Impact of Physicochemical Modifications in Casein Promoted by UV-C on the Peptide Profile of Gastric Digestion and the Transepithelial Transport of Peptides

化学 胶束 酪蛋白 消化(炼金术) 酪氨酸 生物物理学 生物化学 色谱法 有机化学 水溶液 生物
作者
Aline Teixeira do Brasil Morais,Sinara T.B. Morais,Jéssica Freire Feitor,Willy G. Santos,Lucas Gomes da Silva Catunda,Markus Walkling‐Ribeiro,Lı́lı́a Ahrné,Daniel R. Cardoso
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:71 (19): 7495-7507 被引量:10
标识
DOI:10.1021/acs.jafc.3c00392
摘要

Caseins are the main proteins in milk, and their structure and spatial conformation are responsible for their slow digestion rate. The release of bioactive and β-casomorphin peptides from casein digestion may induce allergic responses during consumption. Spectroscopic techniques were used to observe the structural changes in casein conformation induced by Ultraviolet light irradiation (UV-C). Raman spectroscopy results showed more pronounced peaks at 618 and 640 cm-1 for phenylalanine and tyrosine moieties of the photolyzed micellar casein, respectively, suggesting changes in the micelle structure. The decrease in the intensity of Raman signals for tryptophan and tyrosine corroborates to the UV-C-induced modifications of the micelle structure. Particle size distribution showed a decrease in the average micelle size after 15 min of UV-C exposure, while low-temperature, long-time (LTLT) pasteurization led to the formation of large aggregates, as observed by atomic force microscopy. UV-C did not impact the formation or transport of peptides, as observed by using the Caco-2 cell as a model for peptide absorption. However, the absence of the opioid peptide SRYPSY from κ-casein and only 20% of the concentration of opioid peptide RYLGY were noted. This work demonstrated that UV-C can be utilized to induce the physicochemical modification of dairy products, promoting a higher digestion rate and reducing allergenicity.
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