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Titlebook: Nanomaterials in Pharmacology; Zheng-Rong Lu,Shinji Sakuma Book 2016 Springer Science+Business Media New York 2016 Inorganic nanomaterials

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Gold Nanoparticles for Biomedical Applications: Synthesis and In Vitro Evaluation,lubility and stability in biological fluids. Gold is inert and is generally regarded as biocompatible. Depending on their shape and structure, gold nanoparticles can have a number of remarkable properties, such as strong and tunable attenuation of light, fluorescence, conversion of light to heat, an
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Paramagnetic Nanoparticles,ormance enhancements over molecular paramagnetic agents. A variety of paramagnetic materials and production methods enable the selection of nanoparticle size, shape, and surface chemistry, which are all important design parameters that determine a nanoparticle’s in vivo behavior, diagnostic accuracy
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Silica Nanomaterials,ology, biochemistry, and pharmaceutical sciences. For these demands, nanostructured inorganic materials have to be more utilized in biological pharmaceutical fields. Among numerous candidates of inorganic materials, silica is the strongest candidate for use because silica is very abundant in nature
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Pharmacokinetic Properties of Nanomaterials,ive compounds has been extensively studied for decades. Successful use depends on how well their pharmacokinetics can be controlled after administration into the body. There is plenty of experimental data on the tissue distribution of nanomaterials, but it is still premature to design nanomaterials
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Gastrointestinal System,ials has largely contributed to medical innovation. Here, the potential of nano-/micromaterials used for the treatment and diagnosis of gastrointestinal diseases is described. Furthermore, the gastrointestinal system is most commonly utilized as the route of drug administration. We also discuss the
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