4.7 Article

NIR responsive liposomal system for rapid release of drugs in cancer therapy

期刊

INTERNATIONAL JOURNAL OF NANOMEDICINE
卷 12, 期 -, 页码 4225-4239

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S130861

关键词

NIR responsive; thermoresponsive liposome; triggered drug release; bubble-generating; thermochemotherapy

资金

  1. National Natural Science Foundation of China [81501576, 51402294]
  2. Natural Science Foundation of Fujian Province [2015J01341]
  3. Science and Technology Development Foundation of Fuzhou University [2014-XY-14]
  4. Opening Project of Fujian Provincial Engineering Technology Research Center of Marine Functional Food [C11178]

向作者/读者索取更多资源

To design a rapid release liposomal system for cancer therapy, a NIR responsive bubble-generating thermosensitive liposome (BTSL) system combined with photothermal agent (Cypate), doxorubicin (DOX), and NH4HCO3 was developed. Cypate/DOX-BTSL exhibited a good aqueous stability, photostability, and photothermal effect. In vitro release suggested that the amounts of DOX released from BTSL were obviously higher than that of (NH4)(2)SO4 liposomes at 42 degrees C. After NIR irradiation, the hyperthermic temperature induced by Cypate led to the decomposition of NH(4)HCO3 and the generation of a large number of CO2 bubbles, triggering a rapid release of drugs. Confocal laser scanning microscope and acridine orange staining indicated that Cypate/DOX-BTSL upon irradiation could facilitate to disrupt the lysosomal membranes and realize endolysosomal escape into cytosol, improving the intracellular uptake of DOX clearly. MTT and trypan blue staining implied that the cell damage of Cypate/DOX-BTSL with NIR irradiation was more severe than that in the groups without irradiation. In vivo results indicated that Cypate/DOX-BTSL with irradiation could dramatically increase the accumulation of DOX in tumor, inhibit tumor growth, and reduce systemic side effects of DOX. These data demonstrated that Cypate/DOX-BTSL has the potential to be used as a NIR responsive liposomal system for a rapid release of drugs in thermochemotherapy.

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