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Pseudomonas aeruginosa Volatilome Characteristics and Adaptations in Chronic Cystic Fibrosis Lung Infections

机译:铜绿假单胞菌铜绿假单胞菌的特征及其适应慢性囊性纤维化肺部感染

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Pseudomonas aeruginosa chronic lung infections in individuals with cystic fibrosis (CF) significantly reduce quality of life and increase morbidity and mortality. Tracking these infections is critical for monitoring patient health and informing treatments. We are working toward the development of novel breath-based biomarkers to track chronic P. aeruginosa lung infections in situ . Using comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry (GC×GC–TOF-MS), we characterized the in vitro volatile metabolomes (“volatilomes”) of 81 P. aeruginosa isolates collected from 17 CF patients over at least a 5-year period of their chronic lung infections. We detected 539 volatiles produced by the P. aeruginosa isolates, 69 of which were core volatiles that were highly conserved. We found that each early infection isolate has a unique volatilome, and as infection progresses, the volatilomes of isolates from the same patient become increasingly dissimilar, to the point that these intrapatient isolates are no more similar to one another than to isolates from other patients. We observed that the size and chemical diversity of P. aeruginosa volatilomes do not change over the course of chronic infections; however, the relative abundances of core hydrocarbons, alcohols, and aldehydes do change and are correlated with changes in phenotypes associated with chronic infections. This study indicates that it may be feasible to track P. aeruginosa chronic lung infections by measuring changes to the infection volatilome and lays the groundwork for exploring the translatability of this approach to direct measurement using patient breath. IMPORTANCE Pseudomonas aeruginosa is a leading cause of chronic lung infections in cystic fibrosis (CF), which are correlated with lung function decline. Significant clinical efforts are therefore aimed at detecting infections and tracking them for phenotypic changes, such as mucoidy and antibiotic resistance. Both the detection and tracking of lung infections rely on sputum cultures, but due to improvements in CF therapies, sputum production is declining, although risks for lung infections persist. Therefore, we are working toward the development of breath-based diagnostics for CF lung infections. In this study, we characterized of the volatile metabolomes of 81 P. aeruginosa clinical isolates collected from 17 CF patients over a duration of at least 5 years of a chronic lung infection. We found that the volatilome of P. aeruginosa adapts over time and is correlated with infection phenotype changes, suggesting that it may be possible to track chronic CF lung infections with a breath test.
机译:在假单胞菌囊性纤维化个人铜绿假单胞菌慢性肺部感染(CF)显著降低寿命,增加发病率和死亡率的质量。跟踪这些感染是监测病人的健康和治疗告知的关键。我们对新的呼吸为基础的生物标志物的开发工作进行跟踪原位慢性绿脓杆菌肺部感染。使用加上时间飞行质谱(GC×GC-TOF-MS)全二维气相色谱,我们的特点81铜绿假单胞菌的体外挥发性代谢组(“volatilomes”)在从17名CF患者分离株收集至少5年的时间他们的慢性肺部感染。我们检测由铜绿假单胞菌菌株,其中69都是该高度保守核心挥发产生539分的挥发物。我们发现,每个早期感染菌株具有独特的volatilome和感染的进行,来自同一患者分离的volatilomes变得越来越不一样,到如此地步,这些intrapatient菌株并不比来自其他患者分离更彼此相似。我们观察到,大小和铜绿假单胞菌volatilomes的化学多样性并不在慢性感染过程中发生变化;然而,核心烃,醇,醛的相对丰度做变化,并与慢性感染相关的表型的变化是相关的。这项研究表明,它可通过测量变为感染volatilome跟踪铜绿假单胞菌慢性肺部感染可行和奠定了基础使用患者呼吸探索了这种方法的译到直接测量。重要性绿脓杆菌是囊性纤维化(CF)慢性肺部感染,其与肺功能下降相关的一个主要原因。因此显著临床努力旨在检测感染和跟踪他们表型变化,如mucoidy和抗生素抗性。无论是检测和肺部感染的跟踪依靠痰培养,但由于CF疗法的改进,咳痰正在下降,尽管对于肺部感染的风险依然存在。因此,我们向为CF肺部感染呼吸为基础的诊断的开发工作。在这项研究中,我们的特点的从17名CF患者中收集到至少5年的慢性肺部感染的持续时间81个绿脓杆菌临床分离株的挥发性代谢组的。我们发现,铜绿假单胞菌适应随时间的volatilome并与感染的表型的变化相关,这表明它可能可以跟踪与呼气试验慢性CF肺部感染。

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