首页> 外文期刊>Veterinary Microbiology >Defective bacterial clearance is responsible for the enhanced lung pathology characteristic of Mannheimia haemolytica pneumonia in bighorn sheep.
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Defective bacterial clearance is responsible for the enhanced lung pathology characteristic of Mannheimia haemolytica pneumonia in bighorn sheep.

机译:细菌清除缺陷导致大角羊溶血曼海姆氏菌>肺炎的肺部病理特征增强。

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The molecular and cellular basis for the enhanced lung pathology and mortality caused by Mannheimia haemolytica in bighorn sheep (BHS, Ovis canadenesis), in comparison to domestic sheep (DS, Ovis aries), is not clear. Polymorphonuclear leukocytes (PMNs) of BHS are four- to eight-fold more susceptible to M. haemolytica leukotoxin-induced cytolysis, which is likely to reduce the number of functional phagocytes in the lung. We hypothesized that enhanced lung pathology is due to defective clearance of M. haemolytica from the lungs of BHS. To test this hypothesis, M. haemolytica (1x107 colony forming units [cfu]) were inoculated intra-tracheally into three groups each of BHS and DS, which were euthanized and necropsied at 4, 12, and 18 h post-inoculation (hpi). Bacterial and leukocyte counts were performed on broncho-alveolar lavage fluid (BALF) collected at necropsy. BALF from BHS euthanized at 4 and 12 hpi contained a significantly higher number of M. haemolytica than that from DS. More importantly, DS did not have any bacteria in BALF at 18 hpi, while the BHS still had significant numbers. As expected, the BHS did exhibit more extensive lung lesions at 12 and 18 hpi when compared to DS. At 18 hpi, necrotic PMNs were observed in the lesional lung tissues of BHS, but not DS. Furthermore, BALF from BHS had significantly lower titers of antibodies to Lkt and surface antigens of M. haemolytica, than that of DS. These findings suggest that the enhanced pathology in BHS lungs is due to defective clearance of M. haemolytica from the lungs.Digital Object Identifier http://dx.doi.org/10.1016/j.vetmic.2011.06.008
机译:与家养绵羊(DS,)相比,大角羊(BHS, canadenesis )中溶血曼海姆氏菌引起的肺病理学和死亡率提高的分子和细胞基础> Ovis aries ),尚不清楚。 BHS的多形核白细胞(PMN)对M的敏感性高四到八倍。溶血性白细胞毒素引起的细胞溶解,这可能会减少肺中功能性吞噬细胞的数量。我们假设增强的肺部病理是由于M清除缺陷所致。 BHS肺部的溶血性出血。为了检验该假设,M。气管内将溶血性溶血性杆菌(1x10 7 菌落形成单位[cfu])分为三组,分别分为BHS组和DS组,分别在术后4、12和18 h安乐死并进行尸检-接种(hpi)。尸检时对支气管肺泡灌洗液(BALF)进行细菌和白细胞计数。在4和12 hpi安乐死的来自BHS的BALF含有显着更高的M。 haemolytica 比DS中的要好。更重要的是,DS在18 hpi时BALF中没有任何细菌,而BHS仍然有大量细菌。如预期的那样,与DS相比,BHS在12和18 hpi时确实表现出更广泛的肺部病变。在18 hpi时,在BHS的病变肺组织中观察到了坏死的PMN,而在DS则没有。此外,来自BHS的BALF的Lkt抗体和M的表面抗原的滴度明显较低。溶血的,而不是DS的溶血的。这些发现表明,BHS肺部病理的增强是由于 M清除缺陷所致。来自肺部的溶血性。数字对象标识符http://dx.doi.org/10.1016/j.vetmic.2011.06.008

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