Background: Although influenza is a major public health concern among adults ≥60 years of age, few large, prospective studies of influenza vaccines have been conducted in this population. The goal of the present study was to directly compare the safety and efficacy of LAIV and TIV in adults ≥60 years of age.
Materials And Methods: A prospective, randomized, open-label, multicenter trial was conducted in South Africa. In March-April 2002, 3009 community-dwelling ambulatory adults 60-95 years of age were randomized 1:1 to receive a single dose of LAIV or TIV. Surveillance for influenza illness was conducted through November. Serum antibody titers were evaluated in all participants, and interferon-γ enzyme-linked immunosorbent spot assay responses were evaluated in a cohort of subjects. Solicited reactogenicity and adverse events were monitored for days 0-10 postvaccination; serious adverse events were monitored for the entire study.
Results: Influenza illness caused by vaccine-matched strains was detected in 0.8% (12/1494) and 0.5% (8/1488) of LAIV and TIV recipients, respectively; the relative efficacy of LAIV vs TIV was -49% (95% CI: -259, 35). As expected, greater serum antibody responses were seen with TIV, and greater cellular responses were seen with LAIV (although not for influenza B). Among subjects with culture-confirmed influenza illness, post hoc analyses revealed trends toward less feverishness (LAIV, 14%; TIV, 46%; P=0.05) and less fever (LAIV, 9%; TIV, 31%; P=0.16) among LAIV recipients. In each treatment group, 38-39% and 24-25% of subjects had baseline hemagglutination inhibition titers of ≤4 for A/H1 and A/H3, but 7 of 8 TIV cases and 7 of 12 LAIV cases of matched-strain influenza occurred among these subjects. Runny nose/nasal congestion (+13%), cough (+5%), sore throat (+5%), lethargy (+3%), and decreased appetite (+2%) were reported by more LAIV vs TIV recipients. Injection site reactions were reported by 27% of TIV recipients. SAEs were reported by a similar proportion of LAIV and TIV recipients (9% vs 8%).
Conclusions: Given the low incidence of influenza in both groups, no conclusions were possible regarding the relative efficacy of LAIV and TIV. There was a trend toward less feverishness/fever among LAIV recipients who developed influenza compared with TIV recipients with influenza, consistent with results from studies comparing the vaccines in children. A disproportionate number of influenza illnesses occurred among baseline seronegative subjects, particularly for those receiving TIV, which suggests that this subgroup has the greatest need for improved influenza vaccination. The safety profiles of LAIV and TIV were consistent with results from previous studies in older adults and no significant safety concerns were identified. clinicaltrials.gov identifier, NCT00192413.
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http://dx.doi.org/10.1016/j.vaccine.2011.03.029 | DOI Listing |
JCI Insight
February 2021
Department of Clinical Sciences, Liverpool School of Tropical Medicine, Liverpool, United Kingdom.
Influenza virus infections affect millions of people annually, and current available vaccines provide varying rates of protection. However, the way in which the nasal microbiota, particularly established pneumococcal colonization, shape the response to influenza vaccination is not yet fully understood. In this study, we inoculated healthy adults with live Streptococcus pneumoniae and vaccinated them 3 days later with either tetravalent-inactivated influenza vaccine (TIV) or live attenuated influenza vaccine (LAIV).
View Article and Find Full Text PDFHealth Technol Assess
December 2020
Asthma UK Centre for Applied Research, Usher Institute of Population Health Sciences and Informatics, University of Edinburgh, Edinburgh, UK.
Background: There is good evidence of vaccine effectiveness in healthy individuals but less robust evidence for vaccine effectiveness in the populations targeted for influenza vaccination. The live attenuated influenza vaccine (LAIV) has recently been recommended for children in the UK. The trivalent influenza vaccine (TIV) is recommended for all people aged ≥ 65 years and for those aged < 65 years who are at an increased risk of complications from influenza infection (e.
View Article and Find Full Text PDFVaccine
May 2020
University of Surrey Professor of Primary Care and Clinical Informatics, University of Surrey, Guildford GU2 7XH, United Kingdom; Royal College of General Practitioners Research and Surveillance Centre, 30 Euston Square, London NW1 2FB, United Kingdom. Electronic address:
Background: Influenza contributes significantly to the burden of disease worldwide; the United Kingdom has a policy of vaccination across all ages. Influenza vaccinations are known to be associated with common minor adverse events of interest (AEIs). The European Medicines Agency (EMA) recommends ongoing surveillance of AEIs following influenza vaccination to monitor common and detect infrequent but important AEIs.
View Article and Find Full Text PDFVaccine
February 2020
Department of Clinical Sciences, Liverpool School of Tropical Medicine, Pembroke Place, Liverpool L3 5QA, UK.
Background: Nasopharyngeal colonisation by S. pneumoniae is a prerequisite for invasive pneumococcal infections. Influenza co-infection leads to increased susceptibility to secondary pneumonia and mortality during influenza epidemics.
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