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Mycoplasma genitalium Detection in Urogenital Specimens from Symptomatic and Asymptomatic Men and Women by Use of the cobas TV/MG Test.

Barbara Van Der PolKen B WaitesLi XiaoStephanie N TaylorArundhati RaoMelinda NyeSteven ChavoustieAaron ErmelClair KaplanDavid EisenbergPhilip A ChanLeandro MenaSixto PachecoSmitha KrishnamurthyRuchika MohanRasa BertuzisChris L McGowinRodney ArcenasElizabeth M Marlowe
Published in: Journal of clinical microbiology (2020)
Mycoplasma genitalium (MG) infections are a growing concern within the field of sexually transmitted infections. However, diagnostic assays for M. genitalium have been limited in the United States. As most infections are asymptomatic, individuals can unknowingly pass the infection on, and the prevalence is likely to be underestimated. Diagnosis of M. genitalium infection is recommended using a nucleic acid test. This multicenter study assessed the performance of the cobas Trichomonas vaginalis (TV)/MG assay (cobas) for the detection of M. genitalium, using 22,150 urogenital specimens from both symptomatic and asymptomatic men and women collected at geographically diverse sites across the United States. The performance was compared to a reference standard of three laboratory-developed tests (LDTs). The specificity of the cobas assay for M. genitalium ranged from 96.0% to 99.8% across symptomatic and asymptomatic men and women. The sensitivities in female vaginal swabs and urine samples were 96.6% (95% confidence interval [CI], 88.5 to 99.1%) and 86.4% (95% CI, 75.5 to 93.0%), respectively. The sensitivities in male urine and meatal swab samples were 100% (95% CI, 94.0 to 100%) and 85.0% (95% CI, 73.9 to 91.9%), respectively. This study demonstrated that the cobas assay was highly sensitive and specific in all relevant clinical samples for the detection of M. genitalium.
Keyphrases
  • high throughput
  • nucleic acid
  • label free
  • loop mediated isothermal amplification
  • real time pcr
  • risk factors
  • respiratory tract
  • single cell
  • fine needle aspiration
  • living cells