The Hydrophobic Amino Acid-Rich Fish Collagen Peptide Ameliorates Dextran Sulfate Sodium-Induced Ulcerative Colitis in Mice via Repairing the Intestinal Barrier, Regulating Intestinal Flora and AA Metabolism

被引:0
|
作者
Yang, Limei [1 ]
Wang, Yiting [1 ]
Li, Xuan [1 ]
Chen, Yonger [2 ]
Liang, Jian [1 ]
He, Lian [3 ]
Jiang, Dongxu [1 ]
Huang, Song [1 ]
Hou, Shaozhen [1 ]
机构
[1] Guangzhou Univ Chinese Med, Sch Pharmaceut Sci, Guangzhou 510006, Guangdong, Peoples R China
[2] Guangzhou Med Univ, Sino French Hoffmann Inst, Sch Basic Med Sci, State Key Lab Resp Dis, Guangzhou 511436, Guangdong, Peoples R China
[3] Guangzhou Huashang Coll, Guangzhou 510006, Guangdong, Peoples R China
关键词
ulcerative colitis; fishcollagen peptide; intestinal barrier; hydrophobic amino acids; gut flora; INFLAMMATORY-BOWEL-DISEASE; MICROBIOME; MILD;
D O I
10.1021/acs.jafc.4c07217
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The incidence of ulcerative colitis (UC) is increasing annually, but treatment option is limited. Fish collagen peptide (FCP) is a food source collagen peptide that has shown promise in alleviating UC symptoms. However, its impact on the intestinal barrier and intestinal metabolic homeostasis in UC remains unclear. This study aimed to analyze the peptide sequences and absolute amino acid (AA) content of FCP, assessing its effects on UC in mice induced by dextran sulfate sodium (DSS). FCP was examined by liquid chromatography and tandem mass spectrometry (LC-MS/MS) analysis. The 3% DSS was utilized to induce UC in murine models, followed by the assessment of the therapeutic efficacy of FCP. Clinical manifestations of UC mice were meticulously evaluated and scored. Subsequently, samples were procured for histological examination and intestinal epithelial barrier integrity analysis as well as macrogenomic and metabolomic profiling. Here, it shows that abundant peptide sequences and AAs were in FCP, particularly enriched in hydrophobic AAs (HAAs). Furthermore, it was observed that FCP effectively reversed colon shortening and reduced the extent of histological damage. Additionally, FCP suppressed the abnormal expression of inflammatory factors and intestinal barrier proteins and modulated the dysbiosis of gut microbiota toward a balanced state. These alterations led to the activation of intestinal alkaline AA and various AA metabolisms, ultimately contributing to the mitigation of UC symptoms. In summary, the diverse peptide sequences and high AAs in FCP, particularly rich in HAAs, can alleviate DSS-induced UC via preserving intestinal barrier integrity, regulating gut microbiota, and modulating AA metabolism.
引用
收藏
页码:25690 / 25703
页数:14
相关论文
共 50 条
  • [41] Possibility of alleviating dextran sulfate sodium-induced colitis in mice by modulate intestinal barrier function and gut microbiota with laminarin acetyl esters
    Cheong, Kit-Leong
    Sabir, Amanullah
    Veeraperumal, Suresh
    Quero, Franck
    Li, Rui
    Zhao, Qiaoli
    Tan, Karsoon
    Zhong, Saiyi
    Veerabagu, Udayakumar
    CARBOHYDRATE POLYMER TECHNOLOGIES AND APPLICATIONS, 2025, 9
  • [42] Ilex rotunda Thunb Protects Against Dextran Sulfate Sodium-Induced Ulcerative Colitis in Mice by Restoring the Intestinal Mucosal Barrier and Modulating the Oncostatin M/Oncostatin M Receptor Pathway
    Li, Yao
    Yang, Xu
    Yuan, Jia-ni
    Lin, Rui
    Tian, Yun-yuan
    Li, Yu-xin
    Zhang, Yan
    Wang, Xu-fang
    Xie, Yan-hua
    Wang, Si-wang
    Zheng, Xiao-hui
    FRONTIERS IN PHARMACOLOGY, 2022, 13
  • [43] Carthamin yellow alleviates dextran sodium sulfate-induced ulcerative colitis by repairing the intestinal barrier and activating the Nrf2/GPX4 axis
    Bian, Wenchao
    Wei, Lili
    Wang, Kexin
    INTERNATIONAL IMMUNOPHARMACOLOGY, 2024, 141
  • [44] Fermented Pueraria Lobata extract ameliorates dextran sulfate sodium-induced colitis by reducing pro-inflammatory cytokines and recovering intestinal barrier function
    Choi S.
