Imaging Tumor Necrosis with Ferumoxytol.

Ultra-small superparamagnetic iron oxide nanoparticles (USPIO) are promising contrast agents for magnetic resonance imaging (MRI). USPIO mediated proton relaxation rate enhancement is strongly dependent on compartmentalization of the agent and can vary depending on their intracellular or extracellul...

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Main Authors: Maryam Aghighi, Daniel Golovko, Celina Ansari, Neyssa M Marina, Laura Pisani, Lonnie Kurlander, Christopher Klenk, Srabani Bhaumik, Michael Wendland, Heike E Daldrup-Link
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4646285?pdf=render
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spelling doaj-46168f918b48424fb3b43dfe1a85931b2020-11-25T01:19:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011011e014266510.1371/journal.pone.0142665Imaging Tumor Necrosis with Ferumoxytol.Maryam AghighiDaniel GolovkoCelina AnsariNeyssa M MarinaLaura PisaniLonnie KurlanderChristopher KlenkSrabani BhaumikMichael WendlandHeike E Daldrup-LinkUltra-small superparamagnetic iron oxide nanoparticles (USPIO) are promising contrast agents for magnetic resonance imaging (MRI). USPIO mediated proton relaxation rate enhancement is strongly dependent on compartmentalization of the agent and can vary depending on their intracellular or extracellular location in the tumor microenvironment. We compared the T1- and T2-enhancement pattern of intracellular and extracellular USPIO in mouse models of cancer and pilot data from patients. A better understanding of these MR signal effects will enable non-invasive characterizations of the composition of the tumor microenvironment.Six 4T1 and six MMTV-PyMT mammary tumors were grown in mice and imaged with ferumoxytol-enhanced MRI. R1 relaxation rates were calculated for different tumor types and different tumor areas and compared with histology. The transendothelial leakage rate of ferumoxytol was obtained by our measured relaxivity of ferumoxytol and compared between different tumor types, using a t-test. Additionally, 3 patients with malignant sarcomas were imaged with ferumoxytol-enhanced MRI. T1- and T2-enhancement patterns were compared with histopathology in a descriptive manner as a proof of concept for clinical translation of our observations.4T1 tumors showed central areas of high signal on T1 and low signal on T2 weighted MR images, which corresponded to extracellular nanoparticles in a necrotic core on histopathology. MMTV-PyMT tumors showed little change on T1 but decreased signal on T2 weighted images, which correlated to compartmentalized nanoparticles in tumor associated macrophages. Only 4T1 tumors demonstrated significantly increased R1 relaxation rates of the tumor core compared to the tumor periphery (p<0.001). Transendothelial USPIO leakage was significantly higher for 4T1 tumors (3.4±0.9x10-3 mL/min/100cm3) compared to MMTV-PyMT tumors (1.0±0.9x10-3 mL/min/100 cm3). Likewise, ferumoxytol imaging in patients showed similar findings with high T1 signal in areas of tumor necrosis and low signal in areas of intracellularly compartmentalized iron.Differential T1- and T2-enhancement patterns of USPIO in tumors enable conclusions about their intracellular and extracellular location. This information can be used to characterize the composition of the tumor microenvironment.http://europepmc.org/articles/PMC4646285?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Maryam Aghighi
Daniel Golovko
Celina Ansari
Neyssa M Marina
Laura Pisani
Lonnie Kurlander
Christopher Klenk
Srabani Bhaumik
Michael Wendland
Heike E Daldrup-Link
spellingShingle Maryam Aghighi
Daniel Golovko
Celina Ansari
Neyssa M Marina
Laura Pisani
Lonnie Kurlander
Christopher Klenk
Srabani Bhaumik
Michael Wendland
Heike E Daldrup-Link
Imaging Tumor Necrosis with Ferumoxytol.
PLoS ONE
author_facet Maryam Aghighi
Daniel Golovko
Celina Ansari
Neyssa M Marina
Laura Pisani
Lonnie Kurlander
Christopher Klenk
Srabani Bhaumik
Michael Wendland
Heike E Daldrup-Link
author_sort Maryam Aghighi
title Imaging Tumor Necrosis with Ferumoxytol.
title_short Imaging Tumor Necrosis with Ferumoxytol.
title_full Imaging Tumor Necrosis with Ferumoxytol.
title_fullStr Imaging Tumor Necrosis with Ferumoxytol.
title_full_unstemmed Imaging Tumor Necrosis with Ferumoxytol.
title_sort imaging tumor necrosis with ferumoxytol.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Ultra-small superparamagnetic iron oxide nanoparticles (USPIO) are promising contrast agents for magnetic resonance imaging (MRI). USPIO mediated proton relaxation rate enhancement is strongly dependent on compartmentalization of the agent and can vary depending on their intracellular or extracellular location in the tumor microenvironment. We compared the T1- and T2-enhancement pattern of intracellular and extracellular USPIO in mouse models of cancer and pilot data from patients. A better understanding of these MR signal effects will enable non-invasive characterizations of the composition of the tumor microenvironment.Six 4T1 and six MMTV-PyMT mammary tumors were grown in mice and imaged with ferumoxytol-enhanced MRI. R1 relaxation rates were calculated for different tumor types and different tumor areas and compared with histology. The transendothelial leakage rate of ferumoxytol was obtained by our measured relaxivity of ferumoxytol and compared between different tumor types, using a t-test. Additionally, 3 patients with malignant sarcomas were imaged with ferumoxytol-enhanced MRI. T1- and T2-enhancement patterns were compared with histopathology in a descriptive manner as a proof of concept for clinical translation of our observations.4T1 tumors showed central areas of high signal on T1 and low signal on T2 weighted MR images, which corresponded to extracellular nanoparticles in a necrotic core on histopathology. MMTV-PyMT tumors showed little change on T1 but decreased signal on T2 weighted images, which correlated to compartmentalized nanoparticles in tumor associated macrophages. Only 4T1 tumors demonstrated significantly increased R1 relaxation rates of the tumor core compared to the tumor periphery (p<0.001). Transendothelial USPIO leakage was significantly higher for 4T1 tumors (3.4±0.9x10-3 mL/min/100cm3) compared to MMTV-PyMT tumors (1.0±0.9x10-3 mL/min/100 cm3). Likewise, ferumoxytol imaging in patients showed similar findings with high T1 signal in areas of tumor necrosis and low signal in areas of intracellularly compartmentalized iron.Differential T1- and T2-enhancement patterns of USPIO in tumors enable conclusions about their intracellular and extracellular location. This information can be used to characterize the composition of the tumor microenvironment.
url http://europepmc.org/articles/PMC4646285?pdf=render
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