4.2 Article

Peptidomics Analysis Discloses That Novel Bioactive Peptides Participate in Necrotizing Enterocolitis in a Rat Model

期刊

BIOMED RESEARCH INTERNATIONAL
卷 2020, 期 -, 页码 -

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HINDAWI LTD
DOI: 10.1155/2020/4705149

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资金

  1. National Natural Science Foundation of China [81901517]
  2. Wuxi Key Medical Disciplines [ZDXK12, FZXK001]
  3. Medical Innovation Team of Jiangsu Province [CXTDB2017016]
  4. Wuxi Young Medical Talents [QNRC094, QNRC089]
  5. Wuxi Hospital Management Center Key Project [YGZXZ1513]
  6. Wuxi Hospital Management Center Joint Research Project [YGZXL1319]
  7. Young project of Wuxi health and Family Planning Commission [Q201815, Q201760, Q201604]
  8. Jiangsu maternal and child health research project [F201852]
  9. Wuxi Science and Technology Development Fund [N20192039, N20202003]
  10. Project of Wuxi health Commission [M202003]
  11. Wuxi Young and Middle-aged Medical Talents [BJ2020089]

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Necrotizing enterocolitis (NEC) is a common devastating gastrointestinal disease in premature infants, the molecular mechanisms of which have not been fully elucidated. Recently, endogenous peptides have garnered much attention owing to their role in diagnosis and treatment. However, changes in the peptide expression of NEC intestinal tissues remain poorly understood. In the present study, a comparative peptidomics profiling analysis was performed between NEC and control intestinal tissues via liquid chromatography-tandem mass spectrometry (LC-MS). In total, 103 upregulated and 73 downregulated peptides were identified in the intestinal tissues (fold change >= 1.5, p<0.05). Bioinformatics analysis revealed that these differentially expressed peptides were significantly associated with NEC pathophysiology, including apoptosis, the TGF-beta signaling pathway, the Wnt signaling pathway, and the MAPK signaling pathway. Furthermore, two putative peptides could inhibit apoptosis and promote the migration of intestinal epithelial cells induced by lipopolysaccharide; these peptides were derived from the protein domains MT1 and EZRI, respectively. In conclusion, our study revealed that endogenous peptides are involved in the pathophysiologic mechanism of NEC; nevertheless, further exploration is required in this regard.

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