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Research Paper

Evidence of Mycobacterium tuberculosis complex bacteraemia in intradermal skin test positive cattle detected using phage-RPA

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Pages 779-788 | Received 06 Jan 2016, Accepted 15 May 2016, Published online: 10 Jun 2016

References

  • Crawshaw T. Wildlife hosts for Mycobacterium bovis. Vet Rec 2013; 173:164-5; PMID:23956289; http://dx.doi.org/10.1136/vr.f5053
  • Szmaragd C, Green LE, Medley GF, Browne WJ. Factors associated with herd restriction and de-restriction with bovine tuberculosis in British cattle herds. Prev Vet Med 2013; 111:31-41; PMID:23608481; http://dx.doi.org/10.1016/j.prevetmed.2013.03.005
  • Corner LAL, Gormley E, Pfeiffer DU. Primary isolation of Mycobacterium bovis from bovine tissues: Conditions for maximising the number of positive cultures. Vet Microbiol 2012; 156:162-71; PMID:22074859; http://dx.doi.org/10.1016/j.vetmic.2011.10.016
  • Ambrosio SR, de Deus Oliveira EM, Rodriguez CA, Ferreira Neto JS, Amaku M. Comparison of three decontamination methods for Mycobacterium bovis isolation. Braz J Microbiol 2008; 39:241-4; PMID:24031209; http://dx.doi.org/10.1590/S1517-83822008000200008
  • Kennedy HE, Welsh MD, Bryson DG, Cassidy JP, Forster FI, Howard CJ, Collins RA, Pollock JM. Modulation of immune responses to Mycobacterium bovis in cattle depleted of WC1(+) gamma delta T cells. Infect Immun 2002; 70:1488-500; PMID:11854237; http://dx.doi.org/10.1128/IAI.70.3.1488-1500.2002
  • Lepper AWD, Corner LA, Pearson CW. Serological Responses in Experimental Bovine Tuberculosis. Aust Vet J 1977; 53:301-5; PMID:336017; http://dx.doi.org/10.1111/j.1751-0813.1977.tb00236.x
  • Srivastava K, Chauhan DS, Gupta P, Singh HB, Sharma VD, Yadav VS, Sreekumaran  , Thakral SS, Dharamdheeran JS, Nigam P, et al. Isolation of Mycobacterium bovis and Mycobacterium tuberculosis from cattle of some farms in north India - Possible relevance in human health. Indian J Med Res 2008; 128:26-31; PMID:18820355
  • Rees CR, Botsaris G. The Use of Phage for Detection, Antibiotic Sensitivity Testing and Enumeration. In: Understanding Tuberculosis - Global Experiences and Innovative Approaches to the Diagnosis; Cardona P. J, ed; InTech: Rijeka, 2012; pp. 293-306.
  • Albert H, Trollip A, Seaman I, Mole RJ. Simple, phage-based (FASTPlaque) technology to determine rifampicin resistance of Mycobacterium tuberculosis directly from sputum. Int J Tuberc Lung Dis 2004; 8:1114-9; PMID:15455597
  • Swift BM, Gerrard ZE, Huxley JN, Rees CE. Factors Affecting Phage D29 Infection: A Tool to Investigate Different Growth States of Mycobacteria. PLoS One 2014; 9:e106690; PMID:25184428; http://dx.doi.org/10.1371/journal.pone.0106690
  • Swift BM, Rees CE. Detecting mycobacteria in cattle blood. Veterinary Record 2013; 173:522-3; PMID:24293440; http://dx.doi.org/10.1136/vr.f7067
  • Schrader C, Schielke A, Ellerbroek L, Johne R. PCR inhibitors - occurrence, properties and removal. J Appl Microbiol 2012; 113:1014-26; PMID:22747964; http://dx.doi.org/10.1111/j.1365-2672.2012.05384.x
  • Botsaris G, Liapi M, Kakogiannis C, Dodd CER, Rees CED. Detection of Mycobacterium avium subsp paratuberculosis in bulk tank milk by combined phage-PCR assay: Evidence that plaque number is a good predictor of MAP. Int J Food Microbiol 2013; 164:76-80; PMID:23603220; http://dx.doi.org/10.1016/j.ijfoodmicro.2013.03.023
