Managing neonatal sepsis is challenging due to nonspecific clinical signs, hematological markers with poor accuracy, and a lengthy turnaround time for the identification of microorganisms. Delaying the initiation of antibiotics in truly infected infants can lead to severe morbidity and mortality. Therefore, decisions regarding empiric antibiotic treatment are risk stratified, which exposes many uninfected infants to antibiotics. This causes gut microbiota perturbation, unnecessary hospital admissions, and the generation of multi-resistant organisms. High-speed diagnostic assays could expedite discontinuation or avert the initiation of antibiotics in uninfected infants. This study will evaluate the diagnostic performance of molecular culture (MC), a rapid broad-range PCR-based bacterial profiling technique, for diagnosing neonatal sepsis in infants below 90 days old. A multi-center prospective observational cohort study will include infants evaluated for early and late-onset sepsis. Routine evaluation for suspected sepsis includes microbiological cultures of blood. Additionally, blood for MC will be collected. For early-onset sepsis, umbilical cord blood may be used alternatively. Primary outcome is the agreement between MC and conventional blood culture results. Secondary outcome is the agreement of both assays with clinical sepsis using four different, commonly used definitions. Faster diagnostic pathways for sepsis may reduce antibiotic exposure time. Broad-range molecular assays may identify pathogens undetectable by conventional methods. Employment of umbilical cord blood samples for early-onset sepsis diagnosis can resolve challenges in collecting adequate blood volume and could further expedite treatment decisions.
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http://dx.doi.org/10.3390/diagnostics14171930 | DOI Listing |
J Infect Dis
December 2024
Centre for Respiratory Diseases and Meningitis, National Institute for Communicable Diseases, a division of the National Health Laboratory Service, Johannesburg, South Africa.
Background: Group B Streptococcus (GBS) is a leading cause of neonatal meningitis and sepsis and an important cause of disease in adults. Capsular polysaccharide and protein-based GBS vaccines are currently under development.
Methods: Through national laboratory-based surveillance, invasive GBS isolates were collected from patients of all ages between 2019 and 2020.
BMC Pregnancy Childbirth
December 2024
Center for International Health, LMU, Munich, Germany.
Background: Despite recent improvements in the overall health status of Nepal's population, newborn morbidities and mortalities have remained a challenge. This study explores the situation and care strategies for newborn health problems in the Gandaki Province of Nepal.
Methods: This is a retrospective hospital records analysis.
Indian J Med Microbiol
December 2024
Government Medical College and Hospital, Chandigarh. Electronic address:
Background: Neonatal sepsis continues to be a leading cause of mortality among the NICU admitted neonates. The most common causative organisms have been proven to be hospital-acquired organisms.
Aims And Objectives: This study was planned with aim of understanding the pathological colonization of neonatal skin and associated risk factors as well as finding a possible correlation between blood culture isolates and neonatal skin colonizers and their antimicrobial resistance patterns.
Front Cell Infect Microbiol
December 2024
Data Center, Meizhou People's Hospital, Meizhou Academy of Medical Sciences, Meizhou, China.
Background: Premature infants are at high risk for neonatal respiratory distress syndrome (RDS) and secondary infections. This study aims to investigate the association between immunoinflammatory markers-the systemic immune inflammation index (SII), systemic inflammation response index (SIRI), and neutrophil-to-albumin ratio (NAR)-and the risk of developing RDS in premature infants.
Methods: A total of 2164 premature infants were enrolled in this retrospective study.
Med J Armed Forces India
December 2024
Professor (Neonatology), Bharati Vidyapeeth Medical College, Deemed to be University, Pune, India.
, an environmentally ubiquitous microbe, is a challenging opportunistic pathogen in the hospital setting. Neonates are particularly vulnerable to infection with but information on presentation, therapeutic response and outcome of such infection in this population is limited. To expand this knowledge, we report here a series of five cases.
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