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Biomedical subjects

Louise-Marie Dembry

Publications and source records attributed to Louise-Marie Dembry.

5 recordsLinked to original sources

Life-threatening sepsis caused by Burkholderia cepacia from contaminated intravenous flush solutions prepared by a compounding pharmacy in another state.

We report 2 life-threatening cases of Burkholderia cepacia sepsis caused by infusate contamination during compounding. Bacterial isolates from the patients' blood cultures and the infusate were indistinguishable by pulsed-field gel electrophoresis. Proper quality controls at a local and national level are important for ensuring safe delivery of compounded medications to patients in all settings, including those outside health care facilities.

Bacteremia↗

Conjunctival colonization of infants hospitalized in a neonatal intensive care unit: a longitudinal analysis.

OBJECTIVES: To determine the frequency of conjunctival colonization, identify the colonizing flora, and correlate culture results with physical findings in infants in a NICU. DESIGN: Surveillance study. SETTING: Level III NICU of a large university teaching hospital. PATIENTS: All infants admitted for longer than 24 hours during a 26-week period. METHODS: Weekly bacterial conjunctival cultures were performed for all infants. The conjunctival appearance at the time of culture was recorded. The frequency, identity, and correlation of culture results with physical findings were determined. RESULTS: One thousand ninety-one cultures were performed for 319 infants: 133 (42%) had no positive cultures and 186 (58%) had at least one positive culture. Culture analysis revealed that 411 (38%) were positive and yielded 494 isolates comprising more than 18 bacterial species. Bacteria most commonly isolated included coagulase-negative Staphylococcus (CoNS) (75%), viridans group streptococci (8.7%), Staphylococcus aureus (3.8%), Enterococcus species (2.6%), and Serratia marcescens (2.4%). The frequency of non-CoNS isolates increased significantly during the first 6 weeks of patient hospital stay (6% [1 to 3 weeks] to 12% [4 to 6 weeks]; P = .01), with an increasing trend to 15 weeks (18%). Correlation of bacteriologic results with physical findings demonstrated that infants with non-CoNS isolates exhibited conjunctival edema, erythema, or exudates more frequently than did infants with CoNS alone (30% vs 13%; P = .0001). CONCLUSIONS: Conjunctival colonization was common among infants in a NICU. Prolonged hospitalization predisposes to colonization with potentially pathogenic organisms. Physical findings were more likely in patients with non-CoNS conjunctival isolates.

Conjunctival Diseases↗

Approaches to vancomycin-resistant enterococci.

PURPOSE OF REVIEW: This article reviews recent publications regarding new antimicrobial drugs for the treatment of vancomycin-resistant enterococci. RECENT FINDINGS: Newer drugs against vancomycin-resistant enterococci are now available or will soon be available. Quinupristin-dalfopristin, a streptogramin, and linezolid, an oxazolidinone, are effective and safe but only bacteriostatic against enterococi. Bacterial isolates resistant to either antibiotic have been described. Daptomycin, a lipopeptide antimicrobial, has good in-vitro bactericidal activity against enterococci, but very limited clinical data exist regarding the treatment of serious enterococcal infection with this compound. Ramoplanin, the first glycolipodepsipeptide antimicrobial in clinical trials, is not systemically absorbed after oral administration, and is being evaluated for the prevention of bloodstream infection in patients colonized with vancomycin-resistant enterococci. Oritavancin and dalbavancin (both glycopeptides) and tigecycline (a monocycline derivative) are being evaluated in phase II and III trials and are not yet commercially available. SUMMARY: Treatment of vancomycin-resistant enterococci continues to be problematical although these new drugs offer some hope. The rational use of antibiotics, strict guidelines for the use of new compounds, and adherence to infection control practices continue to be essential components of the management of vancomycin-resistant enterococci colonization and infection.

Anti-Bacterial Agents↗

Recommended modifications and applications of the Hospital Emergency Incident Command System for hospital emergency management.

The Hospital Emergency Incident Command System (HEICS), now in its third edition, has emerged as a popular incident command system model for hospital emergency response in the United States and other countries. Since the inception of the HEICS in 1991, several events have transformed the requirements of hospital emergency management, including the 1995 Tokyo Subway sarin attack, the 2001 US anthrax letter attacks, and the 2003 Severe Acute Respiratory Syndrome (SARS) outbreaks in eastern Asia and Toronto, Canada. Several modifications of the HEICS are suggested to match the needs of hospital emergency management today, including: (1) an Incident Consultant in the Administrative Section of the HEICS to provide expert advice directly to the Incident Commander in chemical, biological, radiological, nuclear (CBRN) emergencies as needed, as well as consultation on mental health needs; (2) new unit leaders in the Operations Section to coordinate the management of contaminated or infectious patients in CBRN emergencies; (3) new unit leaders in the Operations Section to coordinate mental health support for patients, guests, healthcare workers, volunteers, and dependents in terrorism-related emergencies or events that produce significant mental health needs; (4) a new Decedent/Expectant Unit Leader in the Operations Section to coordinate the management of both types of patients together; and (5) a new Information Technology Unit Leader in the Logistics Section to coordinate the management of information technology and systems. New uses of the HEICS in hospital emergency management also are recommended, including: (1) the adoption of the HEICS as the conceptual framework for organizing all phases of hospital emergency management, including mitigation, preparedness, response, and recovery; and (2) the application of the HEICS not only to healthcare facilities, but also to healthcare systems. Finally, three levels of healthcare worker competencies in the HEICS are suggested: (1) basic understanding of the HEICS for all hospital healthcare workers; (2) advanced understanding and proficiency in the HEICS for hospital healthcare workers likely to assume leadership roles in hospital emergency response; and (3) special proficiency in constituting the HEICS ad hoc from existing healthcare workers in resource-deficient settings. The HEICS should be viewed as a work in progress that will mature as additional challenges arise and as hospitals gain further experience with its use.

Emergency Medical Service Communication Systems↗