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New influenza strains are constantly emerging, causing seasonal epidemics and raising concerns to the risk of a new global pandemic. Since vaccination is an effective method to prevent the spread of the disease and reduce its severity, the development of robust bioprocesses for producing pandemic influenza vaccines is exceptionally important. Herein, a membrane chromatography-based downstream processing platform with a demonstrated industrial application potential was established. Cell culture-derived influenza virus H1N1/A/PR/8/34 was harvested from benchtop bioreactor cultures. For the clarification of the cell culture broth, a depth filtration was selected as an alternative to centrifugation. After inactivation, an anion exchange chromatography membrane was used for viral capture and further processing. Additionally, two pandemic influenza virus strains, the H7N9 subtype of the A/Anhui/1/2013 and H3N2/A/Hong Kong/8/64, were successfully processed through similar downstream process steps establishing optimized process parameters. Overall, 41.3-62.5% viral recovery was achieved, with the removal of 86.3-96.5% host cell DNA and 95.5-99.7% of proteins. The proposed membrane chromatography purification is a scalable and generic method for the processing of different influenza strains and is a promising alternative to the current industrial purification of influenza vaccines based on ultracentrifugation methodologies.
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http://dx.doi.org/10.3390/vaccines10081310 | DOI Listing |
Influenza Other Respir Viruses
September 2025
Public Health Agency, Belfast, UK.
Background: We evaluated the effectiveness of the influenza vaccine programme against infection among emergency hospital admissions with respiratory conditions in Northern Ireland during the 2023/2024 influenza season.
Methods: Using a test-negative design, we compared the odds of vaccination between patients who tested positive (cases) and negative (controls) for laboratory-confirmed influenza, adjusting for confounders. VE was stratified by age group, sex and time since vaccination.
J Control Release
September 2025
Department of Pharmaceutical Sciences, College of Pharmacy, University of Michigan, Ann Arbor, MI 48109, USA; Bioinnovations in Brain Cancer, Biointerfaces Institute; The Developmental Therapeutics Program, Rogel Cancer Center; Center for RNA Biomedicine, University of Michigan, Ann Arbor, MI 48109,
Lipid nanoparticles (LNPs) have played an instrumental role in the delivery of RNA therapeutics and vaccines, including the emerging class of synthetic circular RNA (circRNA). Pulmonary vaccines hold the potential to prevent various respiratory infectious diseases, such as influenza caused by influenza infection. Here, we report the pulmonary delivery of LNPs loaded with highly stable small circRNA vaccine for influenza prevention.
View Article and Find Full Text PDFVaccine
September 2025
Department of Epidemiology, Institute of Social Medicine, University of State of the Rio de Janeiro. 524 São Francisco Xavier St. Maracanã, Bloco E, 7th Floor, Rio de Janeiro - RJ, Cep 20550-013, Brazil. Electronic address:
Background: There is limited data on adult opinions toward school-based vaccination programs, which can supplement clinic-based strategies in the Brazilian public health system. Since 2016, vaccination rates among Brazilian children and adolescents have shown worrisome declines, remaining well below full coverage, including for more recently introduced COVID-19 vaccines. School vaccination programs are not commonly implemented or monitored in Brazil.
View Article and Find Full Text PDFVaccine
September 2025
AgeLab, Massachusetts Institute of Technology, 77 Massachusetts Avenue, E40-275K, Cambridge, MA 02139, United States.
Vaccine uptake for five conditions harmful to older adults (seasonal influenza, pneumococcus infections, shingles, Covid-19, and pertussis) falls short of universal coverage, and discrepancies further emerge by gender, race, and vaccine target. Drawing on a cross-sectional nationally representative survey of 2623 U.S.
View Article and Find Full Text PDFJ Infect Dis
September 2025
University of Veterinary Medicine Vienna, Infectiology, Vienna, Austria.
Frequent emergence of respiratory viruses with pandemic potential, like SARS-CoV-2 or influenza, underscores the need for broad-spectrum prophylaxis. Existing vaccines show reduced efficacy against newly emerged variants, and the ongoing risk of new outbreaks highlights the importance of alternative strategies to prevent infection and viral transmission. As respiratory viruses primarily enter through the nose, formulations targeting the nasal epithelium are attractive candidates to neutralize pathogens and thus prevent or minimize infection.
View Article and Find Full Text PDF