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Physicochemical characterization of fructooligosaccharides and evaluation of their suitability as a potential sweetener for diabetics

机译:低聚果糖的理化特性及其作为糖尿病潜在甜味剂的适用性评估

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Fructooligosaccharides (FOSs) were prepared from sucrose using fungal fructosyl transferase (FTase) obtained from Aspergillus oryzae MTCC 5154. The resulting mixture consisted of glucose (28-30%), sucrose (18-20%) and fructooligosaccharides (50-54%) as indicated by HPLC analysis. Identification of oligomers present in the mixture of fructooligosaccharides was carried out using NMR spectroscopy and LC-MS. No compounds other than mono-, di-, tri-, tetra- and pentasaccharides were identified in the FOS mixture prepared using FTase. NMR and LC-MS spectra proved the absence of any toxic microbial metabolites of Aspergillus species in FOS thereby emphasizing its safe use as a food ingredient. Animal studies conducted on streptozotocin-induced diabetic rats suggested that the use of FOS as an alternative non-nutrient sweetener is without any adverse effects on various diabetes-related metabolic parameters. Despite the high free-sugar content associated with it, FOS did not further aggravate the hyperglycemia and glucosuria in diabetic animals, even at 10% levels. On the other hand, by virtue of its soluble fibre effect, it has even alleviated diabetic-related metabolic complications to a certain degree. (c) 2007 Elsevier Ltd. All rights reserved.
机译:使用从米曲霉MTCC 5154获得的真菌果糖基转移酶(FTase)由蔗糖制备低聚果糖(FOS)。所得混合物由葡萄糖(28-30%),蔗糖(18-20%)和低聚果糖(50-54%)组成如HPLC分析所示。使用NMR光谱法和LC-MS鉴定低聚果糖混合物中存在的低聚物。在使用FTase制备的FOS混合物中,未鉴定到除单糖,二糖,三糖,四糖和五糖以外的化合物。 NMR和LC-MS光谱证明FOS中不存在曲霉菌种的任何有毒微生物代谢产物,从而强调了其作为食品成分的安全使用。对链脲佐菌素诱导的糖尿病大鼠进行的动物研究表明,使用FOS作为替代性的非营养性甜味剂不会对与糖尿病相关的各种代谢参数产生任何不利影响。尽管游离糖含量高,但FOS并没有进一步加重糖尿病动物的高血糖症和糖尿症,即使浓度为10%。另一方面,由于其可溶性纤维的作用,它甚至在一定程度上减轻了与糖尿病有关的代谢并发症。 (c)2007 Elsevier Ltd.保留所有权利。

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