    Woo J.-K.
    Jang Y.-S.
    Kang J.-H.
    Jang J.-E.
    Yi T.-H.
    Park S.-Y.
    Kim S.-Y.
    Yoon Y.-S.
    Oh S.H.
    Laboratory Animal Research, 2016, 32 (3) : 151 - 159
  • [45] Taraxasterol Acetate From Taraxacum officinale Ameliorates Dextran Sulfate Sodium-Induced Ulcerative Colitis in Mice in Association With Changes of the Metabolism and Structure of Gut Microbiota
    Jin, Li
    Li, Man
    He, Beihui
    Li, Liqin
    Liu, Yingchao
    Zhang, Jizhou
    Wang, Biao
    Sun, Chengtao
    Kai, Guoyin
    FOOD FRONTIERS, 2024,
  • [46] Fermented Astragalus and its metabolites regulate inflammatory status and gut microbiota to repair intestinal barrier damage in dextran sulfate sodium-induced ulcerative colitis
    Li, Junxiang
    Ma, Yingchun
    Li, Xiaofeng
    Wang, Yafei
    Huo, Zeqi
    Lin, Yang
    Li, Jiaru
    Yang, Hui
    Zhang, Zhiming
    Yang, Pingrong
    Zhang, Chunjiang
    FRONTIERS IN NUTRITION, 2022, 9
  • [47] Fucoidan alleviated dextran sulfate sodium-induced ulcerative colitis with improved intestinal barrier, reshaped gut microbiota composition, and promoted autophagy in male C57BL/6 mice
    Li, Shilan
    Qian, Qingfan
    Yang, Hao
    Wu, Zhengli
    Xie, Yisha
    Yin, Yan
    Cui, Yuan
    Li, Xinli
    NUTRITION RESEARCH, 2024, 122 : 1 - 18
  • [48] Anthocyanin Extracted from Purple Sweet Potato Alleviates Dextran Sulfate Sodium-Induced Colitis in Mice by Suppressing Pyroptosis and Altering Intestinal Flora Structure
    Chen, Jing
    Jiang, Fei
    Xu, Nana
    Dong, Guokai
    Jiang, Jiebang
    Wang, Meng
    Li, Cong
    Li, Rongpeng
    JOURNAL OF MEDICINAL FOOD, 2024, 27 (02) : 110 - 122
  • [49] Dietary Taxifolin Protects Against Dextran Sulfate Sodium-Induced Colitis via NF-κB Signaling, Enhancing Intestinal Barrier and Modulating Gut Microbiota
    Hou, Jinxiu
    Hu, Mingyang
    Zhang, Le
    Gao, Ya
    Ma, Libao
    Xu, Qingbiao
    FRONTIERS IN IMMUNOLOGY, 2021, 11
  • [50] Quinoa bran soluble dietary fiber ameliorates dextran sodium sulfate induced ulcerative colitis in BALB/c mice by maintaining intestinal barrier function and modulating gut microbiota
    Liu, Jie
    Wang, Zongwei
    Mai, Peishi
    Hao, Yiming
    Wang, Ziyuan
    Wang, Jing
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 216 : 75 - 85