LCMS
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike

Wide-Target Analysis of Yogurt Using Triple Quadrupole LC-MS/MS

Posters | 2023 | Shimadzu | AOACInstrumentation
LC/MS, LC/MS/MS, LC/QQQ
Industries
Food & Agriculture
Manufacturer
Shimadzu

Summary

Wide-Target Analysis of Yogurt Using Triple Quadrupole LC-MS/MS


Significance of the Topic


Food metabolomics offers detailed insight into the flavor, quality, and functionality of dairy products. Targeted analysis of primary metabolites in yogurt is vital for process optimization, quality control, and nutritional evaluation.

Objectives and Overview of the Study


This work aimed to develop a comprehensive workflow for profiling primary metabolites in commercially available yogurts. Two complementary LC-MS/MS strategies—ion-pairing and non-ion-pairing—were applied and compared to maximize coverage of hydrophilic metabolites.

Methodology and Instrumentation


Sample Preparation:
  • Freeze-drying of yogurt, extraction with ultrapure water:methanol:chloroform (1:2.5:1).
  • Vortex mixing, shaking (1200 rpm, 30 min, 37 °C), and centrifugation steps.
  • Ultrafiltration (3 kDa cutoff), concentration, and reconstitution in 10 µM MES internal standard.
Instrumentation:
  • UHPLC: Shimadzu Nexera X3.
  • MS: Shimadzu LCMS-8060NX triple quadrupole with ESI in positive/negative MRM modes.
  • Columns: Mastro2 C18 with dipentylamine/acetate ion-pairing and Shim-pack GIST PFPP for non-ion-pairing.
  • Mobile phases: 10 mM dipentylamine/15 mM acetate or 0.1% formate with methanol/acetonitrile.

Main Results and Discussion


  • Ion-pairing LC-MS/MS detected 68–73 of 112 targeted compounds, enriching glycolytic and pentose phosphate metabolites.
  • Non-ion-pairing LC-MS/MS identified 81–88 of 141 targets, emphasizing amino acids, organic acids, and nucleotides.
  • Combined analysis yielded over 110 unique primary metabolites across eight yogurt samples.
  • PCA using Multi-omics Analysis Package clearly distinguished yogurt varieties based on metabolite profiles.
  • Key PC1 positive loadings: nucleic acid derivatives (UDP-glucose, cytidine, TDP), pentose phosphate, urea cycle; negative loadings: phenyllactic acid, succinic acid, cystathionine, methionine and derivatives.
  • PC2 differentiation driven by amino acids (tyrosine, glutamic acid, arginine) and cofactors (FAD), with opposing loadings for simple amino acids and sugar phosphates.

Benefits and Practical Applications


This workflow enables high-throughput, high-coverage profiling of yogurt metabolites, supporting quality assurance, batch comparison, and authentication in dairy research and industrial settings.

Future Trends and Applications


Future directions include integration with genomics and proteomics data, advanced bioinformatics for real-time monitoring, expanded target lists, and automation for personalized nutrition and quality assessment.

Conclusion


The combination of ion-pairing and non-ion-pairing LC-MS/MS methods, together with specialized software tools, offers a robust strategy for comprehensive primary metabolite analysis in yogurt, revealing distinct profiles among commercial products.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

Downloadable PDF for viewing
 

Similar PDF

Toggle
Wide-Target Analysis of Yogurt Using Triple Quadrupole LC-MS/MS
TP 474 Wide-Target Analysis of Yogurt Using Triple Quadrupole LC-MS/MS Junko IIDA1,2, Yuki ITO1,2, Jun WATANABE1,2 (1) Shimadzu Corporation, Kyoto, Japan, (2) Osaka University Shimadzu Omics Innovation Research Laboratories, Osaka University, Osaka, Japan Table 2 Number of detections in each…
Key words
monophosphate, monophosphatediphosphate, diphosphatethymidine, thymidineranking, rankingacid, acidpackage, packagemethionine, methionineyogurt, yogurtcytidine, cytidineprimary, primaryphenyllactic, phenyllacticloading, loadingmetabolites, metabolitespairing, pairingpeakintelligence
LC/MS/MS Method Package for Primary Metabolites Ver.3
LC/MS/MS Method Package for Primary Metabolites Ver.3
2021|Shimadzu|Brochures and specifications
C146-E437 For LabSolutions LCMS LC/MS/MS Method Package for Primary Metabolites Ver.3 Ready-to-use methods for 200 compounds This Method Package enables efficient, simultaneous analysis of a large number of compounds. Optimized LC separation conditions and MS parameters reduce the time and…
Key words
acid, acidmonophosphate, monophosphatecoenzyme, coenzymethymidine, thymidinecytidine, cytidineguanosine, guanosineadenosine, adenosinediphosphate, diphosphatetriphosphate, triphosphateuridine, uridineshikimic, shikimicpathway, pathwaymethionine, methioninenonmevalonic, nonmevalonicinosine
Shimadzu Selection Guide Metabolite Analysis - Metabolomics Product Portfolio
C146-E280D Selection Guide Metabolite Analysis Metabolomics Product Portfolio Expanding Metabolomics Metabolomics refers to an array of techniques used to comprehensively detect and analyze various metabolites formed in vivo during biological activity. The qualitative and quantitative changes in metabolites reflect the…
Key words
acid, acidsba, sbametabolites, metabolitesdatabase, databasepackage, packageacids, acidsmetabolomics, metabolomicsphospholipid, phospholipidanalysis, analysisamino, aminomediators, mediatorsmonophosphate, monophosphatecooh, coohmrm, mrmlcms
Selection Guide Metabolite Analysis - Metabolomics Product Portfolio
C146-E280D Selection Guide Metabolite Analysis Metabolomics Product Portfolio Expanding Metabolomics Metabolomics refers to an array of techniques used to comprehensively detect and analyze various metabolites formed in vivo during biological activity. The qualitative and quantitative changes in metabolites reflect the…
Key words
acid, acidsba, sbametabolites, metabolitesdatabase, databasepackage, packageacids, acidsmetabolomics, metabolomicsanalysis, analysisphospholipid, phospholipidamino, aminomediators, mediatorsmonophosphate, monophosphatecooh, coohmrm, mrmlcms
Other projects
GCMS
ICPMS
Follow us
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike