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    Date Issued2019 (1)2015 (1)Author
    Ostrosky-Zeichner, Luis (2)
    Alangaden, George J. (1)Alexander, Ronika (1)Clancy, Cornelius J. (1)Counselman, Francis L. (1)View MoreUMass Chan AffiliationDepartment of Anesthesiology (1)Department of Emergency Medicine (1)Document TypeJournal Article (2)KeywordAdult (1)Aged (1)Anesthesiology (1)Antifungal Agents (1)Bacterial Infections and Mycoses (1)View MoreJournalClinical infectious diseases : an official publication of the Infectious Diseases Society of America (1)Vaccine (1)

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    Pneumococcal epidemiology among us adults hospitalized for community-acquired pneumonia

    Isturiz, Raul E.; Ramirez, Julio; Self, Wesley H.; Grijalva, Carlos G.; Counselman, Francis L.; Volturo, Gregory A.; Ostrosky-Zeichner, Luis; Peyrani, Paula; Wunderink, Richard G.; Sherwin, Robert; et al. (2019-05-31)
    BACKGROUND: Few studies have measured the burden of adult pneumococcal disease after the introduction of 13-valent pneumococcal conjugate vaccine (PCV13) into the US infant vaccination schedule. Further, most data regarding pneumococcal serotypes are derived from invasive pneumococcal disease (IPD), which represents only a fraction of all adult pneumococcal disease burden. Understanding which pneumococcal serotypes cause pneumonia in adults is critical for informing current immunization policy. The objective of this study was to measure the proportion of radiographically-confirmed (CXR+) community-acquired pneumonia (CAP) caused by PCV13 serotypes in hospitalized US adults. METHODS: This observational, prospective surveillance study recruited hospitalized adults aged > /=18years from 21 acute care hospitals across 10 geographically-dispersed cities in the United States between October 2013 and September 2016. Clinical and demographic data were collected during hospitalization. Vital status was ascertained 30days after enrollment. Pneumococcal serotypes were detected via culture from the respiratory tract and normally-sterile sites (including blood and pleural fluid). Additionally, a novel, Luminex-based serotype-specific urinary antigen detection (UAD) assay was used to detect serotypes included in PCV13. RESULTS: Of 15,572 enrolled participants, 12,055 eligible patients with CXR+CAP were included in the final analysis population. Mean age was 64.1years and 52.7% were aged > /=65years. Common comorbidities included chronic obstructive pulmonary disease (43.0%) and diabetes mellitus (28.6%). PCV13 serotypes were detected in 552/12,055 (4.6%) of all patients and 265/6347 (4.2%) of those aged > /=65years. Among patients aged 18-64years PCV13 serotypes were detected in 3.8-5.3% of patients depending on their risk status. CONCLUSIONS: After implementation of a pneumococcal conjugate vaccination program in US children, and despite the herd protection observed in US adults, a persistent burden of PCV13-type CAP remains in this population.
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    T2 magnetic resonance assay for the rapid diagnosis of candidemia in whole blood: a clinical trial

    Mylonakis, Eleftherios; Clancy, Cornelius J.; Ostrosky-Zeichner, Luis; Garey, Kevin W.; Alangaden, George J.; Vazquez, Jose A.; Groeger, Jeffrey S.; Judson, Marc A.; Vinagre, Yuka-Marie; Heard, Stephen O.; et al. (2015-03-15)
    BACKGROUND: Microbiologic cultures, the current gold standard diagnostic method for invasive Candida infections, have low specificity and take up to 2-5 days to grow. We present the results of the first extensive multicenter clinical trial of a new nanodiagnostic approach, T2 magnetic resonance (T2MR), for diagnosis of candidemia. METHODS: Blood specimens were collected from 1801 hospitalized patients who had a blood culture ordered for routine standard of care; 250 of them were manually supplemented with concentrations from < 1 to 100 colony-forming units (CFUs)/mL for 5 different Candida species. RESULTS: T2MR demonstrated an overall specificity per assay of 99.4% (95% confidence interval [CI], 99.1%-99.6%) with a mean time to negative result of 4.2 +/- 0.9 hours. Subanalysis yielded a specificity of 98.9% (95% CI, 98.3%-99.4%) for Candida albicans/Candida tropicalis, 99.3% (95% CI, 98.7%-99.6%) for Candida parapsilosis, and 99.9% (95% CI, 99.7%-100.0%) for Candida krusei/Candida glabrata. The overall sensitivity was found to be 91.1% (95% CI, 86.9%-94.2%) with a mean time of 4.4 +/- 1.0 hours for detection and species identification. The subgroup analysis showed a sensitivity of 92.3% (95% CI, 85.4%-96.6%) for C. albicans/C. tropicalis, 94.2% (95% CI, 84.1%-98.8%) for C. parapsilosis, and 88.1% (95% CI, 80.2%-93.7%) for C. krusei/C. glabrata. The limit of detection was 1 CFU/mL for C. tropicalis and C. krusei, 2 CFU/mL for C. albicans and C. glabrata, and 3 CFU/mL for C. parapsilosis. The negative predictive value was estimated to range from 99.5% to 99.0% in a study population with 5% and 10% prevalence of candidemia, respectively. CONCLUSIONS: T2MR is the first fully automated technology that directly analyzes whole blood specimens to identify species without the need for prior isolation of Candida species, and represents a breakthrough shift into a new era of molecular diagnostics. CLINICAL TRIALS REGISTRATION: NCT01752166.
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