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Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs

INTRODUCTION: To investigate the biodistribution and retention properties of the new super paramagnetic iron oxide (new SPIO: mean hydrodynamic diameter, 100 nm) nanoparticles, which have concentrated polymer brushes in the outer shell and are difficult for phagocytes to absorb, and to compare the n...

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Autores principales: Chen, Ting, Mori, Yuki, Inui-Yamamoto, Chizuko, Komai, Yutaka, Tago, Yoshiyuki, Yoshida, Shinichi, Takabatake, Yoshitsugu, Isaka, Yoshitaka, Ohno, Kohji, Yoshioka, Yoshichika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society for Magnetic Resonance in Medicine 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5743518/
https://www.ncbi.nlm.nih.gov/pubmed/28132997
http://dx.doi.org/10.2463/mrms.mp.2016-0067
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author Chen, Ting
Mori, Yuki
Inui-Yamamoto, Chizuko
Komai, Yutaka
Tago, Yoshiyuki
Yoshida, Shinichi
Takabatake, Yoshitsugu
Isaka, Yoshitaka
Ohno, Kohji
Yoshioka, Yoshichika
author_facet Chen, Ting
Mori, Yuki
Inui-Yamamoto, Chizuko
Komai, Yutaka
Tago, Yoshiyuki
Yoshida, Shinichi
Takabatake, Yoshitsugu
Isaka, Yoshitaka
Ohno, Kohji
Yoshioka, Yoshichika
author_sort Chen, Ting
collection PubMed
description INTRODUCTION: To investigate the biodistribution and retention properties of the new super paramagnetic iron oxide (new SPIO: mean hydrodynamic diameter, 100 nm) nanoparticles, which have concentrated polymer brushes in the outer shell and are difficult for phagocytes to absorb, and to compare the new SPIO with clinically approved SPIO (Resovist: mean hydrodynamic diameter, 57 nm). MATERIALS AND METHODS: 16 male C57BL/6N mice were divided in two groups according to the administered SPIO (n = 8 for each group; intravenous injection does, 0.1 ml). In vivo magnetic resonance imaging (MRI) was performed before and one hour, one day, one week and four weeks after SPIO administration by two dimensional-the fast low angle shot (2D-FLASH) sequence at 11.7T. Ex vivo high-resolution images of fixed organs were also obtained by (2D-FLASH). After the ex vivo MRI, organs were sectioned and evaluated histologically to confirm the biodistribution of each particle precisely. RESULTS: The new SPIO was taken up in small amounts by liver Kupffer cells and showed a unique in vivo MRI contrast pattern in the kidneys, where the signal intensity decreased substantially in the boundaries between cortex and outer medulla and between outer and inner medulla. We found many round dark spots in the cortex by ex vivo MRI in both groups. Resovist could be detected almost in the cortex. The shapes of the dark spots were similar to those observed in the new SPIO group. Transmission electron microscopy revealed that Resovist and the new SPIO accumulated in different cells of glomeruli, that is, endothelial and mesangial cells, respectively. CONCLUSION: The new SPIO was taken up in small amounts by liver tissue and showed a unique MRI contrast pattern in the kidney. The SPIO were found in the mesangial cells of renal corpuscles. Our results indicate that the new SPIO may be potentially be used as a new contrast agent for evaluation of kidney function as well as immunune function.
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spelling pubmed-57435182018-01-04 Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs Chen, Ting Mori, Yuki Inui-Yamamoto, Chizuko Komai, Yutaka Tago, Yoshiyuki Yoshida, Shinichi Takabatake, Yoshitsugu Isaka, Yoshitaka Ohno, Kohji Yoshioka, Yoshichika Magn Reson Med Sci Major Paper INTRODUCTION: To investigate the biodistribution and retention properties of the new super paramagnetic iron oxide (new SPIO: mean hydrodynamic diameter, 100 nm) nanoparticles, which have concentrated polymer brushes in the outer shell and are difficult for phagocytes to absorb, and to compare the new SPIO with clinically approved SPIO (Resovist: mean hydrodynamic diameter, 57 nm). MATERIALS AND METHODS: 16 male C57BL/6N mice were divided in two groups according to the administered SPIO (n = 8 for each group; intravenous injection does, 0.1 ml). In vivo magnetic resonance imaging (MRI) was performed before and one hour, one day, one week and four weeks after SPIO administration by two dimensional-the fast low angle shot (2D-FLASH) sequence at 11.7T. Ex vivo high-resolution images of fixed organs were also obtained by (2D-FLASH). After the ex vivo MRI, organs were sectioned and evaluated histologically to confirm the biodistribution of each particle precisely. RESULTS: The new SPIO was taken up in small amounts by liver Kupffer cells and showed a unique in vivo MRI contrast pattern in the kidneys, where the signal intensity decreased substantially in the boundaries between cortex and outer medulla and between outer and inner medulla. We found many round dark spots in the cortex by ex vivo MRI in both groups. Resovist could be detected almost in the cortex. The shapes of the dark spots were similar to those observed in the new SPIO group. Transmission electron microscopy revealed that Resovist and the new SPIO accumulated in different cells of glomeruli, that is, endothelial and mesangial cells, respectively. CONCLUSION: The new SPIO was taken up in small amounts by liver tissue and showed a unique MRI contrast pattern in the kidney. The SPIO were found in the mesangial cells of renal corpuscles. Our results indicate that the new SPIO may be potentially be used as a new contrast agent for evaluation of kidney function as well as immunune function. Japanese Society for Magnetic Resonance in Medicine 2017-01-30 /pmc/articles/PMC5743518/ /pubmed/28132997 http://dx.doi.org/10.2463/mrms.mp.2016-0067 Text en © 2017 Japanese Society for Magnetic Resonance in Medicine http://creativecommons.org/licenses/by/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives International License.
spellingShingle Major Paper
Chen, Ting
Mori, Yuki
Inui-Yamamoto, Chizuko
Komai, Yutaka
Tago, Yoshiyuki
Yoshida, Shinichi
Takabatake, Yoshitsugu
Isaka, Yoshitaka
Ohno, Kohji
Yoshioka, Yoshichika
Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs
title Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs
title_full Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs
title_fullStr Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs
title_full_unstemmed Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs
title_short Polymer-brush-afforded SPIO Nanoparticles Show a Unique Biodistribution and MR Imaging Contrast in Mouse Organs
title_sort polymer-brush-afforded spio nanoparticles show a unique biodistribution and mr imaging contrast in mouse organs
topic Major Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5743518/
https://www.ncbi.nlm.nih.gov/pubmed/28132997
http://dx.doi.org/10.2463/mrms.mp.2016-0067
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