Ionizing radiation increases systemic nanoparticle tumor accumulation.

Ionizing radiation increases systemic nanoparticle tumor accumulation.
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DOI:
10.1016/j.nano.2012.05.001
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发表时间:
2012-08
影响因子:
5.4
通讯作者:
Hoopes, P. Jack
Hoopes, P. Jack
中科院分区:
医学2区
文献类型:
--
作者:
Giustini, Andrew J.;Petryk, Alicia A.;Hoopes, P. Jack

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Nanoparticle-based therapies are currently being explored for both the imaging and treatment of primary and metastatic cancers. Effective nanoparticle cancer therapy requires significant accumulations of nanoparticles within the tumor environment. Various techniques have been used to improve tumor nanoparticle uptake and biodistribution. Most notable of these techniques are the use of tumor-specific-peptide-conjugated nanoparticles and chemical modification of the nanoparticles with immune-evading polymers. Another strategy for improving the tumor uptake of the nanoparticles is modification of the tumor microenvironment with a goal of enhancing the enhanced permeability and retention effect inherent to solid tumors. We demonstrate a two-fold increase in the tumor accumulation of systemically delivered iron oxide nanoparticles following a single, 15 Gy radiation dose in a syngeneic mouse breast tumor model. This increase in nanoparticle tumor accumulation correlates with a radiation-induced decrease in tumor interstitial pressure and a subsequent increase in vascular permeability.
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