4.7 Article

NIR-driven Smart Theranostic Nanomedicine for On-demand Drug Release and Synergistic Antitumour Therapy

Journal

SCIENTIFIC REPORTS
Volume 5, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/srep14258

Keywords

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Funding

  1. National Natural Science Foundation of China [81401520, 81171446, 81301272, 21375141, 81371679]
  2. Key International S&T Cooperation Project [2015DFH50230]
  3. Instrument Developing Project of CAS [YZ201439]
  4. China Postdoctoral Science Foundation Funded Project [2015M572387]
  5. Guangdong Science and Technology Key Project [2012A061400013, 2012B090400043, 2012B090600036]
  6. Guangdong Innovation Research Team of Low-Cost Healthcare, Shenzhen Science and Technology Program [KQCX20140521115045447, JCYJ20130402103240486, CXZZ20130506140505859, KC2013JSJS0012A, GJHS20140610152828690]
  7. Shenzhen Bioactive Materials Engineering Lab for Medicine [[2013]154]

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Smart nanoparticles (NPs) that respond to external and internal stimulations have been developing to achieve optimal drug release in tumour. However, applying these smart NPs to attain high antitumour performance is hampered by limited drug carriers and inefficient spatiotemporal control. Here we report a noninvasive NIR-driven, temperature-sensitive DI-TSL (DOX/ICG-loaded temperature sensitive liposomes) co-encapsulating doxorubicin (DOX) and indocyanine green (ICG). This theranostic system applies thermo-responsive lipid to controllably release drug, utilizes the fluorescence (FL) of DOX/ICG to real-time trace the distribution of NPs, and employs DOX/ICG to treat cancer by chemo/photothermal therapy. DI-TSL exhibits uniform size distribution, excellent FL/size stability, enhanced response to NIR-laser, and 3 times increased drug release through laser irradiation. After endocytosis by MCF-7 breast adenocarcinoma cells, DI-TSL in cellular endosomes can cause hyperthermia through laser irradiation, then endosomes are disrupted and DI-TSL 'opens' to release DOX simultaneously for increased cytotoxicity. Furthermore, DI-TSL shows laser-controlled release of DOX in tumour, enhanced ICG and DOX retention by 7 times and 4 times compared with free drugs. Thermo-sensitive DI-TSL manifests high efficiency to promote cell apoptosis, and completely eradicate tumour without side-effect. DI-TSL may provide a smart strategy to release drugs on demand for combinatorial cancer therapy.

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