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Top-down approaches are currently the main contributor of fabricating microelectronic devices. However, the prohibitive cost of numerous technological steps in these approaches is the main obstacle to further progress. Furthermore, a large number of applications necessitate fabrication of complex and ultra-small devices that cannot be made using these approaches. New approaches based on natural self-assembly of matter need to be developed to allow for fabrication of micro and nanoelectronic devices. Self-assembly of nanostructures is a dynamic field, which explores physics of these structures and new ways to fabricate them. However, the major problem is how to control the properties of the nanostructures resulting from low dimensionality. This book presents recent advances made to address this problem, and fabricate nanostructures using self-assembly.
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Top-down approaches are currently the main contributor of fabricating microelectronic devices. However, the prohibitive cost of numerous technological steps in these approaches is the main obstacle to further progress. Furthermore, a large number of applications necessitate fabrication of complex and ultra-small devices that cannot be made using these approaches. New approaches based on natural self-assembly of matter need to be developed to allow for fabrication of micro and nanoelectronic devices. Self-assembly of nanostructures is a dynamic field, which explores physics of these structures and new ways to fabricate them. However, the major problem is how to control the properties of the nanostructures resulting from low dimensionality. This book presents recent advances made to address this problem, and fabricate nanostructures using self-assembly.
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Top-down approaches are currently the main contributor of fabricating microelectronic devices. However, the prohibitive cost of numerous technological steps in these approaches is the main obstacle to further progress. Furthermore, a large number of applications necessitate fabrication of complex and ultra-small devices that cannot be made using these approaches. New approaches based on natural self-assembly of matter need to be developed to allow for fabrication of micro and nanoelectronic devices. Self-assembly of nanostructures is a dynamic field, which explores physics of these structures and new ways to fabricate them. However, the major problem is how to control the properties of the nanostructures resulting from low dimensionality. This book presents recent advances made to address this problem, and fabricate nanostructures using self-assembly.
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Peritoneum. --- Peritoneal Cavity. --- Drug Delivery Systems --- Nanoparticle Drug Delivery System.
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Drug stability --- Microfluidics. --- Biosensing Techniques. --- Nanoparticle Drug Delivery System.
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Drug targeting. --- Drug Delivery Systems. --- Nanoparticle Drug Delivery System. --- Nanotechnology --- Nanoparticles. --- Neoplasms --- therapy. --- Drug Delivery Systems --- Nanoparticle Drug Delivery System --- Nanoparticles --- Therapeutic use. --- therapy --- diagnosis
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Aptamers Engineered Nanocarriers for Cancer Therapy details the selection technologies, biological characteristics, and clinical uses of aptamer-based nano agents for cancer therapeutics. The book helps facilitate speedy solutions for some of the problems pertaining to the manufacture of nano-aptamers – such as toxicity, thermal stability, cost efficiency, tumor penetration and blood stability. Key chapters cover cell-SELEX technology for aptamer selection, mechanisms of multi-drug resistance of cancer, the relevance of aptamers as anticancer therapies, as well as the broad range of aptamer-functionalized nanostructures available. This book provides exciting insights into this relatively new approach to cancer therapeutics, and will be of interest to materials scientists, biomedical engineers, molecular biologists, biochemists and clinical scientists, with a focus on cancer therapy.
Cancer --- Chemotherapy. --- Antineoplastic agents --- Treatment --- Drug delivery systems. --- Nanomedicine. --- Oligonucleotides. --- Nanoparticle Drug Delivery System --- Nanomedicine --- Oligonucleotides
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Drug delivery systems. --- Nanomedicine. --- Pancreas --- Cancer --- Chemotherapy. --- Pancreatic Neoplasms --- Nanoparticle Drug Delivery System. --- Nanoparticles. --- drug therapy.
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Micelles. --- Nanoparticle Drug Delivery System. --- NDDSs --- Nano Delivery System --- Nano Drug Delivery Systems --- Nano-Drug Delivery System --- Nanoparticle Based Drug Delivery System --- Delivery System, Nano --- Delivery System, Nano-Drug --- Delivery Systems, Nano --- Delivery Systems, Nano-Drug --- Nano Delivery Systems --- Nano Drug Delivery System --- System, Nano Delivery --- System, Nano-Drug Delivery --- Systems, Nano Delivery --- Systems, Nano-Drug Delivery --- Micelle --- Emulsions --- Drug delivery systems. --- Delivery systems, Drug --- Drug administration technology --- Drug delivery technology --- Drugs --- Pharmaceutical technology --- Delivery systems
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"Advanced and Modern Approaches for Drug Delivery explores novel approaches currently used for drug delivery, including the must up-to-date techniques and technology. The approaches discussed allow pharmaceutical scientists to design effective drug delivery systems or devices for the management and treatment of numerous diseases and conditions. Detailed information on a wide variety of subjects, including dendrimers, lipid nanostructures, solid lipid nanoparticles, stimuli-responsive smart systems, self-assembled protein-drug nanoparticles, nanoconjugate formulations, nanofibers, iontophoretic systems, microneedle systems, ultra-sound triggered systems, targeted carrier-based intracellular delivery systems, resealed erythrocyte-based systems, 3 D-printing tool, site-specific monoclonal antibodies, and bio-inspired systems are all comprehensively discussed." --Provided by publisher
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