yuan, Lin
Qu, Feng-Li
Zhang, Xiao-Bing
Tan, Weihong
author_facet Liu, Hong-Wen
Hu, Xiao-Xiao
Li, Ke
Liu, Yongchao
Rong, Qiming
Zhu, Longmin
Yuan, Lin
Qu, Feng-Li
Zhang, Xiao-Bing
Tan, Weihong
author_sort Liu, Hong-Wen
collection PubMed
description Nontoxic prodrugs, especially activated by tumor microenvironment, are urgently required for reducing the side effects of cancer therapy. And combination of chemo-photodynamic therapy prodrugs show effectively synergetic therapeutic efficiency, however, this goal has not been achieved in a single molecule. In this work, we developed a mitochondrial-targeted prodrug PNPS for near infrared (NIR) fluorescence imaging guided and synergetic chemo-photodynamic precise cancer therapy for the first time. PNPS contains a NIR photosensitizer (NPS) and an anticancer drug 5′-deoxy-5-fluorouridine (5′-DFUR). These two parts are linked and caged through a bisboronate group, displaying no fluorescence and very low cytotoxicity. In the presence of H(2)O(2), the bisboronate group is broken, resulting in activation of NPS for NIR photodynamic therapy and activation of 5′-DFUR for chemotherapy. The activated NPS can also provide a NIR fluorescence signal for monitoring the release of activated drug. Taking advantage of the high H(2)O(2) concentration in cancer cells, PNPS exhibits higher cytotoxicity to cancer cells than normal cells, resulting in lower side effects. In addition, based on its mitochondrial-targeted ability, PNPS exhibits enhanced chemotherapy efficiency compare to free 5′-DFUR. It also demonstrated a remarkably improved and synergistic chemo-photodynamic therapeutic effect for cancer cells. Moreover, PNPS exhibits excellent tumor microenvironment-activated performance when intravenously injected into tumor-bearing nude mice, as demonstrated by in vivo fluorescence imaging. Thus, PNPS is a promising prodrug for cancer therapy based on its tumor microenvironment-activated drug release, synergistic therapeutic effect and “turn-on” NIR imaging guide.
format Online
Article
Text
id pubmed-5861986
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-58619862018-04-04 A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy Liu, Hong-Wen Hu, Xiao-Xiao Li, Ke Liu, Yongchao Rong, Qiming Zhu, Longmin Yuan, Lin Qu, Feng-Li Zhang, Xiao-Bing Tan, Weihong Chem Sci Chemistry Nontoxic prodrugs, especially activated by tumor microenvironment, are urgently required for reducing the side effects of cancer therapy. And combination of chemo-photodynamic therapy prodrugs show effectively synergetic therapeutic efficiency, however, this goal has not been achieved in a single molecule. In this work, we developed a mitochondrial-targeted prodrug PNPS for near infrared (NIR) fluorescence imaging guided and synergetic chemo-photodynamic precise cancer therapy for the first time. PNPS contains a NIR photosensitizer (NPS) and an anticancer drug 5′-deoxy-5-fluorouridine (5′-DFUR). These two parts are linked and caged through a bisboronate group, displaying no fluorescence and very low cytotoxicity. In the presence of H(2)O(2), the bisboronate group is broken, resulting in activation of NPS for NIR photodynamic therapy and activation of 5′-DFUR for chemotherapy. The activated NPS can also provide a NIR fluorescence signal for monitoring the release of activated drug. Taking advantage of the high H(2)O(2) concentration in cancer cells, PNPS exhibits higher cytotoxicity to cancer cells than normal cells, resulting in lower side effects. In addition, based on its mitochondrial-targeted ability, PNPS exhibits enhanced chemotherapy efficiency compare to free 5′-DFUR. It also demonstrated a remarkably improved and synergistic chemo-photodynamic therapeutic effect for cancer cells. Moreover, PNPS exhibits excellent tumor microenvironment-activated performance when intravenously injected into tumor-bearing nude mice, as demonstrated by in vivo fluorescence imaging. Thus, PNPS is a promising prodrug for cancer therapy based on its tumor microenvironment-activated drug release, synergistic therapeutic effect and “turn-on” NIR imaging guide. Royal Society of Chemistry 2017-11-01 2017-09-14 /pmc/articles/PMC5861986/ /pubmed/29619164 http://dx.doi.org/10.1039/c7sc03454g Text en This journal is © The Royal Society of Chemistry 2017 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Liu, Hong-Wen
Hu, Xiao-Xiao
Li, Ke
Liu, Yongchao
Rong, Qiming
Zhu, Longmin
Yuan, Lin
Qu, Feng-Li
Zhang, Xiao-Bing
Tan, Weihong
A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy
title A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy
title_full A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy
title_fullStr A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy
title_full_unstemmed A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy
title_short A mitochondrial-targeted prodrug for NIR imaging guided and synergetic NIR photodynamic-chemo cancer therapy
title_sort mitochondrial-targeted prodrug for nir imaging guided and synergetic nir photodynamic-chemo cancer therapy
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5861986/
https://www.ncbi.nlm.nih.gov/pubmed/29619164
http://dx.doi.org/10.1039/c7sc03454g
work_keys_str_mv AT liuhongwen amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT huxiaoxiao amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT like amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT liuyongchao amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT rongqiming amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT zhulongmin amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT yuanlin amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT qufengli amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT zhangxiaobing amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT tanweihong amitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT liuhongwen mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT huxiaoxiao mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT like mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT liuyongchao mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT rongqiming mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT zhulongmin mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT yuanlin mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT qufengli mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT zhangxiaobing mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy
AT tanweihong mitochondrialtargetedprodrugfornirimagingguidedandsynergeticnirphotodynamicchemocancertherapy