The antimicrobial metabolite nisin Z reduces intestinal tumorigenesis and modulates the cecal microbiome in ApcMin/+ mice
Hamidi Nia, L.; Alqudah, S.; Markley, R. L.; DeLucia, B.; Bobba, V.; Elmallah, J.; Nemet, I.; Sangwan, N.; Claesen, J.
Show abstract
Nisin Z, an antimicrobial metabolite produced by Lactococcus lactis spp., has been safely used as a food preservative for many years. Nisin Z also showed promising activity against various cancer types in vitro, and significantly reduced tumor size in an ectopic head and neck cancer model. Here, we investigate the activity of nisin Z for colorectal cancer treatment and observed an in vitro reduction in cellular proliferation, and a moderate enhancement in cell death. We next analyzed the effect of oral nisin Z administration in the Apcmin/+ intestinal adenoma mouse model. We measured tumor burden along the gastrointestinal tract and observed a decrease in tumor burden in the middle region of the small intestine, but not in the lower region or colon. Since tumor progression in the Apcmin/+ model is exacerbated by an inflammatory environment, we next determined whether nisin Z impacts this in a direct or indirect manner. We show that nisin Z can directly reduce NF-{kappa}B activation in a dose-dependent manner. In addition, nisin Z impacted the cecal microbiome composition as well as microbiota-associated plasma metabolites, causing an overall shift towards a more health-associated profile. Interestingly, the Apcmin/+ genotype differentially impacted the nisin Z-mediated differences in cecal microbiome composition and plasma metabolites compared to wildtype animals. In summary, our data suggest that the reduction in small intestinal tumor burden could be due to nisin Zs contribution to a reduced pro-inflammatory environment. Future studies will reveal whether nisins localized effect is due to degradation of the peptidic compound in more distal regions of the gastrointestinal tract and focus on development of delivery systems to increase efficacy. ImportanceWith the increased incidence of colorectal cancer, especially among younger individuals, it is critical to study approaches that help with the prevention and treatment of this debilitating disease. Our study indicates that nisin Z, a bacterially produced peptide antibiotic, decreases the growth of colorectal cancer cells and moderately increases cell death in vitro. Oral administration of nisin Z in an intestinal adenoma mouse model revealed a reduction of tumor burden in the middle region of the small intestine. This decreased tumor burden might in part be attributed to a direct anti-inflammatory effect, as well as an indirect effect on the gut microbiota and their metabolites due to nisin Zs antibacterial activity. Overall, we demonstrate a potential activity for nisin Z in the prevention or amelioration of inflammation-associated colorectal cancer, underscoring the significance of investigating the properties of bacterial natural products in human health.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Human gut commensal Alistipes timonensis modulates the host lipidome and delivers anti-inflammatory outer membrane vesicles to suppress colitis in an Il10-deficient mouse model 96%
- Deprivation of dietary fiber in specific-pathogen-free mice promotes susceptibility to the intestinal mucosal pathogen Citrobacter rodentium 96%
- Fatty acids produced by the gut microbiota dampen host inflammatory responses by modulating intestinal SUMOylation 96%
Similar papers in this journal
- Tissue-wide metabolomics reveals wide impact of gut microbiota on mice metabolite composition 95%
- Multiple nutritional and gut microbial factors associated with allergic rhinitis: the Hitachi Health Study 95%
- Sex-Dependent Responses in Mice to Indomethacin-Induced Injury and Gut Microbiome-Targeted Alleviation 94%
Similar papers in this journal
- Analysis of human colostrum reveals differential co-occurrence networks of metabolites, microbiota, and cytokines in maternal obesity 94%
- Dietary protein from different sources escapes host digestion and is differentially modified by gut microbiota 94%
- Digestion, fermentation, and pathogen anti-adhesive properties of the hMO-mimic di-fucosyl-β-cyclodextrin 94%
Similar papers in this journal
- Impact of formate supplementation on body weight and plasma amino acids 96%
- Multi-strain fermented milk promotes gut microbiota recovery after Helicobacter pylori therapy: a randomised, controlled trial 95%
- Effect of a novel food rich in miraculin on the intestinal microbiome of malnourished patients with cancer and dysgeusia 94%
Similar papers in this journal
- Dietary fat promotes antibiotic-induced Clostridioides difficile mortality in mice 96%
- Short-term supplementation of celecoxib shifted butyrate production and ameliorated inflammation on a simulated model of the gut microbial ecosystem 95%
- Distinct Colon Mucosa Microbiomes associated with Tubular Adenomas and Serrated Polyps 94%
"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.