Real-time PCR targeting
lytA
(the major autolysin gene) and
piaB
(permease gene of the
pia
ABC transporter) are currently used as the gold-standard culture-independent assays for
Streptococcus pneumoniae
identification. We evaluated the performance of a new real-time PCR assay – targeting SP2020 (putative transcriptional regulator gene) – and compared its performance with the assays previously described. A collection of 150 pneumococci, 433 non-pneumococci and 240 polymicrobial samples (obtained from nasopharynx, oropharynx, and saliva; 80 from each site) was tested. SP2020 and
lytA
-CDC assays had the best performance (sensitivity of 100% for each compared to 95.3% for
piaB
). The specificity for
lytA
and
piaB
was 99.5% and for SP2020 was 99.8%. Misidentifications occurred for the three genes:
lytA
,
piaB
and SP2020 were found in non-pneumococcal strains;
piaB
was absent in some pneumococci including a serotype 6B strain. Combining
lytA
and SP2020 assays resulted in no misidentifications. Most polymicrobial samples (88.8%) yielded concordant results for the three molecular targets. The remaining samples seemed to contain non-typeable pneumococci (0.8%), and non-pneumococci positive for
lytA
(1.7%) or SP2020 (8.7%). We propose that combined detection of both
lytA
-CDC and SP2020 is a powerful strategy for the identification of pneumococcus either in pure cultures or in polymicrobial samples.
A novel hybrid nanocomposite, PMo11V@N-doped few layer graphene, was prepared by a one-step protocol through direct immobilization of the tetrabutylammonium salt of a vanadium-substituted phosphomolybdate (PMo11V) onto N-doped few layer graphene (N-FLG). The nanocomposite characterization by FTIR and XPS confirmed its successful synthesis. Glassy carbon modified electrodes with PMo11V and PMo11V@N-FLG showed cyclic voltammograms consistent with surface-confined redox processes attributed to Mo-centred reductions (Mo VI →Mo V) and a vanadium reduction (V V →V IV). Furthermore, PMo11V@N-FLG modified electrodes showed good stability and well-resolved redox peaks with high current intensities. The observed enhancement of PMo11V electrochemical properties is a consequence of a strong electronic communication between the POM and the N-doped few layer graphene. Additionally, the electro-catalytic and sensing properties OPEN ACCESS towards acetaminophen (AC) and theophylline (TP) were evaluated by voltammetric techniques using a glassy carbon electrode modified with PMo11V@N-FLG. Under the conditions used, the square wave voltammetric peak current increased linearly with AC concentration in the presence of TP, but showing two linear ranges: 1.2 × 10 −6 to 1.2 × 10 −4 and 1.2 × 10 −4 to 4.8 × 10 −4 mol dm −3 , with different AC sensitivity values, 0.022 A/mol dm −3 and 0.035 A/mol dm −3 , respectively (detection limit, DL = 7.5 × 10 −7 mol dm −3).
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