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Titlebook: Drug Delivery Applications of Starch Biopolymer Derivatives; Jin Chen,Ling Chen,Xiaoxi Li Book 2019 Springer Nature Singapore Pte Ltd. 201

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Starch-Based DDSs with Physiological Interactions,e strategy is the physical targeting of drugs by external stimuli, such as magnetic field. Also, the role of starch and its derivatives in transmucosal DDSs to improve the bioavailability of drugs by interacting with the absorbing mucosa or prolonging the residence time of drugs in the absorbing tissues are highlighted.
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Physiological and Pathological Bases for Designing High Performance Drug Delivery Carriers, and molecular levels. With a deeper understanding of these physiological bases, further advances have been introduced by DDSs endowed with target-specific and bioadhesive properties to various sites in the body to reduce the side effects and enhance the bioavailability of drugs at the diseased site
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Material Nature and Physicochemical Properties for High Performance of Carriers,ns are broken or weakened, the drug will be released with responsiveness. On the other hand, the drug delivery efficiency of DDSs, especially target specificity, can be modulated by the physicochemical properties of carriers (e.g., hydrophobicity/hydrophilicity, size, shape, and surface charge) dire
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Starch-Based DDSs with Stimulus Responsiveness, particles with starch film coatings or in starch matrix. The individual starch-based, stimulus-responsive DDSs have to some extent been reasonably well validated. Furthermore, two or more response elements have been combined to functionalize starch-based DDSs for smart drug release behavior. In thi
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