Summary of Study ST002292

This data is available at the NIH Common Fund's National Metabolomics Data Repository (NMDR) website, the Metabolomics Workbench, https://www.metabolomicsworkbench.org, where it has been assigned Project ID PR001470. The data can be accessed directly via it's Project DOI: 10.21228/M8Q99X This work is supported by NIH grant, U2C- DK119886.

See: https://www.metabolomicsworkbench.org/about/howtocite.php

This study contains a large results data set and is not available in the mwTab file. It is only available for download via FTP as data file(s) here.

Perform statistical analysis  |  Show all samples  |  Show named metabolites  |  Download named metabolite data  
Download mwTab file (text)   |  Download mwTab file(JSON)   |  Download data files (Contains raw data)
Study IDST002292
Study TitleQuantification of Dissolved Metabolites in Environmental Samples through Cation-Exchange Solid Phase Extraction (CX-SPE) paired with Liquid Chromatography-Mass Spectrometry
Study TypeMethod Development for Dissolved Metabolomics in Seawater
Study SummarySmall, biologically produced, organic molecules called metabolites play key roles in microbial systems where they directly mediate exchanges of nutrients, energy, and information. However, the study of dissolved polar metabolites in seawater and other environmental matrices has been hampered by analytical challenges including high inorganic ion concentrations, low analyte concentrations, and high chemical diversity. Here we show that a cation-exchange solid phase extraction (CX-SPE) sample preparation approach separates positively charged and zwitterionic metabolites from seawater and freshwater samples, allowing their analysis by liquid chromatography-mass spectrometry (LC-MS). We successfully extracted 69 known compounds from an in-house compound collection and evaluated the performance of the method by establishing extraction efficiencies and limits of detection (pM to low nM range) for these compounds. CX-SPE extracted a range of compounds including amino acids and compatible solutes, resulted in very low matrix effects, and performed robustly across large variations in salinity and dissolved organic matter (DOM) concentration. We compared CX-SPE to an established solid phase extraction procedure (PPL-SPE) and demonstrate that these two methods extract fundamentally different fractions of the dissolved metabolite pool with CX-SPE extracting compounds that are on average smaller and more polar. We use CX-SPE to analyze four environmental samples from distinct aquatic biomes, producing some of the first CX-SPE dissolved metabolomes. Quantified compounds ranged in concentration from 0.0093 nM to 49 nM and were composed primarily of amino acids (0.15 – 16 nM) and compatible solutes such as TMAO (0.89 – 49 nM) and glycine betaine (2.8 – 5.2 nM).
Institute
University of Washington
DepartmentOceanography
LaboratoryIngalls Lab
Last NameSacks
First NameJoshua
AddressOcean Sciences Building, 1492 NE Boat St. Seattle, WA 98105
Emailjssacks@uw.edu
Phone4074090052
Submit Date2022-08-30
Raw Data AvailableYes
Raw Data File Type(s)mzML
Analysis Type DetailLC-MS
Release Date2022-10-19
Release Version1
Joshua Sacks Joshua Sacks
https://dx.doi.org/10.21228/M8Q99X
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

Select appropriate tab below to view additional metadata details:


Factors:

Subject type: Water sample; Subject species: - (Factor headings shown in green)

mb_sample_id local_sample_id Extraction_Approach Location
SA220266LW_CCX-SPE Lake Washington
SA220267LW_ACX-SPE Lake Washington
SA220268LW_BCX-SPE Lake Washington
SA220269Blank3_BCX-SPE NA
SA220270Blank3_ACX-SPE NA
SA220271Blank2_CCX-SPE NA
SA220272Blank2_BCX-SPE NA
SA220273Blank3_CCX-SPE NA
SA220274Blank4_BCX-SPE NA
SA220275Blank4_CCX-SPE NA
SA220276Blank5_BCX-SPE NA
SA220277Blank2_ACX-SPE NA
SA220278Blank5_CCX-SPE NA
SA220279Blank5_ACX-SPE NA
SA220280Blank4_ACX-SPE NA
SA220281Blank1_ACX-SPE NA
SA220282Blank1_BCX-SPE NA
SA220283Blank1_CCX-SPE NA
SA220284NP_ACX-SPE North Pacific
SA220285NP_BCX-SPE North Pacific
SA220286NP_CCX-SPE North Pacific
SA220287PS_ACX-SPE Puget Sound
SA220288PS_BCX-SPE Puget Sound
SA220289PS_CCX-SPE Puget Sound
SA220290Aloha_CCX-SPE Station ALOHA
SA220291Aloha_BCX-SPE Station ALOHA
SA220292Aloha_ACX-SPE Station ALOHA
SA220293TruePoo_Half2NA NA
SA220294TruePoo_Full1NA NA
SA220295TruePoo_Full2NA NA
SA220296TruePoo_Half1NA NA
SA220297TruePoo_Full3NA NA
SA220298TruePoo_Half3NA NA
SA220299PPL_Blank_CPPL-SPE NA
SA220300PPL_Blank_APPL-SPE NA
SA220301PPL_Blank_BPPL-SPE NA
SA220302PPL_PS_APPL-SPE Puget Sound
SA220303PPL_PS_CPPL-SPE Puget Sound
SA220304PPL_PS_BPPL-SPE Puget Sound
SA220305PPL_Aloha_CPPL-SPE Station ALOHA
SA220306PPL_Aloha_APPL-SPE Station ALOHA
SA220307PPL_Aloha_BPPL-SPE Station ALOHA
Showing results 1 to 42 of 42
  logo