Cargando…

Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform

Reliable and sensitive imaging tools are required to track macrophage migration and provide a better understating of their biological roles in various diseases. Here, we demonstrate the possibility of radioactive iodide-embedded gold nanoparticles (RIe-AuNPs) as a cell tracker for nuclear medicine i...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Sang Bong, Lee, Ho Won, Singh, Thoudam Debraj, Li, Yinghua, Kim, Sang Kyoon, Cho, Sung Jin, Lee, Sang-Woo, Jeong, Shin Young, Ahn, Byeong-Cheol, Choi, Sangil, Lee, In-Kyu, Lim, Dong-Kwon, Lee, Jaetae, Jeon, Yong Hyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5381254/
https://www.ncbi.nlm.nih.gov/pubmed/28382164
http://dx.doi.org/10.7150/thno.17131
_version_ 1782519903706677248
author Lee, Sang Bong
Lee, Ho Won
Singh, Thoudam Debraj
Li, Yinghua
Kim, Sang Kyoon
Cho, Sung Jin
Lee, Sang-Woo
Jeong, Shin Young
Ahn, Byeong-Cheol
Choi, Sangil
Lee, In-Kyu
Lim, Dong-Kwon
Lee, Jaetae
Jeon, Yong Hyun
author_facet Lee, Sang Bong
Lee, Ho Won
Singh, Thoudam Debraj
Li, Yinghua
Kim, Sang Kyoon
Cho, Sung Jin
Lee, Sang-Woo
Jeong, Shin Young
Ahn, Byeong-Cheol
Choi, Sangil
Lee, In-Kyu
Lim, Dong-Kwon
Lee, Jaetae
Jeon, Yong Hyun
author_sort Lee, Sang Bong
collection PubMed
description Reliable and sensitive imaging tools are required to track macrophage migration and provide a better understating of their biological roles in various diseases. Here, we demonstrate the possibility of radioactive iodide-embedded gold nanoparticles (RIe-AuNPs) as a cell tracker for nuclear medicine imaging. To demonstrate this utility, we monitored macrophage migration to carrageenan-induced sites of acute inflammation in living subjects and visualized the effects of anti-inflammatory agents on this process. Macrophage labeling with RIe-AuNPs did not alter their biological functions such as cell proliferation, phenotype marker expression, or phagocytic activity. In vivo imaging with positron-emission tomography revealed the migration of labeled macrophages to carrageenan-induced inflammation lesions 3 h after transfer, with highest recruitment at 6 h and a slight decline of radioactive signal at 24 h; these findings were highly consistent with the data of a bio-distribution study. Treatment with dexamethasone (an anti-inflammation drug) or GSK5182 (an ERRγ inverse agonist) hindered macrophage recruitment to the inflamed sites. Our findings suggest that a cell tracking strategy utilizing RIe-AuNPs will likely be highly useful in research related to macrophage-related disease and cell-based therapies.
format Online
Article
Text
id pubmed-5381254
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-53812542017-04-05 Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform Lee, Sang Bong Lee, Ho Won Singh, Thoudam Debraj Li, Yinghua Kim, Sang Kyoon Cho, Sung Jin Lee, Sang-Woo Jeong, Shin Young Ahn, Byeong-Cheol Choi, Sangil Lee, In-Kyu Lim, Dong-Kwon Lee, Jaetae Jeon, Yong Hyun Theranostics Research Paper Reliable and sensitive imaging tools are required to track macrophage migration and provide a better understating of their biological roles in various diseases. Here, we demonstrate the possibility of radioactive iodide-embedded gold nanoparticles (RIe-AuNPs) as a cell tracker for nuclear medicine imaging. To demonstrate this utility, we monitored macrophage migration to carrageenan-induced sites of acute inflammation in living subjects and visualized the effects of anti-inflammatory agents on this process. Macrophage labeling with RIe-AuNPs did not alter their biological functions such as cell proliferation, phenotype marker expression, or phagocytic activity. In vivo imaging with positron-emission tomography revealed the migration of labeled macrophages to carrageenan-induced inflammation lesions 3 h after transfer, with highest recruitment at 6 h and a slight decline of radioactive signal at 24 h; these findings were highly consistent with the data of a bio-distribution study. Treatment with dexamethasone (an anti-inflammation drug) or GSK5182 (an ERRγ inverse agonist) hindered macrophage recruitment to the inflamed sites. Our findings suggest that a cell tracking strategy utilizing RIe-AuNPs will likely be highly useful in research related to macrophage-related disease and cell-based therapies. Ivyspring International Publisher 2017-02-12 /pmc/articles/PMC5381254/ /pubmed/28382164 http://dx.doi.org/10.7150/thno.17131 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Lee, Sang Bong
Lee, Ho Won
Singh, Thoudam Debraj
Li, Yinghua
Kim, Sang Kyoon
Cho, Sung Jin
Lee, Sang-Woo
Jeong, Shin Young
Ahn, Byeong-Cheol
Choi, Sangil
Lee, In-Kyu
Lim, Dong-Kwon
Lee, Jaetae
Jeon, Yong Hyun
Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform
title Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform
title_full Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform
title_fullStr Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform
title_full_unstemmed Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform
title_short Visualization of Macrophage Recruitment to Inflammation Lesions using Highly Sensitive and Stable Radionuclide-Embedded Gold Nanoparticles as a Nuclear Bio-Imaging Platform
title_sort visualization of macrophage recruitment to inflammation lesions using highly sensitive and stable radionuclide-embedded gold nanoparticles as a nuclear bio-imaging platform
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5381254/
https://www.ncbi.nlm.nih.gov/pubmed/28382164
http://dx.doi.org/10.7150/thno.17131
work_keys_str_mv AT leesangbong visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT leehowon visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT singhthoudamdebraj visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT liyinghua visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT kimsangkyoon visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT chosungjin visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT leesangwoo visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT jeongshinyoung visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT ahnbyeongcheol visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT choisangil visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT leeinkyu visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT limdongkwon visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT leejaetae visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform
AT jeonyonghyun visualizationofmacrophagerecruitmenttoinflammationlesionsusinghighlysensitiveandstableradionuclideembeddedgoldnanoparticlesasanuclearbioimagingplatform