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Titlebook: Biochemical Principles of the Use of Xylitol in Medicine and Nutrition with Special Consideration of; Kauko K. Mäkinen Book 1978 Springer

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https://doi.org/10.1007/978-3-030-55104-9he third is based on titrimetry. Most methods serve the determination of other polyols as well. So, for example, sugar alcohols have been chemically determined by iodometric titration [21, 22] and by gas liquid chromatography after acetylation with acetic anhydride in pyridine [23]. Silylated xylito
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Correction to: Changing Mentalities,ved and up to the 1970’s the patent literature had already been enriched by several applications [33]. The production of xylitol has been based mainly on hydrogenation of D-xylose obtained from prehydrolysis of various xylancontaining plant materials (birchwood, cottonseed hulls, coconut shells, etc
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https://doi.org/10.1007/978-3-031-17992-1sugar alcohols and improved assay methods, it is now realized that xylitol is a ubiquitous carbohydrate. The present literature on the occurrence of xylitol in nature will most likely increase rapidly during the forthcoming years. Xylitol and certain other polyols are of vital importance to the life
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Judaism in the Theology of Sir Isaac Newton normal metabolite in mammals. This idea was supported by the discovery of a very active enzyme system for the reduction of L-xylulose to xylitol [253]. It was also found that D-xylulose 5-phosphate, rather than Dribulose 5-phosphate, is the ketopentose substrate of transketolase in the 6phosphogluc
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https://doi.org/10.1057/9781137013187f sucrose and other dietary carbohydrates, its use in medicine and dietetics is practically the same as for other sugars. Many properties of xylitol, like sweetness, appearance, and physical combustion value are the same as for sucrose.
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