4.7 Article

Formation mechanisms and characterisation of the typical polymers in melanoidins from vinegar, coffee and model experiments

期刊

FOOD CHEMISTRY
卷 355, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.foodchem.2021.129444

关键词

Melanoidins; NaBH4; MALDI-TOF-MS; Vinegar; Coffee; Structural characterisation

资金

  1. National Key R&D Program of China [2016YFD0400505]
  2. Natural Science Foundation of China [81600126]
  3. Tianjin Municipal Education Commission [TD13-5013]
  4. Open Project Program of State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science Technology [SKLFNS-KF-201818]
  5. TianJin Science and Technology Commission [19YFLHSN00030, 19PTSYJC00060]
  6. Tianjin Graduate Research Innovation Project [2020YJSB133]

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The study degraded vinegar, coffee and model melanoidins to elucidate the mechanism of formation of melanoidin skeleton molecules, identifying polymers with the same molecular weight but different binding preferences, contributing to the heterogeneity of melanoidins.
Melanoidins, are of increasing interest for their potential biological activities. However, little knowledge is available on their structure. In the present study, vinegar, coffee and model melanoidins were degraded by NaBH4, and the resultant reaction products were characterised by chromatography, mass spectrometry and spectrometry methods to elucidate the mechanism of formation of melanoidin skeleton molecules. The study identified a typical polymer with a molecular weight (MW) interval of 74 Da, which was polymerised by aldol condensation and reduced by NaBH4, followed by intermolecular dehydration. MW of the theoretically derived typical polymers matched the detected polymers, validating the speculated pathway involved in the formation of melanoidins skeleton molecules. The study also revealed that melanoidins from different sources contain polymers with the same MW and different binding preferences, contributing to the heterogeneity of melanoidins. Overall, these findings indicated that the identified polymers could be used as potential candidate biomarkers for melanoidins.

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