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Dynamically Reversible Iron Oxide Nanoparticle Assemblies for Targeted Amplification of T1-Weighted Magnetic Resonance Imaging of Tumors

Authors
Li, FangyuanLiang, ZeyuLiu, JiananSun, JihongHu, XiZhao, MengLiu, JiaxinBai, RuiliangKim, DokyoonSun, XiaolianHyeon, TaeghwanLing, Daishun
Issue Date
Jul-2019
Publisher
American Chemical Society
Keywords
Dynamic assembly; iron oxide nanoparticle; pH -sensitive; T1MR imaging; tumor diagnosis
Citation
Nano Letters, v.19, no.7, pp.4213 - 4220
Indexed
SCIE
SCOPUS
Journal Title
Nano Letters
Volume
19
Number
7
Start Page
4213
End Page
4220
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/2805
DOI
10.1021/acs.nanolett.8b04411
ISSN
1530-6984
Abstract
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced under acidic tumor microenvironment, are anticipated to significantly improve the diagnostic accuracy. Here, we report pH-sensitive iron oxide nanoparticle assemblies (IONAs) that are cross-linked by small-molecular aldehyde derivative ligands. The dynamic formation and cleavage of hydrazone linkages in neutral and acidic environments, respectively, allow the reversible response of the nanoassemblies to pH variations. At neutral pH, IONAs are structurally robust due to the cross-linking by the strong hydrazone bonds. In acidic tumor microenvironment, the hydrazone bonds are cleaved so that the IONAs are quickly disassembled into a large number of hydrophilic extremely small-sized iron oxide nanoparticles (ESIONs). As a result, significantly enhanced T1MR contrast is achieved, as confirmed by the measurement of r1 values at different pH conditions. Such acidity-targeting MR signal amplification by the pH-sensitive IONAs was further validated in vivo, demonstrating a novel T1 magnetic resonance imaging (MRI) strategy for highly sensitive imaging of acidic tumors.
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ERICA 첨단융합대학 (ERICA 바이오나노공학전공)
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