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Encapsulation of Active Molecules and Their Delivery System covers the key methods of preparation of encapsulation, as well as release;
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: Encapsulation, Protection and Release of Active Compounds explores various types of colloidal delivery systems available for encapsulating active;
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components are vital to the development of future foods. Encapsulation technologies and delivery systems for food ingredients and nutraceuticals;
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) Characterization of novel polymers and their use in encapsulation processes. 2) Stability of nutraceutical compounds encapsulated with novel polymers. 3;
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components, stabilize food ingredients, and increase their bioavailability. Encapsulation may also be used to immobilize cells or enzymes in the;
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components, stabilize food ingredients, and increase their bioavailability. Encapsulation may also be used to immobilize cells or enzymes in the;
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In Encapsulation and Controlled Release Technologies in Food Systems, editor Lakkis has gathered a highly respected collection of expert;
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concerns of different phytoconstituent in delivery systems. It focuses on the development of novel herbal formulations and summarizes their method;
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. These systems are currently of interest because of their considerable potential to act as drug delivery vehicles by incorporating a wide range;
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Molecular Cages and Capsules with Functionalized Inner Surfaces, by Stefan Kubik. Drug Delivery by Water-Soluble Organ metallic Cages;
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This book addresses the development of electronic devices using redox-active organic molecules and their porous coordination networks (PCNs;
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This book addresses the development of electronic devices using redox-active organic molecules and their porous coordination networks (PCNs;
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microparticulate systems-emphasizing protein stability during encapsulation and release.;
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antibody molecules in vitro even without immunization and to construct new variants of immunoglobulins and their fragments by fusing with various;
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readers on how to fabricate and apply nanostructures from different proteins, carbohydrates and chemical sources for food encapsulation purposes;
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more) and explains their application for delivery of food active compounds used in food systems. In addition, the authors - noted experts;
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materials are an emerging class of nanomaterials. The enclosed void space is expected to be useful for encapsulation and compartmentation of guest;
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delivery systems. It describes the formulation processes of capsules developed from redox-responsive polymers and polymer-functionalized carbon;
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properties are analyzed with respect to the design and development of drug delivery nanosystems for the encapsulation of an active pharmaceutical;
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drug administration and formulations for targeted delivery and release of active agents (drug molecules) to non-healthy tissues and cells. The;
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relevant, reproducible, and scalable processes that are critical to the development of delivery systems for bioactive incorporation into innovative;
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technology in the global drug delivery industry, lab-on-chip nano/micro fabrication and drug encapsulation, cell encapsulation and delivery, and cell;
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. Because encapsulation can isolate caged ions and molecules from external factors, the encapsulated species can exhibit unique physical and;
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. Because encapsulation can isolate caged ions and molecules from external factors, the encapsulated species can exhibit unique physical and;
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drug delivery systems. In addition, the book analyses the advantages of, and issues related to, using nanostructured materials in drug delivery;
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of nanotechnology for use in drug delivery, nanomedicine, and pharmaceutical developmentsExplores the potential for lipids to act as encapsulation;
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. Liposomes remain at the front of the drug delivery systems owing to its non-toxic, bio-degradable and non-immunogenic nature. It has been explored;
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