Fodor András, Vellai Tibor, Hess Claudia, Makrai László, Dublecz Károly, Pál László, Molnár Andor, Klein Michael G, Tarasco Eustachio, Józsa Sándor, Ganas Petra, Hess Michael
Department of Genetics, Eötvös Loránd University, Pázmány P. Sétány 1C, H-1117 Budapest, Hungary.
Clinic for Poultry and Fish Medicine, Department for Farm Animals and Veterinary Public Health, University of Veterinary Medicine (Vetmeduni Vienna), 1210 Vienna, Austria.
Pathogens. 2023 Mar 14;12(3):458. doi: 10.3390/pathogens12030458.
Entomopathogenic bacteria are obligate symbionts of entomopathogenic nematode (EPN) species. These bacteria biosynthesize and release non-ribosomal-templated hybrid peptides (NR-AMPs), with strong, and large-spectral antimicrobial potential, capable of inactivating pathogens belonging to different prokaryote, and eukaryote taxa. The cell-free conditioned culture media (CFCM) of and efficiently inactivate poultry pathogens like , , and . To learn whether a bio-preparation containing antimicrobial peptides of origin with accompanying (in vitro detectable) cytotoxic effects could be considered a safely applicable preventive feed supplement, we conducted a 42-day feeding experiment on freshly hatched broiler cockerels. XENOFOOD (containing autoclaved , and cultures developed on chicken food) were consumed by the birds. The XENOFOOD exerted detectable gastrointestinal (GI) activity (reducing the numbers of the colony-forming units in the lower jejunum. No animal was lost in the experiment. Neither the body weight, growth rate, feed-conversion ratio, nor organ-weight data differed between the control (C) and treated (T) groups, indicating that the XENOFOOD diet did not result in any detectable adverse effects. We suppose that the parameters indicating a moderate enlargement of bursas of Fabricius (average weight, size, and individual bursa/spleen weight-ratios) in the XENOFOOD-fed group must be an indirect indication that the bursa-controlled humoral immune system neutralized the cytotoxic ingredients of the XENOFOOD in the blood, not allowing to reach their critical cytotoxic concentration in the sensitive tissues.
昆虫病原细菌是昆虫病原线虫(EPN)物种的专性共生体。这些细菌生物合成并释放非核糖体模板化杂合肽(NR-AMPs),具有强大且广谱的抗菌潜力,能够使属于不同原核生物和真核生物类群的病原体失活。[两种细菌名称]的无细胞条件培养基(CFCM)能有效灭活诸如[三种家禽病原体名称]等家禽病原体。为了了解一种含有源自[细菌名称]的抗菌肽且伴有(体外可检测到的)细胞毒性作用的生物制剂是否可被视为一种安全适用的预防性饲料添加剂,我们对刚孵化的肉用小公鸡进行了为期42天的饲养实验。鸡食用了XENOFOOD(含有在鸡饲料上培养的经高压灭菌的[两种细菌名称]培养物)。XENOFOOD表现出可检测到的胃肠道(GI)活性(降低了空肠下段的菌落形成单位数量)。实验中没有动物死亡。对照组(C)和处理组(T)之间的体重、生长速率、饲料转化率以及器官重量数据均无差异,这表明XENOFOOD饮食未产生任何可检测到的不良影响。我们推测,在喂食XENOFOOD的组中,表明法氏囊适度增大的参数(平均重量、大小以及单个法氏囊/脾脏重量比)必定间接表明,法氏囊控制的体液免疫系统中和了血液中XENOFOOD的细胞毒性成分,使其无法在敏感组织中达到临界细胞毒性浓度。