首页> 美国卫生研究院文献>other >Improved Culture Medium (TiKa) for Mycobacterium avium Subspecies Paratuberculosis (MAP) Matches qPCR Sensitivity and Reveals Significant Proportions of Non-viable MAP in Lymphoid Tissue of Vaccinated MAP Challenged Animals
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Improved Culture Medium (TiKa) for Mycobacterium avium Subspecies Paratuberculosis (MAP) Matches qPCR Sensitivity and Reveals Significant Proportions of Non-viable MAP in Lymphoid Tissue of Vaccinated MAP Challenged Animals

机译:改良的鸟分枝杆菌副结核分枝杆菌(MAP)的培养基(TiKa)与qPCR敏感性匹配揭示了接种疫苗的MAP挑战动物的淋巴组织中无效MAP的显着比例

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摘要

The quantitative detection of viable pathogen load is an important tool in determining the degree of infection in animals and contamination of foodstuffs. Current conventional culture methods are limited in their ability to determine these levels in Mycobacterium avium subspecies paratuberculosis (MAP) due to slow growth, clumping and low recoverability issues. The principle goal of this study was to evaluate a novel culturing process (TiKa) with unique ability to stimulate MAP growth from low sample loads and dilutions. We demonstrate it was able to stimulate a mean 29-fold increase in recoverability and an improved sensitivity of up to three logs when compared with conventional culture. Using TiKa culture, MAP clumping was minimal and produced visible colonies in half the time required by standard culture methods. Parallel quantitative evaluation of the TiKa culture approach and qPCR on MAP loads in tissue and gut mucosal samples from a MAP vaccine-challenge study, showed good correlations between colony counts (cfu) and qPCR derived genome equivalents (Geq) over a large range of loads with a 30% greater sensitivity for TiKa culture approach at low loads (two logs). Furthermore, the relative fold changes in Geq and cfu from the TiKa culture approach suggests that non-mucosal tissue loads from MAP infected animals contained a reduced proportion of non-viable MAP (mean 19-fold) which was reduced significantly further (mean 190-fold) in vaccinated “reactor” calves. This study shows TiKa culture equates well with qPCR and provides important evidence that accuracy in estimating viable MAP load using DNA tests alone may vary significantly between samples of mucosal and lymphatic origin.
机译:活病原体负载的定量检测是确定动物感染程度和食品污染程度的重要工具。由于缓慢的生长,结块和低的可回收性问题,当前常规的培养方法在确定鸟分枝杆菌亚种副结核病(MAP)中这些水平的能力受到限制。这项研究的主要目标是评估一种新颖的培养过程(TiKa),该过程具有独特的能力,可通过低样品量和稀释刺激MAP的生长。我们证明,与常规培养相比,它能够刺激平均回收率提高29倍,并提高灵敏度,最高可达3个对数。使用TiKa培养物时,MAP团块最小,并且在标准培养方法所需时间的一半时间内产生可见菌落。平行定量评估TiKa培养方法和qPCR对来自MAP疫苗挑战研究的组织和肠粘膜样品中MAP的负载量,表明在较大负载量下菌落计数(cfu)与qPCR衍生的基因组当量(Geq)之间具有良好的相关性在低负荷(两个对数)下对TiKa培养方法的灵敏度提高了30%。此外,通过TiKa培养方法获得的Geq和cfu的相对倍数变化表明,来自MAP感染动物的非粘膜组织负荷中非存活MAP的比例降低(平均19倍),而该比例进一步降低(平均190-190倍)接种“反应器”犊牛。这项研究表明,TiKa培养物与qPCR非常吻合,并提供了重要的证据,证明仅使用DNA测试估算黏膜和淋巴来源样品的可行MAP负荷的准确性可能会发生显着变化。

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