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Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy

OBJECTIVE: Gene therapy is a frontier in modern medicine. In the present study, we explored a new technique for the effective treatment of multidrug-resistant (MDR) breast cancer by combining fully the advantages of multidisciplinary fields, including image-guided minimally invasive interventional o...

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Autores principales: Luo, Jingfeng, Wu, Xiaotian, Zhou, Fei, Zhou, Yurong, Huang, Tongchun, Liu, Fei, Han, Guocan, Chen, Luming, Bai, Weixian, Wu, Xia, Sun, Jihong, Yang, Xiaoming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5323137/
https://www.ncbi.nlm.nih.gov/pubmed/27542255
http://dx.doi.org/10.18632/oncotarget.11346
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author Luo, Jingfeng
Wu, Xiaotian
Zhou, Fei
Zhou, Yurong
Huang, Tongchun
Liu, Fei
Han, Guocan
Chen, Luming
Bai, Weixian
Wu, Xia
Sun, Jihong
Yang, Xiaoming
author_facet Luo, Jingfeng
Wu, Xiaotian
Zhou, Fei
Zhou, Yurong
Huang, Tongchun
Liu, Fei
Han, Guocan
Chen, Luming
Bai, Weixian
Wu, Xia
Sun, Jihong
Yang, Xiaoming
author_sort Luo, Jingfeng
collection PubMed
description OBJECTIVE: Gene therapy is a frontier in modern medicine. In the present study, we explored a new technique for the effective treatment of multidrug-resistant (MDR) breast cancer by combining fully the advantages of multidisciplinary fields, including image-guided minimally invasive interventional oncology, radiofrequency technology, and direct intratumoral gene therapy. RESULTS: Combination treatment with P(HSP)-TK plus RFH resulted in significantly higher TK gene transfection/expression, as well as a lower cell proliferation rate and a higher cell apoptosis index, than those of control groups. In vivo validation experiments with MRI confirmed that combination therapy resulted in a significant reduction of relative tumor volume compared with those of control animals, which was supported by the results of histologic and apoptosis analyses. MATERIALS AND METHODS: The heat shock protein promoter (P(HSP)) was used to precisely control the overexpression of thymidine kinase (TK) (P(HSP)-TK). Serial in vitro experiments were performed to confirm whether radiofrequency hyperthermia (RFH) could enhance P(HSP)-TK transfection and expression in a MDR breast cancer cell line (MCF7/Adr). Serial in vivo experiments were then carried out to validate the feasibility of the new technique, termed interventional RFH-enhanced direct intratumoral P(HSP)-TK gene therapy. The therapeutic effect of combination therapy was evaluated by MRI and confirmed by subsequent laboratory correlation. CONCLUSIONS: This study has established “proof-of-principle” of a new technique, interventional RFH-enhanced local gene therapy for MDR breast cancer, which may open new avenues for the effective management of MDR breast cancers via the simultaneous integration of interventional oncology, RF technology, and direct intratumoral gene therapy.
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spelling pubmed-53231372017-03-23 Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy Luo, Jingfeng Wu, Xiaotian Zhou, Fei Zhou, Yurong Huang, Tongchun Liu, Fei Han, Guocan Chen, Luming Bai, Weixian Wu, Xia Sun, Jihong Yang, Xiaoming Oncotarget Research Paper OBJECTIVE: Gene therapy is a frontier in modern medicine. In the present study, we explored a new technique for the effective treatment of multidrug-resistant (MDR) breast cancer by combining fully the advantages of multidisciplinary fields, including image-guided minimally invasive interventional oncology, radiofrequency technology, and direct intratumoral gene therapy. RESULTS: Combination treatment with P(HSP)-TK plus RFH resulted in significantly higher TK gene transfection/expression, as well as a lower cell proliferation rate and a higher cell apoptosis index, than those of control groups. In vivo validation experiments with MRI confirmed that combination therapy resulted in a significant reduction of relative tumor volume compared with those of control animals, which was supported by the results of histologic and apoptosis analyses. MATERIALS AND METHODS: The heat shock protein promoter (P(HSP)) was used to precisely control the overexpression of thymidine kinase (TK) (P(HSP)-TK). Serial in vitro experiments were performed to confirm whether radiofrequency hyperthermia (RFH) could enhance P(HSP)-TK transfection and expression in a MDR breast cancer cell line (MCF7/Adr). Serial in vivo experiments were then carried out to validate the feasibility of the new technique, termed interventional RFH-enhanced direct intratumoral P(HSP)-TK gene therapy. The therapeutic effect of combination therapy was evaluated by MRI and confirmed by subsequent laboratory correlation. CONCLUSIONS: This study has established “proof-of-principle” of a new technique, interventional RFH-enhanced local gene therapy for MDR breast cancer, which may open new avenues for the effective management of MDR breast cancers via the simultaneous integration of interventional oncology, RF technology, and direct intratumoral gene therapy. Impact Journals LLC 2016-08-17 /pmc/articles/PMC5323137/ /pubmed/27542255 http://dx.doi.org/10.18632/oncotarget.11346 Text en Copyright: © 2016 Luo et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Luo, Jingfeng
Wu, Xiaotian
Zhou, Fei
Zhou, Yurong
Huang, Tongchun
Liu, Fei
Han, Guocan
Chen, Luming
Bai, Weixian
Wu, Xia
Sun, Jihong
Yang, Xiaoming
Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy
title Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy
title_full Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy
title_fullStr Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy
title_full_unstemmed Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy
title_short Radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled HSV-TK gene therapy: Toward imaging-guided interventional gene therapy
title_sort radiofrequency hyperthermia promotes the therapeutic effects on chemotherapeutic-resistant breast cancer when combined with heat shock protein promoter-controlled hsv-tk gene therapy: toward imaging-guided interventional gene therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5323137/
https://www.ncbi.nlm.nih.gov/pubmed/27542255
http://dx.doi.org/10.18632/oncotarget.11346
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