Akiyama Takumi, Yamazaki Takeshi, Tanamoto Kenichi
National Institute of Health Sciences, Setagaya-ku, Tokyo, Japan.
Shokuhin Eiseigaku Zasshi. 2011;52(1):40-6. doi: 10.3358/shokueishi.52.40.
The identification test for thickening polysaccharides containing neutral saccharides and uronic acids was investigated by GC analysis of constituent monosaccharides. The reported method, in which monosaccharides were converted to diethyldithioacetal derivatives with ethanethiol followed by trimethylsilylation, was improved in terms of operability and reproducibility of GC/MS analysis. The suitability of the improved diethyldithioacetal derivatization method was determined for seven thickening polysaccharides, i.e., carob bean gum, guar gum, karaya gum, gum arabic, gum ghatti, tragacanth gum and peach gum. The samples were acid-hydrolyzed to form monosaccharides. The hydrolysates were derivatized and analyzed with GC/FID. Each sugar derivative was detected as a single peak and was well separated from others on the chromatograms. The amounts of constituent monosaccharides in thickening polysaccharides were successfully estimated. Seven polysaccharides were distinguished from each other on the basis of constituent monosaccharides. Further examination of the time period of hydrolysis of polysaccharides using peach gum showed that the optimal times were not the same for all monosaccharides. A longer time was needed to hydrolyze glucuronic acid than neutral saccharides. The findings suggest that hydrolysis time may sometimes affect the analytical results on composition of constituent monosaccharides in polysaccharides.
通过对组成单糖的气相色谱分析,研究了含有中性糖和糖醛酸的增稠多糖的鉴别试验。已报道的方法是用乙硫醇将单糖转化为二乙基二硫代乙缩醛衍生物,然后进行三甲基硅烷化,在气相色谱/质谱分析的可操作性和重现性方面对该方法进行了改进。确定了改进的二乙基二硫代乙缩醛衍生化方法对七种增稠多糖的适用性,即角豆胶、瓜尔豆胶、刺梧桐树胶、阿拉伯胶、吉提胶、黄芪胶和桃胶。将样品进行酸水解以形成单糖。将水解产物进行衍生化并通过气相色谱/氢火焰离子化检测器进行分析。每种糖衍生物均作为单一峰被检测到,并且在色谱图上与其他峰分离良好。成功估算了增稠多糖中组成单糖的含量。根据组成单糖将七种多糖相互区分开来。使用桃胶对多糖水解时间段的进一步研究表明,所有单糖的最佳水解时间并不相同。水解葡萄糖醛酸比水解中性糖需要更长的时间。这些发现表明,水解时间有时可能会影响多糖中组成单糖成分的分析结果。