Effects of gallic acid and its alkyl esters on lipid oxidation during in vitro simulated gastrointestinal digestion of fresh and fried oysters

Author(s):  
Ying Luo ◽  
Ao Li ◽  
Miao Shen ◽  
Man‐Man Yu ◽  
Zi‐Xuan Wu ◽  
...  
2021 ◽  
Vol 343 ◽  
pp. 128394
Author(s):  
Eslim Sugey Sandoval-Sicairos ◽  
Ada Keila Milán-Noris ◽  
Diego Armando Luna-Vital ◽  
Jorge Milán-Carrillo ◽  
Alvaro Montoya-Rodríguez

2020 ◽  
Vol 21 (3) ◽  
pp. 1059 ◽  
Author(s):  
Ruidan Wang ◽  
Xin Lu ◽  
Qiang Sun ◽  
Jinhong Gao ◽  
Lin Ma ◽  
...  

The aim of this study was to isolate and identify angiotensin I-converting enzyme (ACE) inhibitory peptides from sesame protein through simulated gastrointestinal digestion in vitro, and to explore the underlying mechanisms by molecular docking. The sesame protein was enzymatically hydrolyzed by pepsin, trypsin, and α-chymotrypsin. The degree of hydrolysis (DH) and peptide yield increased with the increase of digest time. Moreover, ACE inhibitory activity was enhanced after digestion. The sesame protein digestive solution (SPDS) was purified by ultrafiltration through different molecular weight cut-off (MWCO) membranes and SPDS-VII (< 3 kDa) had the strongest ACE inhibition. SPDS-VII was further purified by NGC Quest™ 10 Plus Chromatography System and finally 11 peptides were identified by Nano UHPLC-ESI-MS/MS (nano ultra-high performance liquid chromatography-electrospray ionization mass spectrometry/mass spectrometry) from peak 4. The peptide GHIITVAR from 11S globulin displayed the strongest ACE inhibitory activity (IC50 = 3.60 ± 0.10 μM). Furthermore, the docking analysis revealed that the ACE inhibition of GHIITVAR was mainly attributed to forming very strong hydrogen bonds with the active sites of ACE. These results identify sesame protein as a rich source of ACE inhibitory peptides and further indicate that GHIITVAR has the potential for development of new functional foods.


LWT ◽  
2021 ◽  
Vol 138 ◽  
pp. 110782
Author(s):  
Xiaojing Liu ◽  
Jiyuan Shi ◽  
Junjie Yi ◽  
Xuan Zhang ◽  
Qian Ma ◽  
...  

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