Intravenous immunoglobulin for preventing infection in preterm and/or low birth weight infants

Arne Ohlsson1, Janet B Lacy

  • 1Departments of Paediatrics, Obstetrics and Gynaecology and Institute of Health Policy, Management and Evaluation, University ofToronto, Toronto, Canada. aohlsson@mtsinai.on.ca.

Insights

Intravenous immunoglobulin (IVIG) reduces sepsis and serious infections in preterm and low birth weight infants. However, it does not significantly impact mortality or other major outcomes, with no short-term serious side effects observed.

Area of Science:

  • Neonatal Medicine
  • Infectious Diseases
  • Immunology

Background:

  • Nosocomial infections pose significant risks to preterm and low birth weight (LBW) infants.
  • These infants have immunoglobulin G (IgG) deficiencies, making them susceptible to infections.
  • Intravenous immunoglobulin (IVIG) administration is explored as a preventive measure.

Purpose of the Study:

  • To systematically review and meta-analyze the effectiveness and safety of IVIG in preventing nosocomial infections in preterm or LBW infants.
  • To compare IVIG administration against placebo or no intervention.

Main Methods:

  • Systematic review and meta-analysis of randomized controlled trials (RCTs).
  • Searched major databases (MEDLINE, EMBASE, CINAHL, Cochrane Library, etc.) up to May 2013.
  • Included RCTs comparing IVIG to placebo/no intervention in preterm (<37 weeks) and/or LBW (<2500g) infants, excluding studies focused on immune markers or with <1 week follow-up.

Main Results:

  • Nineteen studies with ~5000 infants were included.
  • IVIG significantly reduced sepsis (RR 0.85, NNTB 33) and any serious infection (RR 0.82, NNTB 25).
  • No significant differences were found in all-cause mortality, infection-related mortality, necrotizing enterocolitis, bronchopulmonary dysplasia, intraventricular hemorrhage, or hospital stay. No major adverse effects were reported.

Conclusions:

  • IVIG administration leads to a 3% reduction in sepsis and a 4% reduction in serious infections.
  • IVIG does not improve other critical outcomes like mortality and shows no short-term serious side effects.
  • The decision to use prophylactic IVIG should consider costs versus clinical benefits; further RCTs on older IVIG preparations are not justified.
Abstract

Related Concept Videos

Development of Immunocompetence01:22

Development of Immunocompetence

The initiation of cell-mediated immunity can be observed as early as the third month of fetal growth, with active antibody-mediated immunity following approximately one month later.
The initial cells that migrate from the fetal thymus settle within the skin and epithelial tissues lining the mouth, digestive tract, and in females, the uterus and vagina. These cells, including skin-based dendritic cells, serve as antigen-presenting cells, playing a key role in T cell activation.
Subsequent T...
Transcytosis of IgG01:15

Transcytosis of IgG

Transcytosis is the process in which molecules are internalized by endocytosis, transported across the cell, and released through exocytosis from the opposite end of the cell. Molecules such as insulin, immunoglobulins, and certain nutrients are transferred through the recycling endosomes by recycling and transcytosis.
IgG molecules from a mother undergo transcytosis starting around 13 weeks of gestation. The amount of IgG transferred and entering the fetal blood circulation increases with...
Acute Kidney Injury IV: Diagnostic Studies and Prevention01:30

Acute Kidney Injury IV: Diagnostic Studies and Prevention

Accurate diagnosis and effective prevention are critical in managing Acute Kidney Injury (AKI), which is linked to high mortality rates ranging from 10% to 80%. Timely recognition of at-risk patients and careful monitoring can significantly reduce the likelihood of kidney damage.Diagnostic Assessments:The diagnostic process starts with a comprehensive medical history to identify prerenal, intrarenal, and postrenal causes.Prerenal causes, such as dehydration, hypotension, or blood loss, should...
Drug Dosing: Infants and Children01:29

Drug Dosing: Infants and Children

Pediatric patient dosages diverge from adults due to disparities in body surface area, total body water, and extracellular fluid per kilogram of body weight. The dosing regimen considers the variations in pharmacokinetics and pharmacology across distinct age groups, encompassing preterm newborns, infants, young children, older children, and adolescents. Calculation of pediatric patient doses is predicated on determining body surface area, which exhibits a superior correlation with the child's...
Drug Accumulation During Multiple Dosing: Intermittent IV Infusions01:24

Drug Accumulation During Multiple Dosing: Intermittent IV Infusions

Intermittent intravenous (IV) infusion is a method of drug administration where medications are delivered over short infusion periods followed by intervals of no drug delivery. This approach helps to prevent sustained high drug concentrations in the bloodstream, reducing the risk of adverse effects associated with prolonged exposure. Unlike continuous infusion, steady-state concentrations may not be achieved during a single dosing cycle but can be reached through repeated...
Venous Thrombosis III: Interprofessional Care01:29

Venous Thrombosis III: Interprofessional Care

Venous thrombosis requires effective prevention and treatment strategies to improve patient outcomes and reduce potential complications.Prevention StrategiesHealthcare providers must prioritize preventing venous thromboembolism (VTE) for all adult patients upon admission. Interventions depend on bleeding and thrombosis risk, medical history, current medications, diagnoses, planned procedures, and patient preferences. Patients on bed rest should change positions every two hours and, if not...