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

Analysis of Amino Acids in Foods Using Automatic Pretreatment Function of Integrated HPLC

Applications | 2025 | ShimadzuInstrumentation
HPLC
Industries
Food & Agriculture
Manufacturer
Shimadzu

Summary

Significance of Amino Acid Profiling in Foods


Foods contain key amino acids like glutamic acid that contribute to flavor and nutritional properties. Rapid and selective quantitation of amino acids is essential for food quality assessment, nutritional evaluation, and functional component research.

Study Objectives and Overview


This work demonstrates an automated high-performance liquid chromatography workflow for pre-column derivatization and analysis of proteinogenic and related amino acids across fourteen diverse food matrices. The method aims to achieve high sensitivity, selectivity, and short analysis times, with complete profiling in under twenty minutes.

Methodology and Instrumentation


Pre-column derivatization employs o-phthalaldehyde with mercaptopropionic acid for primary amines and 9-fluorenylmethyl chloroformate for secondary amines, introducing hydrophobic tags for reversed-phase separation. The LC-2050C system integrates the autosampler pretreatment function to automate mixing of derivatizing reagents and sample. Separation is performed on a Shim-pack XR-ODSII column (100 mm×3 mm, 2.2 µm) at 40 °C under a low-pressure gradient. Detection uses a fluorescence detector with dual channels at Ex 350/Em 450 nm and Ex 266/Em 305 nm. Sample preparation includes acid hydrolysis (6 M HCl at 110 °C for 22 h) for total amino acids and dilution plus ultrafiltration for free amino acids.

Used Instrumentation


* LC-2050C integrated HPLC system
* Shim-pack XR-ODSII column (100 mm×3 mm, 2.2 µm)
* RF-20Axs fluorescence detector
* Shimadzu autosampler with pretreatment function
* Standard glass vials (1.5 mL)

Main Results and Discussion


Calibration with a 22-component standard achieved baseline separation within 14 minutes, successfully resolving key analyte pairs such as GABA and tryptophan. Real food samples—brown rice, eggs, soybean extract, tuna, scallop, supplements, beverages, sauces, coconut milk, and mushrooms—yielded clear, reproducible chromatograms for both hydrolyzed and free amino acids. The use of uniform diluent composition and ultrafiltration minimized matrix effects and ensured consistent derivatization efficiency.

Benefits and Practical Applications of the Method


  • Fully automated derivatization increases throughput and reproducibility
  • Short run times suit high-volume analytical laboratories
  • Dual derivatization enables comprehensive coverage of amino acid classes
  • Compatible with general HPLC platforms, reducing specialized equipment requirements
  • Applicable to nutrition analysis, quality control, flavor research, and product development

Future Trends and Potential Applications


Further integration with mass spectrometry may extend the method to modified and non-standard amino acids. Miniaturized derivatization modules and on-line reaction monitoring could enable real-time quality control in food processing. Advanced software and machine learning approaches for gradient optimization and peak integration promise to streamline method development and data analysis.

Conclusion


The automated pre-column derivatization HPLC method on the LC-2050C platform delivers rapid, sensitive, and reproducible amino acid profiling across diverse food matrices. Its high throughput and broad applicability make it a valuable tool for food science research and routine quality assurance.

References


Ayano Tanabe, Hiroko Yamamoto. Analysis of Amino Acids in Foods Using Automatic Pretreatment Function of Integrated HPLC. Shimadzu Application News L529A, First Edition: Mar. 2025.

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
Analysis of Foods Using Nexera™ Post-Column Amino Acid Analysis System
Application News No. High Performance Liquid Chromatography Analysis of Foods Using Nexera™ Post-Column Amino Acid Analysis System L568 Amino acids are essential nutrients that make up the proteins which form the human body. Analysis of amino acids has a long…
Key words
acid, acidalanine, alaninethreonine, threoninevaline, valineproline, prolineglutamic, glutamicserine, serineglycine, glycineisoleucine, isoleucinemethionine, methionineaspartic, asparticphenylalanine, phenylalaninetyrosine, tyrosineleucine, leucinegaba
Pre-column Amino Acid Analysis of Hydrolyzed Pet Food
High Performance Liquid Chromatograph LC-2050C/ RF-20Axs Application News Pre-column Amino Acid Analysis of Hydrolyzed Pet Food Mizuki Hayakawa1 , Chihiro Kenjo2 , Sayaka Tsuri2 1 Shimadzu Corporation , 2 Shimadzu Techno-Research User Benefits  Very easy amino acid analysis can…
Key words
acid, acidhydrolysis, hydrolysishydrochloric, hydrochloricperformic, performicamino, aminomethionine, methionineoxidation, oxidationopa, opacysteic, cysteicthreonine, threoninevaline, valinehistidine, histidineproline, prolineinquiry, inquiryisoleucine
Pre-column Amino Acid Analysis of Hydrolyzed Alternative Proteins
High Performance Liquid Chromatograph Application News Nexera XR/RF-20AXS Pre-column Amino Acid Analysis of Hydrolyzed Alternative Proteins Mizuki Hayakawa1 Chihiro Kenjo2 Sayaka Tsuri2 1 Shimadzu Corporation、2 Shimadzu Techno-Research User Benefits  Very easy amino acid analysis can be performed because of…
Key words
acid, acidhydrolysis, hydrolysishydrochloric, hydrochloricperformic, performicmethionine, methionineamino, aminooxidation, oxidationsulfone, sulfonecysteic, cysteiclysine, lysinemin, minthreonine, threonineunder, undercricket, cricketevaporate
Simultaneous Analysis of Amino Acids Using Automatic Pretreatment Function of Integrated HPLC
High Performance Liquid Chromatograph Application News Simultaneous Analysis of Amino Acids Using Automatic Pretreatment Function of Integrated HPLC Yusuke Osaka, Ayano Tanabe, Mieko Kiyama User Benefits  Automatic pre-column derivatization method enables highly selective amino acid analysis with high sensitivity.…
Key words
pump, pumpamino, aminoinquiry, inquiryderivatization, derivatizationacids, acidshplc, hplclinearity, linearitycolumn, columnpretreatment, pretreatmentanalysis, analysismin, minmercaptopropionic, mercaptopropionicacid, acidchromatograph, chromatographphthalaldehyde
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