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Titlebook: Nanomaterials for Application in Medicine and Biology; Michael Giersig,Gennady B. Khomutov Conference proceedings 2008 Springer Science+Bu

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Long-Term Retention of Fluorescent Quantum Dots In Vivo,eserve quantum dot function. We also explored migration from tumors to sentinel lymph nodes using tumor models in mice; surface charge and size make little difference to transport from tumors. Antibody and Fab-conjugates of polymer-coated quantum dots failed to target tumors in vivo, probably because of size.
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Network Model of , Cellulose Intercalated by Drug Nanoparticles,t textured cellulose films were formed. The sorption conditions of poly(vinylpyrrolidone)-Se. and poly(vinylpyrrolidone)-Ag. nanoparticles were optimized to obtain a cellulose template that can be used in medical practice.
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Towards Polymer-Based Capsules with Drastically Reduced Controlled Permeability,bility to entrap water-soluble molecular species into polyelectrolyte capsules modified by a low permeable dense polymer (polypyrrole). Possible future areas in PE capsule application as carriers for gases and volatiles in the pharmaceutical, food, and gases industry, agriculture and cosmetology are discussed.
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Biocompatible Nanomaterials and Nanodevices Promising for Biomedical Applications,ow they are structured. The merging of nanomaterials and life science into hybrids of controlled organization and function is possible, assuming that biology is nanostructured, and therefore man-made nano-materials can structurally mimic nature and complement each other. By taking advantage of their
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Isohelical DNA-Binding Oligomers: Antiviral Activity and Application for the Design of Nanostructur synthesis of new DNA-binding oligomers. Some of the DNA-binding oligomers can be equipped with fluorescence chromophores and metal-chelating groups and may serve as conductive wires in nano-scaled electric circuits. A series of new DNA-binding ligands were synthesized by a modular assembly of pyrro
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DNA Self-Assembling Nanostructures Induced by Trivalent Ions and Polycations, [Co(NH.).]., spermidine and cationic polymers in a solution were investigated. The influence of cations on the volume, persistent length, and secondary structure of DNA was studied. A comparison of DNA packaging induced by trivalent ions and polycations was made. DNA complexes with trivalent metal
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