2018
DOI: 10.1038/s41598-018-31940-2
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Small, Long Blood Half-Life Iodine Nanoparticle for Vascular and Tumor Imaging

Abstract: Standard clinical X-ray contrast agents are small iodine-containing molecules that are rapidly cleared by the kidneys and provide robust imaging for only a few seconds, thereby limiting more extensive vascular and tissue biodistribution imaging as well as optimal tumor uptake. They are also not generally useful for preclinical microCT imaging where longer scan times are required for high resolution image acquisition. We here describe a new iodine nanoparticle contrast agent that has a unique combination of pro… Show more

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Cited by 44 publications
(53 citation statements)
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References 61 publications
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“…Although approximate, values hitting as high as 4.5% iodine in the peripheral rim of the tumor indicate that the radiation dose delivered there may be multiplied by a factor of 8. These levels are higher than we previously reported for the U87 human glioma model 25 . An expectation is that this high DEF may then produce significant benefit in a radiotherapy treatment.…”
Section: Resultscontrasting
confidence: 76%
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“…Although approximate, values hitting as high as 4.5% iodine in the peripheral rim of the tumor indicate that the radiation dose delivered there may be multiplied by a factor of 8. These levels are higher than we previously reported for the U87 human glioma model 25 . An expectation is that this high DEF may then produce significant benefit in a radiotherapy treatment.…”
Section: Resultscontrasting
confidence: 76%
“…iodine nanoparticles. The synthesis and properties of the iodine nanoparticles were previously described 25 .…”
Section: H Avg Inside H Avg Avg Rim H Peak Rim 72 H Avg Inside 72 H Amentioning
confidence: 99%
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“…Wallyn and co-workers applied iodinated polymeric nanoparticles with strong X-ray attenuation capacity in the liver and spleen [24]. Similarly, a new polymer (triiodobenzene) iodine nanoparticle (INP) with a PEG coating was designed as a contrast agent for tumor loading by Hainfeld et al [25]. The iodine-based CT contrasts are either monomeric or dimeric forms of 1,3,5-triiodobenzene derivatives [26].…”
Section: Computed Tomography Scanning (Ct-scan)mentioning
confidence: 99%