Orally surface engineered probiotic system for ulcerative colitis therapy via modulating gut microbiota and immune homeostasis
Liu, J.; Fang, Z.; Zhang, X.; Chen, Y.; Kou, F.; Li, X.; Huang, L.; Yang, H.; Zheng, Y.; Huang, Y.; Wang, Y.; Qiu, X.; Ge, J.; Qian, Y.; Xing, X.-H.; Zhang, C. Y.
Show abstract
Oral probiotics have emerged as a promising therapeutical strategy for effectively managing ulcerative colitis (UC) in the world. The existing researches successfully preserve probiotic viability in the upper gastrointestinal tract, but they fall short in achieving precise release profile and effective colonization of probiotics at the site of colitis in colon as well as the understanding of therapeutic mechanism with suboptimal efficacy. This constraint poses a significant barrier to rational design and effective development of oral probiotic system. Here, we fabricate an orally layered-by-layered probiotic (Escherichia coli Nissle 1917, EcN) system (so-called CML@EcN) based on carboxymethyl modified lignin (CML) which can significantly protect EcN in gastric and small intestinal microenvironment and efficiently control release EcN in colon. Interestingly, the release and proliferation process of EcN in the colon are detected and can be modeled as a plug-flow mode. We derive a mathematical expression that highly matches the experimental results, providing a theoretical basis for quantitatively calculation of the release process. Furthermore, CML@EcN significantly alleviates symptoms in dextran sulfate sodium (DSS)-induced UC mice by modulating the multiple organ immune disorder and gut microbiota (GM)/metabolites profile as well as reconstructing the colon barrier. Importantly, we explore the mechanism of immune homeostasis regulation via metabolism from GM. Moreover, the CML armour is excreted and would not influence the process. This work not only reports a novel oral therapeutic for UC treatment with high efficacy as well as the exploration of mechanism between GM and immune homeostasis, but also provides a general approach to engineer probiotics for oral administration.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Digestion, fermentation, and pathogen anti-adhesive properties of the hMO-mimic di-fucosyl-β-cyclodextrin 92%
- Loss of Diurnal Oscillatory Rhythms in Gut Microbiota Correlates with Progression of Atherosclerosis 91%
- Circulating (poly)phenol metabolites in the brain: unveiling in vitro and in vivo blood-brain barrier transport 90%
Similar papers in this journal
Similar papers in this journal
- Lactate dehydrogenases amplify reactive oxygen species in cancer cells in response to oxidative stimuli 90%
- SARS-CoV-2-Triggered Mast Cell Rapid Degranulation Induces Alveolar Epithelial Inflammation and Lung Injury 90%
- An ultrapotent RBD-targeted biparatopic nanobody neutralizes broad SARS-CoV-2 variants 90%
Similar papers in this journal
- Merging Multi-OMICs with Proteome Integral Solubility Alteration Unveils Antibiotic Mode of Action 94%
- Machine learning-assisted discovery of growth decision elements by relating bacterial population dynamics to environmental diversity 92%
- Improving PD-1 blockade plus chemotherapy for complete remission of lung cancer by nanoPDLIM2 92%
Similar papers in this journal
- Lyophilized mRNA-lipid nanoparticle vaccines with long-term stability and high antigenicity against SARS-CoV-2 93%
- CoVac501, a self-adjuvanting peptide vaccine conjugated with TLR7 agonists, against SARS-CoV-2 induces protective immunity 92%
- In vitro pancreatic islet cluster expansion facilitated by hormones and chemicals 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.