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A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study

BACKGROUND: There is renewed interest in magnetic hyperthermia as a treatment modality for cancer, especially when it is combined with other more traditional therapeutic approaches, such as the co-delivery of anticancer drugs or photodynamic therapy. METHODS: The influence of bimagnetic nanoparticle...

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Autores principales: Balivada, Sivasai, Rachakatla, Raja Shekar, Wang, Hongwang, Samarakoon, Thilani N, Dani, Raj Kumar, Pyle, Marla, Kroh, Franklin O, Walker, Brandon, Leaym, Xiaoxuan, Koper, Olga B, Tamura, Masaaki, Chikan, Viktor, Bossmann, Stefan H, Troyer, Deryl L
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2859385/
https://www.ncbi.nlm.nih.gov/pubmed/20350328
http://dx.doi.org/10.1186/1471-2407-10-119
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author Balivada, Sivasai
Rachakatla, Raja Shekar
Wang, Hongwang
Samarakoon, Thilani N
Dani, Raj Kumar
Pyle, Marla
Kroh, Franklin O
Walker, Brandon
Leaym, Xiaoxuan
Koper, Olga B
Tamura, Masaaki
Chikan, Viktor
Bossmann, Stefan H
Troyer, Deryl L
author_facet Balivada, Sivasai
Rachakatla, Raja Shekar
Wang, Hongwang
Samarakoon, Thilani N
Dani, Raj Kumar
Pyle, Marla
Kroh, Franklin O
Walker, Brandon
Leaym, Xiaoxuan
Koper, Olga B
Tamura, Masaaki
Chikan, Viktor
Bossmann, Stefan H
Troyer, Deryl L
author_sort Balivada, Sivasai
collection PubMed
description BACKGROUND: There is renewed interest in magnetic hyperthermia as a treatment modality for cancer, especially when it is combined with other more traditional therapeutic approaches, such as the co-delivery of anticancer drugs or photodynamic therapy. METHODS: The influence of bimagnetic nanoparticles (MNPs) combined with short external alternating magnetic field (AMF) exposure on the growth of subcutaneous mouse melanomas (B16-F10) was evaluated. Bimagnetic Fe/Fe(3)O(4 )core/shell nanoparticles were designed for cancer targeting after intratumoral or intravenous administration. Their inorganic center was protected against rapid biocorrosion by organic dopamine-oligoethylene glycol ligands. TCPP (4-tetracarboxyphenyl porphyrin) units were attached to the dopamine-oligoethylene glycol ligands. RESULTS: The magnetic hyperthermia results obtained after intratumoral injection indicated that micromolar concentrations of iron given within the modified core-shell Fe/Fe(3)O(4 )nanoparticles caused a significant anti-tumor effect on murine B16-F10 melanoma with three short 10-minute AMF exposures. We also observed a decrease in tumor size after intravenous administration of the MNPs followed by three consecutive days of AMF exposure 24 hrs after the MNPs injection. CONCLUSIONS: These results indicate that intratumoral administration of surface modified MNPs can attenuate mouse melanoma after AMF exposure. Moreover, we have found that after intravenous administration of micromolar concentrations, these MNPs are capable of causing an anti-tumor effect in a mouse melanoma model after only a short AMF exposure time. This is a clear improvement to state of the art.
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spelling pubmed-28593852010-04-27 A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study Balivada, Sivasai Rachakatla, Raja Shekar Wang, Hongwang Samarakoon, Thilani N Dani, Raj Kumar Pyle, Marla Kroh, Franklin O Walker, Brandon Leaym, Xiaoxuan Koper, Olga B Tamura, Masaaki Chikan, Viktor Bossmann, Stefan H Troyer, Deryl L BMC Cancer Research Article BACKGROUND: There is renewed interest in magnetic hyperthermia as a treatment modality for cancer, especially when it is combined with other more traditional therapeutic approaches, such as the co-delivery of anticancer drugs or photodynamic therapy. METHODS: The influence of bimagnetic nanoparticles (MNPs) combined with short external alternating magnetic field (AMF) exposure on the growth of subcutaneous mouse melanomas (B16-F10) was evaluated. Bimagnetic Fe/Fe(3)O(4 )core/shell nanoparticles were designed for cancer targeting after intratumoral or intravenous administration. Their inorganic center was protected against rapid biocorrosion by organic dopamine-oligoethylene glycol ligands. TCPP (4-tetracarboxyphenyl porphyrin) units were attached to the dopamine-oligoethylene glycol ligands. RESULTS: The magnetic hyperthermia results obtained after intratumoral injection indicated that micromolar concentrations of iron given within the modified core-shell Fe/Fe(3)O(4 )nanoparticles caused a significant anti-tumor effect on murine B16-F10 melanoma with three short 10-minute AMF exposures. We also observed a decrease in tumor size after intravenous administration of the MNPs followed by three consecutive days of AMF exposure 24 hrs after the MNPs injection. CONCLUSIONS: These results indicate that intratumoral administration of surface modified MNPs can attenuate mouse melanoma after AMF exposure. Moreover, we have found that after intravenous administration of micromolar concentrations, these MNPs are capable of causing an anti-tumor effect in a mouse melanoma model after only a short AMF exposure time. This is a clear improvement to state of the art. BioMed Central 2010-03-30 /pmc/articles/PMC2859385/ /pubmed/20350328 http://dx.doi.org/10.1186/1471-2407-10-119 Text en Copyright ©2010 Balivada et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Balivada, Sivasai
Rachakatla, Raja Shekar
Wang, Hongwang
Samarakoon, Thilani N
Dani, Raj Kumar
Pyle, Marla
Kroh, Franklin O
Walker, Brandon
Leaym, Xiaoxuan
Koper, Olga B
Tamura, Masaaki
Chikan, Viktor
Bossmann, Stefan H
Troyer, Deryl L
A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
title A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
title_full A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
title_fullStr A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
title_full_unstemmed A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
title_short A/C magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
title_sort a/c magnetic hyperthermia of melanoma mediated by iron(0)/iron oxide core/shell magnetic nanoparticles: a mouse study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2859385/
https://www.ncbi.nlm.nih.gov/pubmed/20350328
http://dx.doi.org/10.1186/1471-2407-10-119
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