Comparison of cell uptake, biodistribution and tumor retention of folate-coated and PEG-coated gadolinium nanoparticles in tumor-bearing mice

被引:238
作者
Oyewumi, MO
Yokel, RA
Jay, M
Coakley, T
Mumper, RJ
机构
[1] Univ Kentucky, Coll Pharm, Div Pharmaceut Sci, Ctr Pharmaceut Sci & Technol, Lexington, KY 40536 USA
[2] Univ Kentucky, Coll Engn, Environm Res & Training Labs, Lexington, KY 40536 USA
关键词
microemulsion; drug delivery; KB cells; endocytosis; neutron capture therapy;
D O I
10.1016/j.jconrel.2004.01.002
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The purpose of these studies was to compare the cell uptake, biodistribution and tumor retention of folate-coated and PEG-coated gadolinium (Gd) nanoparticles. Gd is a potential agent for neutron capture therapy (NCT) of tumors. Gd nanoparticles were engineered from oil-in-water microemulsion templates. To obtain folate-coated nanoparticles, a folate ligand [folic acid chemically linked to distearoylphosphatidylethanolamine (DSPE) via a PEG spacer MW 3350] was included in nanoparticle preparations. Similarly, control nanoparticles were coated with DSPE-PEG-MW 3350 (PEG-coated). Nanoparticles were characterized based on size, size distribution, morphology, biocompatibility and tumor cell uptake. In vivo studies were carried out in KB (human nasopharyngeal carcinoma) tumor-bearing athymic mice. Biodistribution and tumor retention studies were carried out at pre-determined time intervals after injection of nanoparticles (10 mg/kg). Gd nanoparticles did not aggregate platelets or activate neutrophils. The retention of nanoparticles in the blood 8, 16 and 24 h post-injection was 60%, 13% and 11% of the injected dose (ID), respectively. A maximum Gd tumor localization of 33 +/- 7 mug Gd/g was achieved. Both folate-coated and PEG-coated nanoparticles had comparable tumor accumulation. However, the cell uptake and tumor retention of folate-coated nanoparticles was significantly enhanced over PEG-coated nanoparticles. Thus, the benefits of folate ligand coating were to facilitate tumor cell internalization and retention of Gd-nanoparticles in the tumor tissue. The engineered nanoparticles may have potential in tumor-targeted delivery of Gd thereby enhancing the therapeutic success of NCT. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:613 / 626
页数:14
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