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Titlebook: Drug Delivery; Monika Schäfer-Korting Book 2010 Springer-Verlag Berlin Heidelberg 2010 Biosensing.Drug Delivery.Drug-eluting implants.Nano

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https://doi.org/10.1007/978-3-662-30424-2including therapeutic requirements and patient compliance. In this regard, several achievements have been reported with colloidal carriers, in particular with lipid nanoparticles, due to their unique physicochemical properties. For several years these carriers have been showing potential success for
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https://doi.org/10.1007/978-3-662-30424-2 drug delivery abilities. Pharmaceutical polymers, chemical structure, and properties are discussed for their applications in controlled drug release systems. An additional focus is on new polymers (dendrimers, hyperbranched polymers), considering their chemical versatility, uniqueness, and future i
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https://doi.org/10.1007/978-3-662-30424-2nd treatment of gynaecological conditions, improvements to birth control methods, and higher levels of safety, user acceptability, compliance, and quality of life for women. The development of frameless intrauterine systems is such an attempt to improve on the performance and acceptability of establ
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https://doi.org/10.1007/978-3-662-30424-2chieved by controlled release of active pharmaceutical ingredients (API) into the surrounding tissue. In this chapter we focus on three types of drug-eluting devices: drug-eluting vascular stents, drug-eluting wound dressings and protein-eluting scaffolds for tissue regeneration, thus describing bot
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https://doi.org/10.1007/978-3-662-30424-2he pharmaceutical industry and healthcare systems. Considering biopharmaceutical issues such as physicochemical requirements of the drug and physiological conditions, however, oral delivery is one of the most challenging routes. Recognising solubility, permeability and residence time in the gastroin
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