Cargando…

Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound

OBJECTIVES: To utilize phosphorescence to monitor hypoxic microenvironment in solid-tumors and investigate cancer chemotherapeutic effects in vivo. METHODS: A hypoxia-sensitive probe named BTP was used to monitor hypoxic microenvironment in solid-tumors. The low-dose metronomic treatment with cispla...

Descripción completa

Detalles Bibliográficos
Autores principales: Zeng, Yun, Liu, Yang, Shang, Jin, Ma, Jingwen, Wang, Rong, Deng, Lei, Guo, Youmin, Zhong, Fan, Bai, Mingfeng, Zhang, Shaojuan, Wu, Daocheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4365010/
https://www.ncbi.nlm.nih.gov/pubmed/25786221
http://dx.doi.org/10.1371/journal.pone.0121293
_version_ 1782362171672363008
author Zeng, Yun
Liu, Yang
Shang, Jin
Ma, Jingwen
Wang, Rong
Deng, Lei
Guo, Youmin
Zhong, Fan
Bai, Mingfeng
Zhang, Shaojuan
Wu, Daocheng
author_facet Zeng, Yun
Liu, Yang
Shang, Jin
Ma, Jingwen
Wang, Rong
Deng, Lei
Guo, Youmin
Zhong, Fan
Bai, Mingfeng
Zhang, Shaojuan
Wu, Daocheng
author_sort Zeng, Yun
collection PubMed
description OBJECTIVES: To utilize phosphorescence to monitor hypoxic microenvironment in solid-tumors and investigate cancer chemotherapeutic effects in vivo. METHODS: A hypoxia-sensitive probe named BTP was used to monitor hypoxic microenvironment in solid-tumors. The low-dose metronomic treatment with cisplatin was used in anti-angiogenetic chemotherapeutic programs. The phosphorescence properties of BTP were detected by a spectrofluorometer. BTP cytotoxicity utilized cell necrosis and apoptosis, which were evaluated by trypan blue dye exclusion and Hoechst33342 plus propidium iodide assays. Tumor-bearing mouse models of colon adenocarcinoma were used for tumor imaging in vivo. Monitoring of the hypoxic microenvironment in tumors was performed with a Maestro 2 fluorescence imaging system. Tumor tissues in each group were harvested regularly and treated with pathological hematoxylin and eosin and immunohistochemical staining to confirm imaging results. RESULTS: BTP did not feature obvious cytotoxicity for cells, and tumor growth in low-dose metronomic cisplatin treated mice was significantly inhibited by chemotherapy. Hypoxic levels significantly increased due to cisplatin, as proven by the expression level of related proteins. Phosphorescence intensity in the tumors of mice in the cisplatin group was stronger and showed higher contrast than that in tumors of saline treated mice. CONCLUSIONS: We develop a useful phosphorescence method to evaluate the chemotherapeutic effects of cisplatin. The proposed method shows potential as a phosphorescence imaging approach for evaluating chemotherapeutic effects in vivo, especially anti-angiogenesis.
format Online
Article
Text
id pubmed-4365010
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43650102015-03-23 Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound Zeng, Yun Liu, Yang Shang, Jin Ma, Jingwen Wang, Rong Deng, Lei Guo, Youmin Zhong, Fan Bai, Mingfeng Zhang, Shaojuan Wu, Daocheng PLoS One Research Article OBJECTIVES: To utilize phosphorescence to monitor hypoxic microenvironment in solid-tumors and investigate cancer chemotherapeutic effects in vivo. METHODS: A hypoxia-sensitive probe named BTP was used to monitor hypoxic microenvironment in solid-tumors. The low-dose metronomic treatment with cisplatin was used in anti-angiogenetic chemotherapeutic programs. The phosphorescence properties of BTP were detected by a spectrofluorometer. BTP cytotoxicity utilized cell necrosis and apoptosis, which were evaluated by trypan blue dye exclusion and Hoechst33342 plus propidium iodide assays. Tumor-bearing mouse models of colon adenocarcinoma were used for tumor imaging in vivo. Monitoring of the hypoxic microenvironment in tumors was performed with a Maestro 2 fluorescence imaging system. Tumor tissues in each group were harvested regularly and treated with pathological hematoxylin and eosin and immunohistochemical staining to confirm imaging results. RESULTS: BTP did not feature obvious cytotoxicity for cells, and tumor growth in low-dose metronomic cisplatin treated mice was significantly inhibited by chemotherapy. Hypoxic levels significantly increased due to cisplatin, as proven by the expression level of related proteins. Phosphorescence intensity in the tumors of mice in the cisplatin group was stronger and showed higher contrast than that in tumors of saline treated mice. CONCLUSIONS: We develop a useful phosphorescence method to evaluate the chemotherapeutic effects of cisplatin. The proposed method shows potential as a phosphorescence imaging approach for evaluating chemotherapeutic effects in vivo, especially anti-angiogenesis. Public Library of Science 2015-03-18 /pmc/articles/PMC4365010/ /pubmed/25786221 http://dx.doi.org/10.1371/journal.pone.0121293 Text en © 2015 Zeng et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zeng, Yun
Liu, Yang
Shang, Jin
Ma, Jingwen
Wang, Rong
Deng, Lei
Guo, Youmin
Zhong, Fan
Bai, Mingfeng
Zhang, Shaojuan
Wu, Daocheng
Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound
title Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound
title_full Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound
title_fullStr Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound
title_full_unstemmed Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound
title_short Phosphorescence Monitoring of Hypoxic Microenvironment in Solid-Tumors to Evaluate Chemotherapeutic Effects Using the Hypoxia-Sensitive Iridium (III) Coordination Compound
title_sort phosphorescence monitoring of hypoxic microenvironment in solid-tumors to evaluate chemotherapeutic effects using the hypoxia-sensitive iridium (iii) coordination compound
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4365010/
https://www.ncbi.nlm.nih.gov/pubmed/25786221
http://dx.doi.org/10.1371/journal.pone.0121293
work_keys_str_mv AT zengyun phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT liuyang phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT shangjin phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT majingwen phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT wangrong phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT denglei phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT guoyoumin phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT zhongfan phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT baimingfeng phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT zhangshaojuan phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound
AT wudaocheng phosphorescencemonitoringofhypoxicmicroenvironmentinsolidtumorstoevaluatechemotherapeuticeffectsusingthehypoxiasensitiveiridiumiiicoordinationcompound