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

Qualitative Analysis of UV-Absorbents in Cosmetics Based on UV-Vis Spectrum

Applications | 2019 | ShimadzuInstrumentation
HPLC
Industries
Other
Manufacturer
Shimadzu

Summary

Importance of the Topic


Ultraviolet absorbers in cosmetic products play a critical role in protecting skin from UV radiation while adhering to safety regulations. Reliable qualitative and quantitative methods are essential for ensuring compliance with regional cosmetic standards and for maintaining product quality and consumer safety.

Study Objectives and Overview


This study presents a qualitative HPLC method using a photodiode array (PDA) detector to identify six common UV-absorbing compounds in cosmetics. The main goal was to demonstrate how spectral information, combined with retention times, can improve identification reliability in routine analysis.

Methodology and Instrumentation


The analysis employed a Shim-pack Velox C18 column under a high-pressure gradient with 0.085% phosphoric acid (A) and acetonitrile (B). The gradient ran from 60% B to 100% B over 10 minutes, with a sustained re-equilibration. Key parameters included:
  • Flow rate: 1 mL/min
  • Column temperature: 60 °C
  • Injection volume: 1 μL
  • Detection: SPD-M40 photodiode array (190–800 nm)

Standards of six UV-absorbents (100 mg/L each) were mixed, and calibration curves were prepared at 1, 5, 25, 50, and 100 mg/L to assess linearity and repeatability.

Main Results and Discussion


Calibration curves for all six compounds showed excellent linearity (R2 ≥ 0.9999). Repeatability tests at 100 mg/L yielded retention time and peak area RSDs below 0.35%. UV-Vis spectra recorded from 230 to 500 nm were stored in a library. Comparison of spectra from standards at 1 mg/L with the 100 mg/L library entries produced similarity scores above 0.99. Analysis of a commercial foundation revealed three UV-absorbers, all within regulatory limits, with spectra matching the standard entries, confirming reliable qualitative identification.

Benefits and Practical Applications


Incorporating PDA spectral data into HPLC workflows enhances compound identification beyond retention times alone. This approach streamlines regulatory compliance checks for cosmetics and can be applied to routine QA/QC in industrial laboratories without the need for more complex techniques like LC-MS or NMR.

Future Trends and Potential Applications


  • Automated peak identification based on combined spectral similarity and retention criteria
  • Expansion of spectral libraries to include broader compound classes
  • Integration with chemometric tools for deconvolution in complex matrices
  • Coupling with high-resolution mass spectrometry for confirmatory analysis
  • Cloud-based databases for collaborative spectral data sharing

Conclusion


This study demonstrated that PDA-enhanced HPLC enables reliable qualitative analysis of UV-absorbers in cosmetics. The method offers high linearity, repeatability, and spectral matching accuracy, making it a robust tool for regulatory and quality control laboratories.

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
Qualitative Analysis of UV-Absorbents in Cosmetics Based on UV-Vis Spectrum
LAAN-A-LC-E319 Application News No. High Performance Liquid Chromatography Qualitative Analysis of UV-Absorbents in Cosmetics Based on UV-Vis Spectrum L546 „Linearity and Repeatability Many cosmetic products contain ultraviolet absorbers (UVabsorbents) which protect the skin from ultraviolet rays. In Japan, ingredients of…
Key words
absorbents, absorbentsmau, mauvis, visabsorbent, absorbentcosmetics, cosmeticscontained, containedqualitative, qualitativesimilarity, similarityanalysis, analysisethylhexyloxyphenol, ethylhexyloxyphenolmethoxyphenyl, methoxyphenylstandard, standardmixed, mixednews, newsrepeatability
Ultra High Performance Liquid Chromatograph Shimadzu Nexera series - Technical Reports / Applications
C190-E256 Ultra High Performance Liquid Chromatograph Nexera series Technical Reports / Applications The Nexera Series: Reinvent Your Workflow Just as the internet and smartphones have changed our lifestyles, and robots with AI capabilities continue to make our lives more convenient,…
Key words
acid, acidmau, mauanalysis, analysismobile, mobilemin, mincolumn, columnphase, phaseshim, shimnexera, nexerainjection, injectionpack, packorganic, organicatp, atpacids, acidspantothenate
Simultaneous Analysis of Dipotassium Glycyrrhizinate and Tranexamic Acid
i-Series LC-2050C 3D, High Performance Liquid Chromatograph Application News Simultaneous Analysis of Dipotassium Glycyrrhizinate and Tranexamic Acid Miho Akagi, Hiromasa Iboshi User Benefits  Simultaneous analysis of dipotassium glycyrrhizate and tranexamic acid in cosmetics can be performed with simple pretreatment.…
Key words
mau, maupeak, peaktranexamic, tranexamicdipotassium, dipotassiumtimes, timespda, pdaaverage, averagecompound, compoundcosmetics, cosmeticssimultaneous, simultaneousglycyrrhizate, glycyrrhizatemin, minrepeated, repeatedglycyrrhizinate, glycyrrhizinatersd
Simultaneous Quantitative Analysis of Coumarin and Cinnamaldehyde in Cinnamon Produced in Different Regions
High Performance Liquid Chromatograph Application News Nexera™ lite Simultaneous Quantitative Analysis of Coumarin and Cinnamaldehyde in Cinnamon Produced in Different Regions N. Iwata User Benefits  Quickly achieves separation between coumarin, cinnamaldehyde, and contaminants.  Pretreatment can be accomplished easily…
Key words
cinnamomum, cinnamomumcoumarin, coumarincinnamaldehyde, cinnamaldehydecassia, cassiaverum, verumcinnamon, cinnamonmau, maupeaks, peaksproduced, producedlite, litemin, minrates, ratesnews, newsstd, stdacetonitrile
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