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Application of a porous graphitic carbon column to carbon and nitrogen isotope analysis of underivatized individual amino acids using high-performance liquid chromatography coupled with elemental analyzer/isotope ratio mass spectrometry.
Sun, Yuchen; Ogawa, Nanako O; Ishikawa, Naoto F; Blattmann, Thomas M; Takano, Yoshinori; Ohkouchi, Naohiko.
Affiliation
  • Sun Y; Biogeochemistry Research Center (BGC), Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokosuka, Japan.
  • Ogawa NO; Atmosphere and Ocean Research Institute (AORI), The University of Tokyo, Kashiwa, Japan.
  • Ishikawa NF; Department of Earth and Planetary Science, The University of Tokyo, Tokyo, Japan.
  • Blattmann TM; Biogeochemistry Research Center (BGC), Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokosuka, Japan.
  • Takano Y; Biogeochemistry Research Center (BGC), Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokosuka, Japan.
  • Ohkouchi N; Biogeochemistry Research Center (BGC), Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokosuka, Japan.
Rapid Commun Mass Spectrom ; 37(17): e9602, 2023 Sep 15.
Article in En | MEDLINE | ID: mdl-37580505
ABSTRACT
RATIONALE Isolation of underivatized amino acids (AAs) using high-performance liquid chromatography (HPLC) is becoming a popular method for carbon (δ13 C) and nitrogen isotope (δ15 N) analyses of AAs because of the high analytical precision and for performing dual-isotope analysis. However, some AAs in natural samples, especially small, hydrophilic AAs, are not suitably separated using reversed-phase columns (e.g., C18) and ion-exchange columns (e.g., Primesep A).

METHODS:

We developed a new method for HPLC using a porous graphitic carbon column for the separation of nine hydrophilic AAs. After purification, δ13 C and δ15 N values of AAs were determined using elemental analyzer/isotope ratio mass spectrometry (EA/IRMS). We demonstrated the application of this method by determining δ13 C and δ15 N values of individual hydrophilic AAs in a biological sample, the muscle of blue mackerel (Scomber australasicus).

RESULTS:

Chromatographically, the baseline separation of hydrophilic AAs was achieved in both the standard mixture and the biological sample. We confirmed that δ13 C and δ15 N values of AA standards remained unchanged during the whole experimental procedure. The δ13 C values of AAs in mackerel muscle are also in good agreement with the values obtained using another verified method for δ13 C analysis.

CONCLUSIONS:

The good separation performance of hydrophilic AAs and the reliability of δ13 C and δ15 N analyses of individual AAs using the porous graphite column offer a significant advantage over conventional settings. We suggest that, in the future, the HPLC × EA/IRMS method can be used for reliable δ13 C and δ15 N analyses of AAs in natural samples.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Amino Acids / Graphite Language: En Journal: Rapid Commun Mass Spectrom Year: 2023 Type: Article Affiliation country: Japan

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Amino Acids / Graphite Language: En Journal: Rapid Commun Mass Spectrom Year: 2023 Type: Article Affiliation country: Japan