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Titlebook: Nanooncology; Engineering nanomate Gil Gonçalves,Gerard Tobias Book 2018 Springer International Publishing AG, part of Springer Nature 2018

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Quantum Dots for Cancer Therapy and Bioimaging,those of larger particles. QDs will emit light of specific frequencies if electricity or light is applied to them, and these frequencies can be precisely tuned by changing the dots’ size, shape, and material, giving rise to many applications. In this chapter, apart from the most common QDs, e.g., th
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Micellar-Based Nanoparticles for Cancer Therapy and Bioimaging,bic compounds, as well as their easier functionalization, are some of the characteristics responsible for their multifunctionality, and their potential use in different clinical settings. In fact, micelles have important applications in cancer therapy because of their capacity to deliver hydrophobic
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Magnetic Nanoparticles for Cancer Therapy and Bioimaging,cer. An ancient Egyptian textbook on trauma surgery is the oldest (3000 BC) description of cancer treatment, which mentioned a tool called the fire drill to remove tumors. Hand in hand with the development of modern medicine and physiology, other approaches have appeared although surgery remains the
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Dendrimers-Based Nanoparticles for Cancer Therapy and Bioimaging,w matured to a state, where real applications are getting close. This chapter reviews the progress in the use of dendrimer-based nanoparticles for cancer therapy and for bioimaging, and presents selected results published during the last 10 years. Topics include the EPR-effect, RNA/DNA-therapy, dend
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Porous Silicon Particles for Cancer Therapy and Bioimaging,tations of traditional therapies and medical treatments. pSi is biodegradable, non-cytotoxic and has optoelectronic properties that make this platform material a unique candidate for developing biomaterials for drug delivery and theranostics therapies. pSi provides new opportunities to improve exist
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Metal/Metal Oxide Nanoparticles for Cancer Therapy,nt sites. The uncontrolled cellular growth in cancer cells is attributed to a failure in programmed cell death or apoptosis in which a possible role of oxidative stress has been described.Moreover, oxidative stress is involved in carcinogenesis by influencing intracellular signal transduction andtra
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