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A Pilot Study of AuroLase™ Therapy (gold nano shells) in refractory and/or recurrent tumors of the head and neck was completed in 2009 [a] and two trials are currently using AuroLase™ therapy for the treatment of primary/metastatic lung cancer [b] and for prostate cancer.
The main obstacle in using RNAi technology for the treatment of cancer is protecting the RNAi. It is very fragile, quickly metabolized, and it has to efficiently be delivered to the target cells in vivo. This is why nanoparticles are being used.
Halas told CNN. After many suggestions, cancer therapy came out of ongoing collaborations with bioengineers looking for different types of biomedical applications. [3] "One of our visions", Halas stated, "no less than single visit diagnosis and treatment of cancer". [4] In 2003 Halas was awarded for Best Discovery of 2003 by Nanotechnology Now. [4]
Medical research for cancer begins much like research for any disease. In organized studies of new treatments for cancer, the pre-clinical development of drugs, devices, and techniques begins in laboratories, either with isolated cells or in small animals, most commonly rats or mice. In other cases, the proposed treatment for cancer is already ...
Nanotechnology has also helped to personalize oncology for the detection, diagnosis, and treatment of cancer. It is now able to be tailored to each individual's tumor for better performance. They have found ways that they will be able to target a specific part of the body that is being affected by cancer.
Electrophoretic deposition (EPD), is a term for a broad range of industrial processes which includes electrocoating, cathodic electrodeposition, anodic electrodeposition, and electrophoretic coating, or electrophoretic painting.
Nanotubes can help with cancer treatment. They have been shown to be effective tumor killers in those with kidney or breast cancer. [4] [5] Multi-walled nanotubes are injected into a tumor and treated with a special type of laser that generates near-infrared radiation for around half a minute. These nanotubes vibrate in response to the laser ...
All living cells contain polar molecules and will respond to changes in electric fields. [7] Alternating electric field therapy, or Tumor Treating Fields (TTFields) use insulated electrodes to apply very-low-intensity, intermediate-frequency alternating electrical fields to a target area containing cancerous cells. [7]