Performance of three molecular methods for detection of Toxoplasma gondii in pork

Food and Waterborne Parasitology - Tập 14 - Trang e00038 - 2019
Nadja S. Bier1, Gereon Schares2, Annette Johne1, Annett Martin3, Karsten Nöckler1, Anne Mayer-Scholl1
1German Federal Institute for Risk Assessment (BfR), Department for Biological Safety, Berlin, Germany
2Friedrich-Loeffler-Institut, Federal Research Institute for Animal Health, Greifswald – Insel Riems, Germany
3German Federal Institute for Risk Assessment (BfR), Department for Exposure, Berlin, Germany

Tài liệu tham khảo

Anonymous, 2013 Broeders, 2014, Guidelines for validation of qualitative real-time PCR methods, Trends Food Sci. Technol., 37, 115, 10.1016/j.tifs.2014.03.008 Burrells, 2018, Detection and dissemination of Toxoplasma gondii in experimentally infected calves, a single test does not tell the whole story, Parasit. Vectors, 11, 45, 10.1186/s13071-018-2632-z Bustin, 2009, The MIQE guidelines: minimum information for publication of quantitative real-time PCR experiments, Clin. Chem., 55, 611, 10.1373/clinchem.2008.112797 BVL, 2016 Cook, 2000, Sources of Toxoplasma infection in pregnant women: European multicentre case-control study. European Research Network on Congenital Toxoplasmosis, BMJ, 321, 142, 10.1136/bmj.321.7254.142 Costa, 2012, Variation of B1 gene and AF146527 repeat element copy numbers according to Toxoplasma gondii strains assessed using real-time quantitative PCR, J. Clin. Microbiol., 50, 1452, 10.1128/JCM.06514-11 Dzib Paredes, 2016, Toxoplasma gondii in meat for human consumption – a brief review of the most described strategies for its detection and quantification Frentzel, 2018, Quantification and differentiation of Bacillus cereus group species in spices and herbs by real-time PCR, Food Control, 83, 99, 10.1016/j.foodcont.2016.11.028 Friedrich-Loeffler-Institut, 2018, Toxoplasma gondii, 14 Gomez-Samblas, 2015, Quantification and viability assays of Toxoplasma gondii in commercial “Serrano” ham samples using magnetic capture real-time qPCR and bioassay techniques, Food Microbiol., 46, 107, 10.1016/j.fm.2014.07.003 Herrmann, 2012 Herrmann, 2010, Atypical Toxoplasma gondii genotypes identified in oocysts shed by cats in Germany, Int. J. Parasitol., 40, 285, 10.1016/j.ijpara.2009.08.001 Homan, 2000, Identification of a 200- to 300-fold repetitive 529 bp DNA fragment in Toxoplasma gondii, and its use for diagnostic and quantitative PCR, Int. J. Parasitol., 30, 69, 10.1016/S0020-7519(99)00170-8 Hoorfar, 2003, Making internal amplification control mandatory for diagnostic PCR, J. Clin. Microbiol., 41, 5835, 10.1128/JCM.41.12.5835.2003 Kapperud, 1996, Risk factors for Toxoplasma gondii infection in pregnancy. Results of a prospective case-control study in Norway, Am. J. Epidemiol., 144, 405, 10.1093/oxfordjournals.aje.a008942 Kralik, 2017, A basic guide to real time PCR in microbial diagnostics: definitions, parameters, and everything, Front. Microbiol., 8, 10.3389/fmicb.2017.00108 Krücken, 2017, Small rodents as paratenic or intermediate hosts of carnivore parasites in Berlin, Germany, PLoS One, 12, 10.1371/journal.pone.0172829 Liu, 2015, Diagnosis of toxoplasmosis and typing of Toxoplasma gondii, Parasit. Vectors, 8, 292, 10.1186/s13071-015-0902-6 Mäde, 2008, A real-time PCR for detection of pathogenic Yersinia enterocolitica in food combined with an universal internal amplification control system, J. Verbr. Lebensm., 3, 141, 10.1007/s00003-008-0341-9 Opsteegh, 2010, Direct detection and genotyping of Toxoplasma gondii in meat samples using magnetic capture and PCR, Int. J. Food Microbiol., 139, 193, 10.1016/j.ijfoodmicro.2010.02.027 Opsteegh, 2016, vol. 13 Reischl, 2003, Comparison of two DNA targets for the diagnosis of Toxoplasmosis by real-time PCR using fluorescence resonance energy transfer hybridization probes, BMC Infect. Dis., 3, 7, 10.1186/1471-2334-3-7 Reynisson, 2006, Evaluation of probe chemistries and platforms to improve the detection limit of real-time PCR, J. Microbiol. Methods, 66, 206, 10.1016/j.mimet.2005.11.006 Robert-Gangneux, 2012, Epidemiology of and diagnostic strategies for toxoplasmosis, Clin. Microbiol. Rev., 25, 264, 10.1128/CMR.05013-11 Robert-Gangneux, 2017, Evaluation of toxoplasma ELITe MGB real-time PCR assay for diagnosis of toxoplasmosis, J. Clin. Microbiol., 55, 1369, 10.1128/JCM.02379-16 Scallan, 2015, An assessment of the human health impact of seven leading foodborne pathogens in the United States using disability adjusted life years, Epidemiol. Infect., 143, 2795, 10.1017/S0950268814003185 Schares, 2008, Occurrence of Toxoplasma gondii and Hammondia hammondi oocysts in the faeces of cats from Germany and other European countries, Vet. Parasitol., 152, 34, 10.1016/j.vetpar.2007.12.004 Schares, 2017, Chicken line-dependent mortality after experimental infection with three type IIxIII recombinant Toxoplasma gondii clones, Exp. Parasitol., 180, 101, 10.1016/j.exppara.2016.11.004 Schares, 2018, Toxoplasma gondii infections in chickens - performance of various antibody detection techniques in serum and meat juice relative to bioassay and DNA detection methods, Int. J. Parasitol., 48, 751, 10.1016/j.ijpara.2018.03.007 Sterkers, 2010, Multicentric comparative analytical performance study for molecular detection of low amounts of Toxoplasma gondii from simulated specimens, J. Clin. Microbiol., 48, 3216, 10.1128/JCM.02500-09 Talabani, 2009, Contributions of immunoblotting, real-time PCR, and the Goldmann-Witmer coefficient to diagnosis of atypical toxoplasmic retinochoroiditis, J. Clin. Microbiol., 47, 2131, 10.1128/JCM.00128-09 Tenter, 2000, Toxoplasma gondii: from animals to humans, Int. J. Parasitol., 30, 1217, 10.1016/S0020-7519(00)00124-7 WHO, 2015