Given the evolving nature of the COVID-19 pandemic and the importance of vaccines, it is imperative to understand the relationships between receiving the COVID-19 vaccine and other vaccines, such as the flu vaccine. Data were obtained from a survey as part of an evaluation of the StopFlu Kaiser Permanente media campaign, promoting the flu and COVID-19 vaccines in communities of color across eight states and the District of Columbia. The outcome considered was receiving the COVID-19 vaccine. The exposure considered was receiving the flu vaccine. Covariates included demographic factors, and sources of trusted health information. Overall, 4,185 participants had complete data and were included the analysis. Logistic regression was used to assess the relationship between receiving the flu vaccine and COVID-19 vaccine. Among participants, 77.8% reported receiving the COVID-19 vaccine and 55.4% received the flu vaccine. After adjusting for demographics and sources of trusted health information, participants reporting receiving the flu vaccine had 5.18 times the odds of also receiving the COVID-19 vaccine [Adjusted Odds Ratio (AOR): 5.18 95% Confidence Interval (CI): 4.24-6.32]. Trusting advice from a doctor and healthcare organization also had increased odds of receiving the COVID-19 vaccine. (AOR: 1.84 95%CI: 1.45-2.33, AOR: 2.08 95%CI: 1.64-2.63). This study demonstrates that promotion of one vaccine may influence uptake of other vaccines, which is important given the highly politicized nature of the COVID-19 vaccine. Further research could provide more insight into how promotion of a vaccine could impact behavior with regards to another.
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http://dx.doi.org/10.1007/s10900-023-01213-9 | DOI Listing |
Niger Med J
January 2025
Department of Community Medicine, University of Jos, Jos, Plateau State, Nigeria.
Background: COVID-19 vaccination is crucial to containing the pandemic. COVID-19 vaccine knowledge, attitudes, and uptake among medical students are vital, as they are future healthcare professionals expected to promote vaccination. This study assessed the knowledge of the COVID-19 vaccine, its uptake, and associated factors among medical students.
View Article and Find Full Text PDFFront Immunol
January 2025
Institute of Virology, Medical Faculty, University Hospital Düsseldorf, Heinrich-Heine-University Düsseldorf, Düsseldorf, Germany.
Background: The emergence of novel SARS-CoV-2 variants challenges immunity, particularly among immunocompromised kidney transplant recipients (KTRs). To address this, vaccines have been adjusted to circulating variants. Despite intensive vaccination efforts, SARS-CoV-2 infections surged among KTRs during the Omicron wave, enabling a direct comparison of variant-specific immunity following-vaccination against Omicron BA.
View Article and Find Full Text PDFFront Immunol
January 2025
Axe de Recherche Maladies Infectieuses et Immunitaires, Centre de Recherche du CHU de Québec-Université Laval, Quebec City, QC, Canada.
Introduction: The innate immune response is an important first checkpoint in the evolution of an infection. Although adaptive immunity is generally considered the immune component that retains antigenic memory, innate immune responses can also be affected by previous stimulations. This study evaluated the impact of vaccination on innate cell activation by TLR7/8 agonist R848, as well as seasonal variations.
View Article and Find Full Text PDFJ R Soc Interface
January 2025
Population Health Sciences, Bristol Medical School, University of Bristol, Oakfield Grove, Bristol, BS8 2BN, UK.
COVID-19 vaccine programmes must account for variable immune responses and waning protection. Existing descriptions of antibody responses to COVID-19 vaccination convey limited information about the mechanisms of antibody production and maintenance. We describe antibody dynamics after COVID-19 vaccination with two biologically motivated mathematical models.
View Article and Find Full Text PDFJ Control Release
January 2025
Bioprocessing Technology Institute (BTI), Agency for Science, Technology and Research (A*STAR), 20 Biopolis Way, #06-01 Centros, Singapore 138668, Republic of Singapore. Electronic address:
mRNA-loaded lipid nanoparticles (mRNA-LNPs) hold great potential for disease treatment and prevention. LNPs are normally made from four lipids including ionizable lipid, helper lipid, cholesterol, and PEGylated lipid (PEG-lipid). Although PEG-lipid has the lowest content, it plays a crucial role in the effective delivery of mRNA-LNPs.
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