Putative volatile biomarkers of bovine tuberculosis infection in breath, skin and feces of cattle

被引:0
作者
Mihai Brebu
Violeta Elena Simion
Viorel Andronie
Aylen Lisset Jaimes-Mogollón
Kelvin de Jesús Beleño-Sáenz
Florina Ionescu
Tesfalem Geremariam Welearegay
Raluca Suschinel
Jose Bruno de Lema
Radu Ionescu
机构
[1] “Petru Poni” Institute of Macromolecular Chemistry,Faculty of Veterinary Medicine
[2] Aleea Grigore Ghica Voda 41A,GISM Group, Faculty of Engineering and Architecture
[3] Spiru Haret University,Department of Mechatronics Engineering
[4] University of Pamplona,The Ångström Laboratory, Department of Materials Science and Engineering
[5] Universidad Autónoma del Caribe,Institute of Veterinary Medicine and Animal Sciences
[6] Uppsala University,undefined
[7] Estonian University of Life Sciences,undefined
[8] D Asociation,undefined
来源
Molecular and Cellular Biochemistry | 2023年 / 478卷
关键词
Bovine tuberculosis; Breath; Feces; Skin; GC-MS; Volatile biomarkers;
D O I
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中图分类号
学科分类号
摘要
Bovine tuberculosis (bTB) is an infectious disease with significant impact on animal health, public health and international trade. Standard bTB screening in live cattle consists in injecting tuberculin and measuring the swelling at the place of injection few days later. This procedure is expensive, time-consuming, logistically challenging, and is not conclusive before performing confirmatory tests and additional analysis. The analysis of the volatile organic compounds (VOCs) emitted by non-invasive biological samples can provide an alternative diagnostic approach suitable for bTB screening. In the present study, we analyzed VOC samples emitted through the breath, feces and skin of 18 cows diagnosed with bTB from three farms from Romania, as well as of 27 negative cows for bTB from the same farms. Analytical studies employing gas chromatography coupled to mass spectrometry revealed 80 VOCs emitted through the breath, 200 VOCs released by feces, and 80 VOCs emitted through the skin. Statistical analysis of these compounds allowed the identification of 3 tentative breath VOC biomarkers (acetone; 4-methyldecane; D-limonene), 9 tentative feces VOC biomarkers (toluene; [(1,1-dimethylethyl)thio]acetic acid; alpha-thujene; camphene; phenol; o-cymene; 3-(1,1-dimethylethyl)-2,2,4,4-tetramethyl-3-pentanol; 2,5-dimethylhexane-2,5-dihydroperoxide; 2,4-di-tert-butylphenol), and 3 tentative skin VOC biomarkers (ammonia; 1-methoxy-2-propanol; toluene). The possible pathway of these volatile biomarkers is discussed.
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页码:2473 / 2480
页数:7
相关论文
共 104 条
[1]  
Palmer MV(2006)Advances in bovine tuberculosis diagnosis and pathogenesis: What policy makers need to know Vet Microbiol 112 181-190
[2]  
Waters WR(2006)Rapid identification of Mycobacterium tuberculosis infection Clin Microbiol Infect 12 34-36
[3]  
Richeldi L(2008)New approaches to tuberculosis surveillance in nonhuman primates ILAR J 49 170-178
[4]  
Lerche NW(2011)Systematic review of cost and cost-effectiveness of different TB-screening strategies BMC Health Serv Res 13 387-394
[5]  
Yee JAL(2006)Effects of different tuberculin skin-testing regimens on gamma interferon and antibody responses in cattle experimentally infected with Mycobacterium bovis Clin Vaccine Immunol 150 257-266
[6]  
Capuano SV(2011)The scent of disease: Volatile organic compounds of the human body related to disease and disorder J Biochem 171–172 588-594
[7]  
Flynn JL(2013)Detection of Alzheimer’s and Parkinson’s disease from exhaled breath using nanomaterial-based sensors Nanomedicine 9 e89280-323
[8]  
Nienhaus A(2012)Detection of volatile organic compounds in cattle naturally infected with Mycobacterium bovis Sensors Actuators B Chem 10 e0129740-74
[9]  
Schablon A(2014)A pilot study exploring the use of breath analysis to differentiate healthy cattle from cattle experimentally infected with Mycobacterium bovis PLoS ONE 88 317-475
[10]  
Costa J(2020)Evaluation of volatile organic compounds obtained from breath and feces to detect mycobacterium tuberculosis complex in wild boar (Sus scrofa) in Doñana National Park Spain Pathogens 119 71-39