首页> 外文期刊>Veterinary Microbiology >Role of the stress-associated chemicals norepinephrine, epinephrine and substance P in dispersal of Mannheimia haemolytica from biofilms
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Role of the stress-associated chemicals norepinephrine, epinephrine and substance P in dispersal of Mannheimia haemolytica from biofilms

机译:来自生物膜的曼海姆血醇分散在曼海姆血醇分散中的作用

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摘要

Bovine respiratory disease (BRD) is a major problem for the cattle industry that is triggered by various environmental stressors, pathogens and host responses. Mannheimia hemolytica, an important bacterial component of BRD, are present within the nasopharayngeal region of normal calves as commensal biofilm communities. However, following stress there are changes in the nasopharyngeal microenvironment that triggers the transition of the commensal M. haemolytica into a pulmonary pathogen. The factors responsible for this transition in-vivo are unknown. In this study we developed an in-vitro biofilm model and investigated the effect of three stress related compounds: norepinephrine (NE), epinephrine (E), and substance P (SP) on M. haemolytica biofilms. Biofilm formation was demonstrated for 3 bovine nasal isolates of M. haemolytica by growing them in basal culture media, basal media with additional glucose, and basal media with a reduced pH. Increased glucose enhanced biofilm biomass for 2/3 isolates, but acidic media did not increase biofilm biomass when compared to biofilm biomass in basal media. When the biofilm was exposed to NE, E and SP, there was a dispersal of the biofilm which was most effective with E, followed by NE, and SP being the least effective. Using high throughput scanning electron microscopy and confocal-imaging we confirmed our experimental data that treatment with NE, E and SP cause dispersion of M.haemolytica from biofilms.
机译:牛呼吸道疾病(BRD)是由各种环境压力源,病原体和宿主反应引发的牛行业的主要问题。 Mannheimia Hemolytica是BRD的重要细菌成分,存在于正常犊牛的鼻孔区域内,作为共生生物膜社区。然而,在应力之后存在鼻咽微环境的变化,其触发了共称的M. haemolytica的转变为肺病原体。负责这种过渡的因素是未知的。在这项研究中,我们开发了体外生物膜模型,并研究了三种应力相关化合物的作用:Norepinephrine(Ne),肾上腺素(E)和物质P(SP)对M. haemolytica Biofilms。通过在基础培养基中生长在基础培养基中,具有另外的葡萄糖的基础培养基,基础培养基和具有降低的pH的基底培养基,证明了Biofilm形成。增加葡萄糖增强的生物膜生物质2/3分离物,但与基础培养基中的生物膜生物质相比,酸性介质不会增加生物膜生物质。当生物膜暴露于Ne,E和SP时,生物膜的分散,最有效,其次是NE,SP是最不有效的。使用高通量扫描电子显微镜和共焦成像,我们确认了我们用Ne,E和SP处理的实验数据,导致M.Haemolytics从生物膜中分散。

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