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Titlebook: Cellular Drug Delivery; Principles and Pract D. Robert Lu,Svein Øie Book 2004 Springer Science+Business Media New York 2004 biology.cancer.

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Literaturwissenschaft / Kulturwissenschaftluenced in a manner depending on antigen-specific recognition. This finding, combined with advances in target discovery and validation catalyzed by the elucidation of the human genetic map, has resulted in an unprecedented world-wide effort in designing safer drugs or therapeutic strategies that give the concept of vaccination a new meaning.
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Human Intestinal Cellular Characteristics and Drug Permeabilitymphasis on the enterocyte and the in vitro Caco-2 cell model. Included is a discussion of the lipid plasma membrane, in vitro drug permeability and its relation to in vivo permeability, and a discussion of future research directions.
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https://doi.org/10.1007/978-3-322-97228-6t of drug-delivery systems because of their poly anionic nature and their lack of resistance to metabolic degradation. Historically, the major theme in the design of modern nucleic acid delivery systems is to mimic the viral method of nucleic acid transfer.
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https://doi.org/10.1007/978-3-322-97626-0mplexes to lead to the therapeutic effect. In the biological systems, these interactions generally occur on various types of biological nanostructures of protein origin. Understanding and utilization of these biological nanostructures could lead to significant improvement in drug targeting and drug carriers.
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Nucleic Acid Cellular Deliveryt of drug-delivery systems because of their poly anionic nature and their lack of resistance to metabolic degradation. Historically, the major theme in the design of modern nucleic acid delivery systems is to mimic the viral method of nucleic acid transfer.
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