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Enhancing Targeted Tumor Treatment by Near IR Light-Activatable Photodynamic–Photothermal Synergistic Therapy
Author(s) -
Zhen Fan,
Xuemei Dai,
Yuefeng Lu,
Eugene Yu,
Nupur Brahmbatt,
NaTasha Carter,
Christine Tchouwou,
Anant Kumar Singh,
Y. Jones,
Hongtao Yu,
Paresh Chandra Ray
Publication year - 2014
Publication title -
molecular pharmaceutics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.13
H-Index - 127
eISSN - 1543-8392
pISSN - 1543-8384
DOI - 10.1021/mp4002816
Subject(s) - photothermal therapy , photodynamic therapy , lncap , prostate cancer , cancer research , cancer , cancer cell , cytotoxicity , nanotechnology , chemistry , medicine , materials science , in vitro , biochemistry , organic chemistry
For several decades, cancer has been one of the most life-threatening diseases. For enhancing anticancer efficiency with minimum side effects, combination therapy is envisioned. The current manuscript reports for the first time the development of a methylene blue (MB) bound nanoplatform, which is capable of delivering targeted diagnostic and combined synergistic photothermal and photodynamic treatment of cancer. Experimental data found that, once the nanoparticle binds with the target cell surface, it can detect LNCaP human prostate cancer cell selectively using fluorescence imaging. Our result shows that the therapeutic actions can be controlled with external NIR light. No cytotoxicity was observed in the absence of NIR light. Targeted photodynamic and photothermal treatment using 785 nm NIR light indicates that the multimodal treatment enhances the possibility of destroying LNCaP prostate cancer cells in vitro dramatically. We discuss the operating principle for the targeted imaging and possible mechanisms for combined therapeutic actions. Our experimental data show that NIR light activated combined therapy for cancer may become a highly effective treatment procedure in clinical settings.

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