Johnson Casey N, Kogut Michael H, Genovese Kenneth, He Haiqi, Kazemi Steve, Arsenault Ryan J
Department of Animal and Food Sciences, University of Delaware, Newark, DE 19716, USA.
Southern Plains Agricultural Research Center, USDA ARS, College Station, TX 77845, USA.
Microorganisms. 2019 Aug 17;7(8):268. doi: 10.3390/microorganisms7080268.
With the reemergence of poultry diseases such as necrotic enteritis following the restriction of in-feed antibiotics, the search for antibiotic alternatives has become critically important. Postbiotics are non-viable bacterial products or metabolic byproducts from probiotic microorganisms that have positive effects on the host or microbiota. These are a promising alternative to antibiotics. Here, we describe the mechanism of action of a postbiotic in the context of a () challenge model. By using performance measurements and a peptide array kinome analysis, we describe the kinotypes and signal transduction changes elicited by the postbiotic with and without challenge. The postbiotic improves lesion scores, counts and mortality compared to challenge groups without the postbiotic, and it improves weight gain in the most severely challenged birds. The postbiotic predominantly affects the innate immune response and appears immunomodulatory. In the context of infection, it reduces the proinflammatory responses and generates a homeostatic-like response. This postbiotic is a viable alternative to antibiotics to improve poultry health in the context of pathogen challenge.
随着饲料中抗生素受到限制后诸如坏死性肠炎等家禽疾病的再度出现,寻找抗生素替代品变得至关重要。后生元是益生菌微生物产生的无活性细菌产物或代谢副产物,对宿主或微生物群具有积极作用。这些是抗生素的一种有前景的替代品。在此,我们在()挑战模型的背景下描述一种后生元的作用机制。通过使用性能测量和肽阵列激酶组分析,我们描述了有无挑战情况下后生元引发的激酶型和信号转导变化。与没有后生元的挑战组相比,后生元改善了病变评分、()计数和死亡率,并且在受挑战最严重的禽类中提高了体重增加。后生元主要影响先天免疫反应,似乎具有免疫调节作用。在感染的情况下,它减少促炎反应并产生类似稳态的反应。在()病原体挑战的背景下,这种后生元是改善家禽健康的一种可行的抗生素替代品。