Immune-modulatory Properties of the Octapeptide NAP in Campylobacter jejuni Infected Mice Suffering from Acute Enterocolitis.
Markus M HeimesaatSoraya MousaviSigri KløveClaudia GengerDennis WeschkaEliezer GiladiStefan BereswillIllana GozesPublished in: Microorganisms (2020)
Human infections with the food-borne zoonotic pathogen Campylobacter jejuni are progressively rising and constitute serious global public health and socioeconomic burdens. Hence, application of compounds with disease-alleviating properties are required to combat campylobacteriosis and post-infectious sequelae. In our preclinical intervention study applying an acute C. jejuni induced enterocolitis model, we surveyed the anti-pathogenic and immune-modulatory effects of the octapeptide NAP which is well-known for its neuroprotective and anti-inflammatory properties. Therefore, secondary abiotic IL-10-/- mice were perorally infected with C. jejuni and intraperitoneally treated with synthetic NAP from day 2 until day 5 post-infection. NAP-treatment did not affect gastrointestinal C. jejuni colonization but could alleviate clinical signs of infection that was accompanied by less pronounced apoptosis of colonic epithelial cells and enhancement of cell regenerative measures on day 6 post-infection. Moreover, NAP-treatment resulted in less distinct innate and adaptive pro-inflammatory immune responses that were not restricted to the intestinal tract but could also be observed in extra-intestinal and even systemic compartments. NAP-treatment further resulted in less frequent translocation of viable pathogens from the intestinal tract to extra-intestinal including systemic tissue sites. For the first time, we here provide evidence that NAP application constitutes a promising option to combat acute campylobacteriosis.
Keyphrases
- immune response
- public health
- liver failure
- drug induced
- stem cells
- randomized controlled trial
- anti inflammatory
- oxidative stress
- respiratory failure
- endothelial cells
- type diabetes
- cell death
- hepatitis b virus
- endoplasmic reticulum stress
- combination therapy
- signaling pathway
- cystic fibrosis
- dendritic cells
- intensive care unit
- brain injury
- human health
- smoking cessation
- bone marrow
- gram negative