Skip to main navigation Skip to search Skip to main content

Study on Metabolomic Mechanism of Spaceflight-Carried Bacillus licheniformis in Alleviating Colitis in Mice

  • Yujuan Li
  • , Xianda Qiu
  • , Shuyan Shen
  • , Lingying Liu
  • , Zhiheng Yu
  • , Chunxing Li
  • , Hua Liu*
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • Aerospace Center Hospital

Research output: Contribution to journalArticlepeer-review

Abstract

To investigate the protective mechanism of bacillus licheniformis (BL) carried aboard Shenzhou-15 manned spacecraft for six months of spaceflight against dextran sulfate sodium (DSS)-induced ulcerative colitis in mice, mice were divided into a control group (CON), a DSS model group (DSS), a DSS + ground-based bacteria group (G-BL), a DSS + spaceflight bacteria group (6M-BL), and a mesalazine positive drug group (POS). Colonic H&E staining, expression detection of barrier proteins ZO-1, Occludin, and E-cadherin, and plasma metabolomic analysis were performed. The results showed that compared with the DSS group, 6M-BL significantly alleviated colonic histopathological damage, with a 58.6% decrease in pathological score, superior to the 44.8% decrease in the G-BL group. Meanwhile, the expression levels of ZO-1, Occludin, and E-cadherin were significantly upregulated by 106.8%, 133.1%, and 138.6%, respectively. Metabolomic analysis revealed that 6M-BL improved DSS-induced metabolic abnormalities, mainly involving taurine and hypotaurine metabolism, primary bile acid biosynthesis, and butyrate metabolism pathways. Compared with G-BL, 6M-BL more significantly elevated the levels of protective metabolites such as taurine, sinapic acid, and 3-(4-hydroxyphenyl) propionic acid, while reducing the levels of inflammation-related metabolites such as β-muricholic acid and xanthurenic acid. These findings suggest that 6M-BL may promote intestinal barrier repair by regulating the above pathways to synergistically inhibit inflammatory responses, thereby exerting an intervention effect on colitis.

Translated title of the contribution航天搭载地衣芽孢杆菌缓解小鼠结肠炎的代谢组学机制研究
Original languageEnglish
JournalBeijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology
Volume46
Issue number8
DOIs
Publication statusPublished - 2026
Externally publishedYes

Keywords

  • bacillus licheniformis
  • metabolomics
  • spaceflight
  • tight junction proteins
  • ulcerative colitis

Fingerprint

Dive into the research topics of 'Study on Metabolomic Mechanism of Spaceflight-Carried Bacillus licheniformis in Alleviating Colitis in Mice'. Together they form a unique fingerprint.

Cite this