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Effects of Wet-Blending on Detection of Melamine in Spray-Dried Lactose
Betsy Jean Yakes1, Marti M Bergana2, Peter F Scholl1
1Office of Regulatory Science, Center for Food Safety and Applied Nutrition, United States Food and Drug Administration , 5001 Campus Drive, College Park, Maryland 20740, United States.
Abstract:
During the development of rapid screening methods to detect economic adulteration, spray-dried milk powders prepared by dissolving melamine in liquid milk exhibited an unexpected loss of characteristic melamine features in the near-infrared (NIR) and Raman spectra. To further characterize this "wet-blending" phenomenon, spray-dried melamine and lactose samples were produced as a simplified model and investigated by NIR spectroscopy, Raman spectroscopy, proton nuclear magnetic resonance (1H NMR), and direct analysis in real time Fourier transform mass spectrometry (DART-FTMS). In contrast to dry-blended samples, characteristic melamine bands in NIR and Raman spectra disappeared or shifted in wet-blended lactose-melamine samples. Subtle shifts in melamine 1H NMR spectra between wet- and dry-blended samples indicated differences in melamine hydrogen-bonding status. Qualitative DART-FTMS analysis of powders detected a greater relative abundance of lactose-melamine condensation product ions in the wet-blended samples, which supported a hypothesis that wet-blending facilitates early Maillard reactions in spray-dried samples. Collectively, these data indicated that the formation of weak, H bonded complexes and labile, early Maillard reaction products between lactose and melamine contribute to spectral differences observed between wet- and dry-blended milk powder samples. These results have implications for future evaluations of adulterated powders and emphasize the important role of sample preparation methods on adulterant detection.
Insights
Wet-blending melamine in milk powder disrupts its spectral features due to early Maillard reactions. This sample preparation method significantly impacts adulterant detection in food analysis.
Area of Science:
- Food chemistry
- Analytical chemistry
- Spectroscopy
Background:
- Rapid screening methods for economic adulteration in food products are crucial.
- Unexpected spectral changes in melamine-adulterated milk powder were observed during method development.
Purpose of the Study:
- To investigate the "wet-blending" phenomenon affecting melamine detection in spray-dried milk powder.
- To characterize spectral differences between wet- and dry-blended melamine-lactose model systems.
Main Methods:
- Near-infrared (NIR) spectroscopy
- Raman spectroscopy
- Proton nuclear magnetic resonance (1H NMR)
- Direct Analysis in Real Time Fourier Transform Mass Spectrometry (DART-FTMS)
Main Results:
- Wet-blending caused characteristic melamine bands to disappear or shift in NIR and Raman spectra, unlike dry-blending.
- 1H NMR revealed differences in melamine hydrogen-bonding status between wet- and dry-blended samples.
- DART-FTMS detected increased lactose-melamine condensation products in wet-blended samples, suggesting early Maillard reactions.
Conclusions:
- Weakly hydrogen-bonded complexes and early Maillard products form between lactose and melamine during wet-blending.
- These interactions cause spectral differences, impacting adulterant detection.
- Sample preparation methods critically influence the analysis of adulterated powders.

