Magnetic nanobubbles with potential for targeted drug delivery and trimodal imaging in breast cancer: an in vitro study

The aim of this study was to improve tumor-targeted therapy for breast cancer by designing magnetic nanobubbles with the potential for targeted drug delivery and multimodal imaging. Herceptin-decorated and ultrasmall superparamagnetic iron oxide (USPIO)/paclitaxel (PTX)-embedded nanobubbles (PTX-USP...

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Veröffentlicht in:Nanomedicine (London, England) England), 2017-05, Vol.12 (9), p.991-1009
Hauptverfasser: Song, Weixiang, Luo, Yindeng, Zhao, Yajing, Liu, Xinjie, Zhao, Jiannong, Luo, Jie, Zhang, Qunxia, Ran, Haitao, Wang, Zhigang, Guo, Dajing
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Sprache:eng
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Zusammenfassung:The aim of this study was to improve tumor-targeted therapy for breast cancer by designing magnetic nanobubbles with the potential for targeted drug delivery and multimodal imaging. Herceptin-decorated and ultrasmall superparamagnetic iron oxide (USPIO)/paclitaxel (PTX)-embedded nanobubbles (PTX-USPIO-HER-NBs) were manufactured by combining a modified double-emulsion evaporation process with carbodiimide technique. PTX-USPIO-HER-NBs were examined for characterization, specific cell-targeting ability and multimodal imaging. PTX-USPIO-HER-NBs exhibited excellent entrapment efficiency of Herceptin/PTX/USPIO and showed greater cytotoxic effects than other delivery platforms. Low-frequency ultrasound triggered accelerated PTX release. Moreover, the magnetic nanobubbles were able to enhance ultrasound, magnetic resonance and photoacoustics trimodal imaging. These results suggest that PTX-USPIO-HER-NBs have potential as a multimodal contrast agent and as a system for ultrasound-triggered drug release in breast cancer.
ISSN:1743-5889
1748-6963
DOI:10.2217/nnm-2017-0027