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Ultrasmall superparamagnetic iron oxide: characterization of a new class of contrast agents for MR imaging.

作者信息

Weissleder R, Elizondo G, Wittenberg J, Rabito C A, Bengele H H, Josephson L

机构信息

Department of Radiology, Massachusetts General Hospital, Boston.

出版信息

Radiology. 1990 May;175(2):489-93. doi: 10.1148/radiology.175.2.2326474.

DOI:10.1148/radiology.175.2.2326474
PMID:2326474
Abstract

An ultrasmall superparamagnetic iron oxide (USPIO) preparation was developed that is small enough to migrate across the capillary wall, a prerequisite in the design of targetable particulate pharmaceuticals. Seventy percent of particles were smaller than 10 nm; 26%, smaller than 5 nm. The blood half-life of USPIO in rats was 81 minutes, considerably longer than that of larger superparamagnetic iron oxide preparations such as AMI-25 (6 minutes). Electron microscopy demonstrated that USPIO particles transmigrate the capillary wall by means of vesicular transport and through interendothelial junctions. Twenty-four hours after intravenous administration, 3.6% of the injected dose per gram of tissue was found in lymph nodes, 2.9% per gram in bone marrow, 6.3% per gram in liver, and 7.1% per gram in spleen. The major potential applications for USPIO are as (a) an intravenous contrast agent for the lymphatic system, (b) a bone marrow contrast agent, (c) a long-half-life perfusion agent for brain and heart, and (d) the magnetic moiety in organ-targeted superparamagnetic contrast agents for magnetic resonance imaging.

摘要

相似文献

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Ultrasmall superparamagnetic iron oxide: characterization of a new class of contrast agents for MR imaging.
Radiology. 1990 May;175(2):489-93. doi: 10.1148/radiology.175.2.2326474.
2
Ultrasmall superparamagnetic iron oxide: an intravenous contrast agent for assessing lymph nodes with MR imaging.超小型超顺磁性氧化铁:一种用于磁共振成像评估淋巴结的静脉造影剂。
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Lymph nodes: microstructural anatomy at MR imaging.
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Investigation of mechanisms influencing the accumulation of ultrasmall superparamagnetic iron oxide particles in lymph nodes.影响超小超顺磁性氧化铁颗粒在淋巴结中蓄积机制的研究。
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