BackgroundHost factors and complications have been associated with higher mortality in infective endocarditis (IE). We sought to develop and validate a model of clinical characteristics to predict 6‐month mortality in IE.Methods and ResultsUsing a large multinational prospective registry of definite IE (International Collaboration on Endocarditis [ICE]–Prospective Cohort Study [PCS], 2000–2006, n=4049), a model to predict 6‐month survival was developed by Cox proportional hazards modeling with inverse probability weighting for surgery treatment and was internally validated by the bootstrapping method. This model was externally validated in an independent prospective registry (ICE‐PLUS, 2008–2012, n=1197). The 6‐month mortality was 971 of 4049 (24.0%) in the ICE‐PCS cohort and 342 of 1197 (28.6%) in the ICE‐PLUS cohort. Surgery during the index hospitalization was performed in 48.1% and 54.0% of the cohorts, respectively. In the derivation model, variables related to host factors (age, dialysis), IE characteristics (prosthetic or nosocomial IE, causative organism, left‐sided valve vegetation), and IE complications (severe heart failure, stroke, paravalvular complication, and persistent bacteremia) were independently associated with 6‐month mortality, and surgery was associated with a lower risk of mortality (Harrell's C statistic 0.715). In the validation model, these variables had similar hazard ratios (Harrell's C statistic 0.682), with a similar, independent benefit of surgery (hazard ratio 0.74, 95% CI 0.62–0.89). A simplified risk model was developed by weight adjustment of these variables.ConclusionsSix‐month mortality after IE is ≈25% and is predicted by host factors, IE characteristics, and IE complications. Surgery during the index hospitalization is associated with lower mortality but is performed less frequently in the highest risk patients. A simplified risk model may be used to identify specific risk subgroups in IE.
In this prospective, multinational cohort of patients with S. aureus PVIE, EVS was not associated with reduced 1-year mortality. The decision to pursue EVS should be individualized for each patient, based upon infection-specific characteristics rather than solely upon the microbiology of the infection causing PVIE.
A retrospective analysis of data from patients receiving daptomycin as outpatient parenteral antimicrobial therapy (OPAT) within the European Cubicin Outcomes Registry and Experience (EU-CORE(SM)) was performed. Of 4592 enrolled patients in 15 countries, 550 (12%) received daptomycin OPAT. Of these, 149 (27%) received daptomycin without hospital admission, 84% had significant underlying diseases and 44% were ≥65 years of age. Most frequently treated infections were complicated skin and soft-tissue infections (28%), osteomyelitis (17%), foreign body/prosthetic infections (15%) and endocarditis (14%). In patients with culture results available, Staphylococcus aureus and coagulase-negative staphylococci were the most commonly isolated primary pathogens [n = 218 (46%) and n = 102 (21%), respectively]. Daptomycin was typically used at doses of 6 mg/kg (n = 210; 38%) and 4 mg/kg (n = 160; 29%), with concomitant antibiotics used in 41%. The median treatment duration was 22 days (range 1-300 days), with a median of 13 OPAT days (range 1-290 days). Overall clinical success was observed in 89%, with high success rates across the wide range of infections, including those caused by meticillin-resistant and meticillin-susceptible S. aureus (88% and 90%, respectively). Daptomycin exhibited a favourable safety profile; 3.1% of patients discontinued treatment owing to an adverse event. These data demonstrate that daptomycin is effective and well tolerated in the treatment of a wide range of Gram-positive infections in the outpatient setting. Ease of administration of daptomycin, via a daily 2-min injection, and its efficacy and safety combine to make it an attractive treatment option for OPAT.
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