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Allergenicity Modulation of Casein with the Modifications of Linearization, Cross-Linking, and Glycation via the Regulation of Th1/Th2 Homeostasis. | LitMetric

AI Article Synopsis

  • Casein (CN) is a major allergenic protein in cow's milk, and this study investigates how structural modifications of CN affect its allergenic properties.
  • Researchers created three modified forms of CN: linear CN (LCN), transglutaminase-cross-linked CN (TCN), and glucose-glycated CN (GCN), and found that these modifications led to changes in protein aggregation and molecular weight.
  • The results indicated that TCN and GCN could reduce inflammation and allergic reactions more effectively than LCN, with GCN showing the most promise in alleviating allergy symptoms and restoring immune balance, emphasizing the importance of glycation in CN allergenicity.

Article Abstract

Casein (CN) is the primary allergenic protein in cow's milk, contributing to the worldwide escalating prevalence of food allergies. However, there remains limited knowledge regarding the effect of structural modifications on CN allergenicity. Herein, we prepared three modified CNs (mCN), including sodium dodecyl sulfate and dithiothreitol-induced linear CN (LCN), transglutaminase-cross-linked CN (TCN), and glucose-glycated CN (GCN). The electrophoresis results indicated widespread protein aggregation among mCN, causing variations in their molecular weights. The unique internal and external structural characteristics of mCN were substantiated by disparities in surface microstructure, alterations in the secondary structure, variations in free amino acid contents, and modifications in functional molecular groups. Despite the lower digestibility of TCN and GCN compared to LCN, they significantly suppressed IL-8 production in Caco-2 cells without significantly promoting their proliferation. Moreover, GCN showed the weakest capacity to induce LAD2 cell degranulation. Despite the therapeutic effect of TCN, GCN-treated mice displayed the most prominent attenuation of allergic reactions and a remarkably restored Th1/Th2 imbalance, while LCN administration resulted in severe allergic phenotypes and endotypes in both cellular and murine models. This study highlighted the detrimental effect of linear modifications and underscored the significance of glycation in relation to CN allergenicity.

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Source
http://dx.doi.org/10.1021/acs.jafc.3c09962DOI Listing

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