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Titlebook: Carbohydrate Biotechnology Protocols; Christopher Bucke Book 1999 Humana Press 1999

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Alginate from ,,cteria, respectively (.). About 30,000 metric tons of sodium alginates per year are currently used in the food, pharmaceutical, textile and paper industries as thickening, stabilising and jellifying agents (.). Since only a few of the many species of brown algae are suitable and are limited in abund
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Enzymatic Synthesis of Cellulose,d application fields as polymeric drugs and new biomaterials (.). So far, highly pure samples of cellulose and its derivatives have been produced for functional macromolecules, specimen for basic crystallographical research, enzyme substrates, and so on starting from various kinds of naturally occur
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The Production of Cyclodextrins Using CGTase from ,,ther liquefied starch, maltodextrin, or long-chain maltooligosaccharides. Although numerous bacterial sources for the production of the enzyme are known, the CGTase employed in the reactions described in this chapter is derived from cultures of . and is available commercially. In the absence of comp
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Production of Microbial Glycolipids,ds. The carbon sources may be used separately or in combination with each other. As for biosynthetic pathways, these include both degradation and new synthesis of sugar lipids, as well as direct incorporation, elongation, or modification of precursor molecules. Reviews recently published are those o
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Partial Enzymatic Hydrolysis of Starch to Maltodextrins on the Laboratory Scale,erage 1 in 20–25 α-(1,4)-bond glucose units is branched by an α-(1,6)-.-glucosidic bond. Amylose (mol wt 10.–10.) consists of much longer linear chains of which on average one in several hundred α-(1,4)-bond glucose units is branched by an α-(1,6)-.-glucosidic bond (.). The hydrolysis of starch to l
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