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  • 1
    Keywords: Food Microbiology. ; Food science. ; Chemistry, Organic. ; Food Microbiology. ; Food Science. ; Organic Chemistry.
    Description / Table of Contents: Chapter 1: Properties of cyclodextrins and their applications in food processing -- Chapter 2: Solid encapsulation method: ethylene gas encapsulation into amorphous alpha-cyclodextrin powder -- Chapter 3: Encapsulation of gases -- Chapter 4: Encapsulation of flavours -- Chapter 5: Encapsulation of colour and pigments -- Chapter 6: Encapsulation of polyphenols (plant bioactive compounds) -- Chapter 7: Encapsulation of essential oils -- Chapter 8: Encapsulation of lipids -- Chapter 9: Encapsulation of nutraceuticals, vitamins -- Chapter 10: Encapsulation of antimicrobial compounds -- Chapter 11: Encapsulation for packaging -- Chapter 12: Encapsulation for masking off-flavour and off-tasting in food production -- Chapter 13: Alpha-cyclodextrin functions as a dietary fiber -- Chapter 14: Complexation of ingredients in foods by alpha-cyclodextrin to improve their functions -- Chapter 15: Fruits package with 1-methylcylopropene included alpha-cyclodextrin -- Chapter 16: Encapsulation of fruit ripening controlling compounds. .
    Abstract: Cyclodextrins (CD) are cyclic oligosaccharides containing 6, 7 or 8 glucose units (α, β or γ-CD, respectively) in a truncated molecular shape. Their cyclic molecular structure contains a hydrophilic surface and a hydrophobic cavity at the center that can interact (host) with external hydrophobic compounds (guest molecules). Cyclodextrins have been categorized as Generally Recognized As Safe (GRAS) in the USA, “natural products” in Japan, and as “novel food” in Australia, New Zealand and EU countries. They are therefore widely used in food production to encapsulate hydrophobic compounds, including solid, liquid and gas molecules, in order to solubilize, stabilize or control the release rate of these components. To date, there has been no comprehensive review of the very large number of studies performed on encapsulation using cyclodextrin powders for food applications in recent years. This text fills that gap for academics in the encapsulation field and for industry professionals who want to gain a solid understanding of encapsulation functionality of cyclodextrin powders. The book consists of 16 chapters in which chapter 1 introduces cyclodextrin properties and its applications in food processing, and chapters 2-16 explore applications of cyclodextrin in encapsulation for many guest compounds. These compounds include gases, flavors, colors, pigments, polyphenols (plant bioactive compounds), essential oils, lipids (cholesterol and polyunsaturated fatty acids), vitamins, fruit ripening controlling compounds, and antifungal and antimicrobial compounds. These chapters also discuss functionalities of cyclodextrin in packaging, masking off-flavor and off-taste, and as dietary fiber. Covering a broad range of cyclodextrin applications and suitable for both newcomers to encapsulation technology and those with experience, Functionality of Cyclodextrins in Encapsulation for Food Applications is a unique and essential reference on this increasingly important topic.
    Type of Medium: Online Resource
    Pages: XI, 343 p. 64 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030800567
    DDC: 664.001579
    Language: English
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  • 2
    Electronic Resource
    Electronic Resource
    New York, NY [u.a.] : Wiley-Blackwell
    Biotechnology and Bioengineering 43 (1994), S. 57-63 
    ISSN: 0006-3592
    Keywords: protein renaturation ; liquid paraffin ; BSA ; ribonuclease ; myoglobin ; Chemistry ; Biochemistry and Biotechnology
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Biology , Process Engineering, Biotechnology, Nutrition Technology
    Notes: A means of rapidly renaturing denatured protein was devised and evaluated. Three liquids were laminarly layered in a centrifuge tube, in which two solutions sandwiched liquid paraffin so as to form a pseudolipid bilayer. Denatured and aggregted protein placed on the upper surface of liquid paraffin was renatured as it passed through liquid-paraffin layer into the renaturation buffer during the centrifugation. The aggregated and denatured protein selectively passed through the liquid-paraffin layer, whereas other solutions, such as chaotropic agents or organic solvent, could not. This means that a rapid dilution condition favorable for protein renaturation was realized in a small scale. Aggregated and denatured BSA and ribonuclease A were renatured and resolubilized as they passed through the liquid-paraffin layer into an appropriate renaturation buffer solution. This method was also applied to the rapid heme reconstitution of myoglobin from Feprotoporphyrin IX to Zn-protoporphyrin IX. © 1994 John Wiley & Sons, Inc.
    Additional Material: 6 Ill.
    Type of Medium: Electronic Resource
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  • 3
    Publication Date: 1994-06-01
    Print ISSN: 0021-924X
    Electronic ISSN: 1756-2651
    Topics: Biology , Chemistry and Pharmacology
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