首页> 外文期刊>Journal of applied microbiology >Essential oils inhibit the bovine respiratory pathogens Mannheimia haemolytica, Pasteurella multocida and Histophilus somni and have limited effects on commensal bacteria and turbinate cells in vitro
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Essential oils inhibit the bovine respiratory pathogens Mannheimia haemolytica, Pasteurella multocida and Histophilus somni and have limited effects on commensal bacteria and turbinate cells in vitro

机译:精油抑制牛呼吸道病原体曼海姆血醇菌,巴氏菌菌,多焦和组织索米菌,对体外的共生细菌和鼻甲细胞产生有限的影响

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Aims The objective of this study was to determine antimicrobial activities of essential oils (EOs) against bovine respiratory disease (BRD) pathogens and nasopharyngeal commensal bacteria, as well as cytotoxicity in bovine turbinate (BT) cells in vitro. Methods and Results The chemical composition of 16 EOs was determined using gas chromatography-mass spectrometry. All EOs were first evaluated for growth inhibition of a single BRD pathogen Mannheimia haemolytica serotype 1 strain (L024A). The most inhibitory EOs (n = 6) were then tested for antimicrobial activity against multidrug-resistant strains of M. haemolytica (serotypes 1, 2 and 6); the BRD pathogens Pasteurella multocida and Histophilus somni, as well as commensal bacteria that were isolated from the nasopharynx of feedlot cattle. The cytotoxicity of 10 EOs was also evaluated using a BT cell line. The EOs ajowan, thyme and fennel most effectively inhibited all BRD pathogens tested including multidrug-resistant strains with minimum inhibitory concentrations (MIC) of = 0 center dot 025% (volume/volume, v/v). For these EOs, the MIC was 2-32 fold greater against commensal bacteria, compared to BRD-associated pathogens. No cytotoxic effects of EOs against BT cells were observed within the tested range of concentrations (0 center dot 0125-0 center dot 4%, v/v). Conclusions The EOs ajowan, thyme and fennel inhibited M. haemolytica, P. multocida and H. somni at a concentration of 0 center dot 025% and had minimal antimicrobial activity against nasopharyngeal commensal bacteria and cytotoxicity against BT cells. Significance and Impact of the Study This study demonstrated that EOs may have potential for intra-nasal administration to mitigate bovine respiratory pathogens in feedlot cattle.
机译:旨在本研究的目的是确定对牛呼吸道疾病(BRD)病原体和鼻咽癌的抗菌活性(EOS),以及体外牛鼻甲(BT)细胞的细胞毒性。方法和结果使用气相色谱 - 质谱法测定16 eos的化学组成。首先评估所有EOS的单一BRD病原体Mannheimia血醇型血清型1株(L024A)的生长抑制。然后测试最多的抑制EOS(n = 6),用于针对M. haemolytica的多药抗性菌株(血清型1,2和6)的抗微生物活性; BRD病原体Vigeteurella Multocida和组织Somni,以及从饲料牛的鼻咽中分离的共生细菌。还使用BT细胞系评估10 eOS的细胞毒性。 EOS Ajowan,百里香和茴香最有效地抑制了测试的所有BRD病原体,包括具有最小抑制浓度(MIC)的多药抗性菌株(MIC)025%(体积/体积,v / v)。对于这些EOS,与BRD相关病原体相比,麦克风与共生细菌相比,麦克风较大2-32倍。在测试的浓度范围内观察到EOS对BT细胞的细胞毒性效应(0中心点0125-0中心点4%,v / v)。结论EOSαjowan,百里香和茴香抑制M. haemolytica,p. multocada和H. somni以0中心点025%的浓度,对鼻咽癌的抗微生物活性最小,对Bt细胞进行细胞毒性。该研究的意义和影响本研究表明,EOS可能具有鼻内给药的潜力,以减轻饲料牛的牛呼吸道原理。

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