ACS Nano · 2012 · 226 citations · 52 references
Cancer is the greatest challenge in human healthcare today. Cancer causes 7.6 million deaths and economic losses of around 1 trillion dollars every year. Early diagnosis and effective treatment of cancer are crucial for saving lives. Driven by these needs, we report the development of a multifunctional plasmonic shell-magnetic core nanotechnology-driven approach for the targeted diagnosis, isolation, and photothermal destruction of cancer cells. Experimental data show that aptamer-conjugated plasmonic/magnetic nanoparticles can be used for targeted imaging and magnetic separation of a particular kind of cell from a mixture of different cancer cells. A targeted photothermal experiment using 670 nm light at 2.5 W/cm(2) for 10 min resulted selective irreparable cellular damage to most of the cancer cells. We also showed that the aptamer-conjugated magnetic/plasmonic nanoparticle-based photothermal destruction of cancer cells is highly selective. We discuss the possible mechanism and operating principle for the targeted imaging, separation, and photothermal destruction using magnetic/plasmonic nanotechnology.
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Plasmonics for extreme light concentration and manipulation
Jon A. Schuller, Edward S. Barnard, Wenshan Cai et al. · Nature Materials · 2010 · 4.3K citations
Plasmonics, Engineering, Physics +5
Prashant K. Jain, Xiaohua Huang, Ivan H. El‐Sayed et al. · Accounts of Chemical Research · 2008 · 4.1K citations
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Jae‐Hyun Lee, Yong‐Min Huh, Young‐wook Jun et al. · Nature Medicine · 2006 · 1.9K citations · Full text