Analytical Science, Preclinical Development, Banyu Pharmaceutical Co. Ltd., 3 Okubo, Tsukuba, Ibaraki 300-2611, Japan.
J Chromatogr B Analyt Technol Biomed Life Sci. 2010 Feb 1;878(3-4):442-8. doi: 10.1016/j.jchromb.2009.12.028. Epub 2010 Jan 4.
A new approach for the separation and inline characterization of lipopolysaccharide (LPS) related compounds has been developed. The separation was based on the difference in the number of charged phosphate and ethanolamine groups, as non-stoichiometric substituents, on the polysaccharide backbone, and was achieved with reverse phase ion-pairing chromatography (RPIP-HPLC). Tributylamine was used as an ion-pair reagent. In the conditions used in this study, tributylammonium then binds to the LPS related compounds through the negatively charged phosphate groups. This changes the hydrophobicity of the analytes at different positions and allows for separation based on both the number and position of the substituents on the analyte. The RPIP-HPLC was found to be effective for the separation of the O,N-deacylated derivative (deON) and polysaccharide portion (PS) from the LPS of Escherichia coli C strain. Post-column fluorescence derivatization (FLD), using sodium periodate and taurine, was used to detect the separated LPS related species. On the other hand, the separated species were also detected by direct infusion into the ESI-Q-MS using a volatile ammonium acetate buffer rather than the more traditional potassium phosphate buffer. The signal to noise ratio (S/N ratio) was low for the total ion chromatogram, however, high S/N ratios as well as good resolution were attained by selected ion monitoring (SIM) using m/z numbers corresponding to species with different numbers of non-stoichiometric substituents. Five species for deON and ten species for PS were clearly identified on the SIM chromatogram on the RPIP-HPLC/ESI-Q-MS. Accordingly, the present method allows for the effective separation and inline identification of the species corresponding to the diverse non-stoichiometric substitutions in LPS related compounds.
已开发出一种分离和在线表征脂多糖(LPS)相关化合物的新方法。分离基于多糖主链上非化学计量取代的带电荷磷酸和乙醇胺基团的数量差异,并通过反相离子对色谱(RPIP-HPLC)实现。三丁胺用作离子对试剂。在本研究中使用的条件下,三丁基铵通过带负电荷的磷酸基团与 LPS 相关化合物结合。这改变了不同位置分析物的疏水性,并允许基于分析物上取代基的数量和位置进行分离。发现 RPIP-HPLC 可有效分离大肠杆菌 C 菌株 LPS 的 O,N-去酰化衍生物(deON)和多糖部分(PS)。使用高碘酸钠和牛磺酸进行柱后荧光衍生化(FLD),用于检测分离的 LPS 相关物种。另一方面,也可以通过使用挥发性乙酸铵缓冲液而不是更传统的磷酸钾缓冲液将分离的物种直接注入 ESI-Q-MS 进行检测。总离子色谱的信噪比(S/N 比)较低,然而,通过使用对应于具有不同非化学计量取代数的物种的 m/z 数进行选择离子监测(SIM),可以获得高 S/N 比和良好的分辨率。在 RPIP-HPLC/ESI-Q-MS 上的 SIM 色谱图上,可清楚地识别 deON 的五种物种和 PS 的十种物种。因此,本方法允许有效分离和在线鉴定 LPS 相关化合物中对应于不同非化学计量取代的物种。