| Literature DB >> 25604270 |
Hiroshi Sakamaki1, Takeharu Uchida2, Lee Wah Lim3, Toyohide Takeuchi4.
Abstract
The influences of column hardware, such as chromatographic tubes and frits, on liquid chromatography-mass spectrometry (LC-MS) analysis of phosphorylated compounds were evaluated. The signal to noise ratio (S/N) and the intensity of flavin adenine dinucleotide (FAD) using a glass lined tube and polyethylene frit (GL-PE) column was approximately 170 and 90 times higher, respectively, than those using conventional stainless steel tube and stainless steel frit (S-S) column. In addition, the retention time of FAD using GL-PE column was the shortest compared to other columns. Interaction between phosphorylated compounds and metal ions in the flow path in the S-S column was stronger than that between them and the GL-PE column. Thus, the metal ions in the flow path in GL-PE column were low. Since the specific surface area of a pair of frits was 70 times larger than that of a chromatographic tube (150 mm×2.1 mm), the frits were found to have more effective improvement of the S/N as well as the intensity than the chromatographic tubes, when phosphorylated compounds were analyzed by LC-MS. When the evaluated phosphorylated compounds were analyzed by LC-MS(/MS) using a GL-PE column, the intensity and S/N were increased.Entities:
Keywords: Chromatographic tube; Frit; Intensity; LC/MS; Phosphorylated compounds; S/N
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Year: 2015 PMID: 25604270 DOI: 10.1016/j.chroma.2014.12.088
Source DB: PubMed Journal: J Chromatogr A ISSN: 0021-9673 Impact factor: 4.759