  • Botsaris G, Slana I, Liapi M, Dodd C, Economides C, Rees C, Pavlik I. Rapid detection methods for viable Mycobacterium avium subspecies paratuberculosis in milk and cheese. Int J Food Microbiol 2010; 141:S87-S90; PMID:20381185; http://dx.doi.org/10.1016/j.ijfoodmicro.2010.03.016
  • Stanley EC, Mole RJ, Smith RJ, Glenn SM, Barer MR, McGowan M, Rees CE. Development of a new, combined rapid method using phage and PCR for detection and identification of viable Mycobacterium paratuberculosis bacteria within 48 hours. Appl Environ Microbiol 2007; 73:1851-7; PMID:17259362; http://dx.doi.org/10.1128/AEM.01722-06
  • Swift BM, Denton EJ, Mahendran SA, Huxley JN, Rees CE. Development of a rapid phage-based method for the detection of viable Mycobacterium avium subsp. paratuberculosis in blood within 48 h. J Microbiol Methods 2013; 94:175-9; PMID:23811207; http://dx.doi.org/10.1016/j.mimet.2013.06.015
  • Eisenach KD, Cave MD, Bates JH, Crawford JT. Polymerase Chain-Reaction Amplification of a Repetitive DNA-Sequence Specific for Mycobacterium tuberculosis. J Infect Dis 1990; 161:977-81; PMID:2109022; http://dx.doi.org/10.1093/infdis/161.5.977
  • Boyle DS, McNerney R, Low HT, Leader BT, Perez-Osorio AC, Meyer JC, et al. Rapid Detection of Mycobacterium tuberculosis by Recombinase Polymerase Amplification. Plos One 2014; 9:e103091; http://dx.doi.org/10.1371/annotation/4fbfa4f0-cb27-4ec4-80d6-3b0ed5e9e8b8
  • Bower K, Begg DJ, Whittington RJ. Optimisation of culture of Mycobacterium avium subspecies paratuberculosis from blood samples. J Microbiol Methods 2010; 80:93-9; PMID:19932719; http://dx.doi.org/10.1016/j.mimet.2009.11.005
  • Albert H, Heydenrych A, Brookes R, Mole RJ, Harley B, Subotsky E, Henry R, Azevedo V. Performance of a rapid phage-based test, FASTPlaqueTB, to diagnose pulmonary tuberculosis from sputum specimens in South Africa. Int J Tuberc Lung Dis 2002; 6:529-37; PMID:12068987
  • Boyle DS, Lehman DA, Lillis L, Peterson D, Singhal M, Armes N, Parker M, Piepenburg O, Overbaugh J. Rapid Detection of HIV-1 Proviral DNA for Early Infant Diagnosis Using Recombinase Polymerase Amplification. Mbio 2013; 4:pii: e00135-13; PMID:23549916; http://dx.doi.org/10.1128/mBio.00135-13
  • David ST, Mukundan U, Brahmadathan KN, John TJ. Detecting mycobacteraemia for diagnosing tuberculosis. Indian J Med Res 2004; 119:259-66; PMID:15243163
  • Katoch VM. Diagnostic relevance of detection of mycobacteraemia. Indian J Med Res 2004; 119:Xi-Xii; PMID:15243169
  • Corner LA, Mccubbin K, Small KJ, Mccormick BS, Wood PR, Rothel JS. Efficiency of Inspection Procedures for the Detection of Tuberculous Lesions in Cattle. Aust Vet J 1990; 67:389-92; PMID:2085291; http://dx.doi.org/10.1111/j.1751-0813.1990.tb03020.x
  • Stewart LD, McNair J, McCallan L, Gordon A, Grant IR. Improved Detection of Mycobacterium bovis Infection in Bovine Lymph Node Tissue Using Immunomagnetic Separation (IMS)-Based Methods. Plos One 2013; 8:e58374.
  • Mishra A, Singhal A, Chauhan DS, Katoch VM, Srivastava K, Thakral SS, Bharadwaj SS, Sreenivas V, Prasad HK. Direct detection and identification of Mycobacterium tuberculosis and Mycobacterium bovis in bovine samples by a novel nested PCR assay: Correlation with conventional techniques. J Clin Microbiol 2005; 43:5670-8; PMID:16272503; http://dx.doi.org/10.1128/JCM.43.11.5670-5678.2005

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