Toyama Institute of Health, 17-1 Nakataikoyama, Imizu 939-0363, Japan.
Department of Chemistry, Faculty of Science, Tokai University, 4-1-1 Kitakaname, Hiratsuka 259-1292, Japan.
Anal Chim Acta. 2017 Mar 15;958:71-76. doi: 10.1016/j.aca.2016.12.014. Epub 2016 Dec 26.
A new approach is proposed to determine three hexitols (mannitol, sorbitol and dulcitol) by reversed phase liquid chromatography and ultraviolet detection. When molybdate ion is added to the mobile phase, it forms complexes with hexitols that can be separated on a reversed phase C30 column and detected by UV absorption at 247 nm. The mobile phase (pH 3.1) consisted of 0.1 mM disodium molybdate and 1 mM phosphoric acid. Other sugar alcohols, such as erythritol and xylitol, and glucose could not be detected under these conditions. The quantification limits of the examined three hexitols calculated at S/N = 10 were 0.001 mM and the detector response was linear in the range 0.001-0.3 mM. The method successfully measured these hexitols in candy samples, and the results obtained by the proposed method agreed well with those obtained by enzymatic methods.
提出了一种新的反相液相色谱紫外检测法测定三种己糖醇(甘露醇、山梨糖醇和卫矛醇)的方法。当钼酸盐离子添加到流动相中时,它与己糖醇形成配合物,可在反相 C30 柱上分离,并在 247nm 处通过紫外吸收进行检测。流动相(pH 3.1)由 0.1mM 钼酸钠和 1mM 磷酸组成。在这些条件下,其他糖醇,如赤藓糖醇和木糖醇,以及葡萄糖无法被检测到。在 S/N=10 时,所检查的三种己糖醇的定量限计算为 0.001mM,检测器响应在线性范围内为 0.001-0.3mM。该方法成功地测量了糖果样品中的这些己糖醇,所提出的方法得到的结果与酶法得到的结果吻合良好。