4.8 Article

Formulation and optimization of idarubicin thermosensitive liposomes provides ultrafast triggered release at mild hyperthermia and improves tumor response

期刊

JOURNAL OF CONTROLLED RELEASE
卷 220, 期 -, 页码 425-437

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.jconrel.2015.10.056

关键词

Thermosensitive liposome; Idarubicin; Triggered drug release; Mild hyperthermia

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Drug delivery through thermosensitive liposomes (TSL) in combination with hyperthermia (HT) has shown great potential. HT can be applied locally forcing TSL to release their content in the heated tumor resulting in high peak concentrations. To perform optimally the drug is ideally released fast (seconds) and taken up rapidly by tumor cells. The aim of this study was to develop a novel thermosensitive liposome formulation of the anthracycline idarubicin (IDA-TSL). The hydrophobicity of idarubicin may improve its release from liposomes and subsequently rapid cellular uptake when combined mild hyperthermia. Here, we investigated a series of parameters to optimize IDA-TSL formulation. The results show that the optimal formulation for IDA-TSL is DPPC/DSPC/DSPE-PEG (6/3.5/0.5 mol%), with ammonium EDTA of 6.5 pH as loading buffer and a size of similar to 85 nm. In vitro studies demonstrated minimal leakage of similar to 20% in FCS at 37 degrees C for 1 h, while an ultrafast and complete triggered release of IDA was observed at 42 degrees C. On tumor cells IDA-TSL showed comparable cytotoxicity to free IDA at 42 degrees C, but low cytotoxicity at 37 degrees C. Intravital microscopy imaging demonstrated an efficient in vivo intravascular triggered drug release of IDA-TSL under mild hyperthermia, and a subsequent massive IDA uptake by tumor cells. In animal efficacy studies, IDA-TSL plus mild HT demonstrated prominent tumor growth inhibition and superior survival rate over free IDA with HT or a clinically used Doxil treatment. These results suggest beneficial potential of IDA-TSL combined with local mild HT. (C) 2015 Elsevier B.V. All rights reserved.

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