Streptococcus agalactiae (GBS) is a leading cause of invasive neonatal infection. Serotyping of GBS is important in following epidemiological trends and vaccine development. Capsular serotyping of GBS by latex agglutination has been the predominant typing method, but more recently capsular genotyping has been introduced as an alternative method. The purpose of this study was to compare the relative performance of these methods in a contemporary population of pregnant women. We typed isolates from an unselected population of 426 colonized women at delivery using latex agglutination and a combination of four PCR methods. Antibiotic resistance was tested in 449 isolates. Capsular genotyping gave a result in all except three of 426 isolates. Fifty-nine of 426 isolates could not be typed by latex agglutination. Agreement between serotyping and genotyping was shown in 303 (71.1%) of the isolates. 10.2% of the isolates were resistant to erythromycin, 9.6% to clindamycin, 76.6% to tetracycline and none to penicillin. In conclusion, a substantial proportion of the colonizing strains were non-typeable by serotyping, but typeable by genotyping. This suggests that a diagnostic genotyping strategy is preferable to serotyping of the GBS polysaccharide capsule in colonized, pregnant women.
Despite rapidly diminishing treatment options for Neisseria gonorrhoeae and high levels of ciprofloxacin resistance worldwide, Norwegian guidelines still recommend ciprofloxacin as empirical treatment for gonorrhea. The present study aimed to characterize phenotypical and genotypical properties of N. gonorrhoeae isolates in Norway in 2009. All viable N. gonorrhoeae isolates (n = 114) from six university hospitals in Norway (2009) were collected, representing 42% of all notified gonorrhea cases. Epidemiological data were collected from the Norwegian Surveillance System for Communicable Diseases and linked to phenotypical and genotypical characteristics for each N. gonorrhoeae isolate. Resistance levels to the antimicrobials examined were: ciprofloxacin 78%, azithromycin 11%, cefixime 3.5%, ceftriaxone 1.8%, and spectinomycin 0%. The minimum inhibitory concentrations of gentamicin varied from 1.5 to 8 mg/L. Forty-one (36%) of the isolates were β-lactamase-producing, 17 displayed penA mosaic alleles, and 72 different N. gonorrhoeae multiantigen sequence types (ST; 37 novel) were identified. The most common ST was ST1407 (n = 11), containing penA mosaic allele. Four of these isolates displayed intermediate susceptibility/resistance to cefixime. The N. gonorrhoeae strains circulating in Norway were highly diverse. The level of ciprofloxacin resistance was high and the Norwegian management guidelines should promptly exclude ciprofloxacin as an empirical treatment option for gonorrhea.
Background:Streptococcus agalactiae (group B Streptococcus, GBS) is the most common cause of early neonatal infection, but restricting the diagnosis to culture-positive infants may underestimate the burden of GBS disease. Our objective was to determine whether maternal GBS colonization was associated with an increased risk of transfer of term infants to the neonatal intensive care unit (NICU) and, if so, to estimate the incidence of probable early-onset GBS disease. Methods: We conducted a prospective cohort study of 1,694 term infants whose mothers had vaginal-rectal swabs collected at delivery. Data collected on each mother and infant included demographics, clinical findings and laboratory investigations. The medical staff were unaware of the maternal GBS colonization status. Results: A total of 26% of the mothers were colonized. Infants born to colonized mothers did not differ from infants born to non-colonized mothers with respect to birth weight or Apgar score. Altogether, 30 (1.8%) of the term infants were transferred to the NICU. Only 1 infant born to a colonized mother had culture-positive early-onset GBS disease. Infants born to colonized mothers were more than 3 times as likely to be transferred to the NICU compared to infants of non-colonized mothers (3.6 vs. 1.1%; OR 3.4, 95% CI 1.6-6.9, p = 0.001); 5 infants of colonized mothers had probable GBS disease with tachypnoea and raised C-reactive protein (3.0/1,000 live term births). Conclusions: Maternal GBS colonization is associated with increased risk of transfer to the NICU in term infants. The burden of neonatal GBS disease may be greater than indicated by the number of culture-positive cases.
Background Group B Streptococcus (GBS) is a major cause of serious neonatal infection but its role in maternal morbidity has received little investigation. The aim of this study was to determine whether GBS colonization at delivery is associated with increased risk of maternal peripartum infection. Methods In this prospective cohort study, 1746 unselected women had a vaginal-rectal culture taken at the onset of labor. Diagnosis of maternal peripartum infection was based on a combination of two or more signs or symptoms including fever, breast pain, severe wound or pelvic pain, purulent discharge and abnormal laboratory tests including C-reactive protein and white blood cell count occurring from labor until 2 weeks postpartum. The main outcome measure was the proportion of women with maternal peripartum infection according to GBS colonization status. Results A total of 25.9% (452/1746) women were colonized with GBS. The rate of peripartum infection was almost twice as high in colonized women (49/452 [10.8%]) vs. non-colonized women (81/1294 [6.3%]); OR 1.82 [1.26–2.64], p = 0.002). This association was confirmed in a multivariable model (OR 1.99 [1.35–2.95], p = 0.001). Women diagnosed with peripartum infection had a significantly longer hospital stay compared to women without peripartum infection (4 days (median) vs. 3 days, p < 0.001). Length of hospital stay did not differ between colonized and non-colonized women. Serotype IV GBS was more frequent in colonized women with peripartum infection than in women without peripartum infection (29.3% vs. 12.5%, p = 0.003). Conclusions GBS colonization at delivery is associated with increased risk of peripartum infection. Whether this increase is due directly to invasion by GBS or whether GBS colonization is associated with a more general vulnerability to infection remains to be determined.
To the best of our knowledge, we report the first case of Dietzia species in a patient with endophthalmitis. A 47-year-old man presented to the ophthalmology department with decreased vision, redness, and minimal pain in his right eye after a foreign body struck his eye following working using a hammer and chisel. Broad-spectrum polymerase chain reaction (PCR) and deoxyribonucleic acid (DNA) sequencing targeting 16S ribosomal ribonucleic acid-(rRNA-) encoding gene on an undiluted vitreous sample revealed 100% identity with GenBank sequences of Dietzia species including D. natronolimnaea, D. dagingensis, and D. cercidiphylli. The culture of the vitreous samples demonstrated the growth of Gram-positive cocci and polymorphic rods. The isolate from the culture was identified as D. natronolimnaea using matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry (MALDI-TOF MS). The combination of surgical and medical treatment (pars plana vitrectomy and systemic and topical antibiotics) eradicated the infection successfully.
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