期刊
ACS APPLIED MATERIALS & INTERFACES
卷 8, 期 37, 页码 24433-24444出版社
AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b07494
关键词
bioactive organosilica; carbon dot; biocompatible nanoparticle; multicolor luminescent; optical imaging; photothermal therapy; drug delivery
资金
- Global Research Laboratory Program through National Research Foundation (NRF), Republic of Korea [2015032163]
- Priority Research Centers Program through National Research Foundation (NRF), Republic of Korea [2009-0093829]
Biocompatible nanomaterials that allow for labeling cells and tissues with the capacity to load and deliver drug molecules hold great promise for the therapeutic-diagnostic purposes in tissue repair and disease cure. Here,a novel nanoplatform, called C-dot Bioactive organosilica nanosphere (C-BON), is introduced to have excellent theranostic potential, such as controlled 'drug delivery., visible-light imaging, and NIR photothermal activity. C-dots with a few nanometers were in situ generated in the Ca-containing organosilica mesoporous nanospheres through the sol-gel and thermal-treatment processes. The C-BON exhibited multicolor luminescence over a wide visible-light range with Strong emissions and high photostability over time and against acidity and the possible in vivo optical imaging capacity when injected in rat subcutaneous tissues. Moreover, the C-BON showed a photothermal heating effect upon the irradiation of near-infrared. The C-BON) thanks to the high mesoporoSity and existence of Ca2+ ions,demonstrated excellent loading capacity of anticancer drug doxorubicin (as high as 90% of carrier weight), and long-term (over a couple of weeks) and pH/NIR-dependent release ability. The C-BON preserved the compositional merit of Ca-Si glass, having excellent bioactivity and tell compatibility in vitro. Taken all, the multifunctional properties of C-BON-multicolor luminescence, photothermal activity, and high drug loading and controlled release together with its excellent bioactivity and cell compatibility potentiate the future applications in theranostics (chemotherapy and photothermal therapy with optical imaging).
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