Uptake of CDDP-containing Polymeric Micelles by Cells Using Particle Induced X-Ray Emission
Author(s) -
Kazue Mizuno,
Teruaki Konishi,
Masakazu Oikawa,
Hiroyuki Iso,
Takahiro Ishikawa,
Hitoshi Imaseki,
Mitsuru Uesaka
Publication year - 2010
Publication title -
journal of radiation research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.643
H-Index - 60
eISSN - 1349-9157
pISSN - 0449-3060
DOI - 10.1269/jrr.10074
Subject(s) - micelle , cisplatin , chinese hamster ovary cell , platinum , chemistry , kinetics , biophysics , platinum nanoparticles , nuclear chemistry , materials science , radiochemistry , aqueous solution , biochemistry , organic chemistry , medicine , chemotherapy , biology , catalysis , physics , receptor , quantum mechanics
Polymeric micelles loaded with cis-diamminedichloroplatinum(II), CDDP, (cisplatin micelles) enable higher accumulation in solid tumors and lower toxicities compared with CDDP alone. The combined use of cisplatin micelles with radiation is expected to enhance therapeutic effects and reduce side effects. The kinetics of cisplatin micelle uptake, however, have not been fully understood. Particle Induced X-Ray Emission has been employed in this study to measure the time transients of platinum in Chinese Hamster ovary cells. The results show that the platinum content of cells treated with cisplatin micelles increased more slowly than with CDDP alone, suggesting that cellular uptake could be controlled using micelles. The CDDP released from micelles was predominantly incorporated into the cells by diffusion. The uptake characteristics were further analyzed using micelles with different collapse rates. The results and techniques used in this study will be useful for designing an optimum treatment plan combining platinum-containing polymeric micelles and radiation in clinical applications.
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