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Titlebook: Emulsion‐based Encapsulation of Antioxidants; Design and Performan M. Ali Aboudzadeh Book 2020 The Editor(s) (if applicable) and The Author

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Encapsulation of Pigmented Lipophilic Antioxidants Through Micro and Nano-emulsions,occurring in food systems. Moreover, comprehensive information on the beneficial impact of these antioxidants on human health is described. Degradation vulnerability and low bioavailability of pigmented antioxidant compounds restrict their application in food systems. A wide range of technologies ha
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Book 2020rs, methods have been developed to protect these sensitive bioactive compounds, namely antioxidants, with the aim of increasing the public sanitation grades. Emulsion-based systems are particularly interesting as colloidal delivery encapsulation systems, because they can easily be created from food-
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Stability and Release Behavior of Bioactive Compounds (with Antioxidant Activity) Encapsulated by Pthe stability and hence the quality of the PEs were discussed. Finally, the vital roles of PEs as a delivery vehicle for various bioactive compounds with potential antioxidant activity have been highlighted in details.
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Characterization Techniques for Emulsion-Based Antioxidant Carriers with Biomedical Applications,rom stability, rheology, cytotoxicity or sterilization of the whole emulsion; to the specific study of properties such as morphology, structure or size of the dispersed phase. Special emphasis has been placed on the antioxidant activity of the carriers being the key advantage of these emulsion-based systems.
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2661-8958 ological fate with emphasis on systems suitable for utilizat.The limited aqueous solubility of bioactive pharmaceutical ingredients presents a tremendous challenge in the development of new drugs. In recent years, methods have been developed to protect these sensitive bioactive compounds, namely ant
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Book 2020hension of the technological and biological aspects of the incorporation of encapsulated compounds in food matrices and explication of their activity. Chapters provide an overview of the status of emulsion-based formulations to encapsulate antioxidants, fabrication, properties, applications, and bio
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Why Encapsulate Antioxidants in Emulsion-Based Systems, Where They Are Located, and How Location Afhe diffusion control, and lipid radicals are polar and diffuse towards the interfacial region of the emulsion, which has been proved to be the main reaction site with added antioxidants. The oxidative stability of the emulsion can, therefore, be controlled by modulating the interfacial concentration
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