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Updated: Jul 19, 2026

Generation, Amplification, and Titration of Recombinant Respiratory Syncytial Viruses
Published on: April 4, 2019
Immunopathology of RSV infection: prospects for developing vaccines without this complication
S van Drunen Littel-van den Hurk1, J W Mapletoft, N Arsic
1Vaccine and Infectious Disease Organization, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E3, Canada. sylvia.vandenhurk@usask.ca
Insights
Developing a safe and effective respiratory syncytial virus (RSV) vaccine is challenging due to incomplete natural immunity and infant immune system immaturity. Promising strategies include intranasal vaccines for newborns and maternal vaccination to protect infants.
Area of Science:
- Virology
- Immunology
- Vaccinology
Background:
- Respiratory syncytial virus (RSV) is a major cause of severe lower respiratory tract infections in infants, linked to later-life asthma.
- Current challenges in RSV vaccine development include incomplete natural immunity and difficulties in vaccinating infants with immature immune systems.
- Past vaccine trials have shown safety concerns, including exacerbated pulmonary disease in infants, possibly due to an imbalanced immune response.
Purpose of the Study:
- To review the challenges and potential strategies for developing an effective and safe RSV vaccine.
- To explore vaccine approaches that can overcome immunological hurdles in infants and elicit a balanced immune response.
Main Methods:
- Literature review of RSV pathogenesis, immunology, and vaccine development efforts.
- Analysis of factors complicating vaccine design, including immune responses and target population characteristics.
- Evaluation of promising vaccine platforms for infants and newborns.
Main Results:
- Effective RSV vaccines must induce a balanced immune response, including neutralizing antibodies, CD8 T-cells, and Th1/Th2 CD4 T-cells.
- Subunit vaccines may work for previously exposed individuals, but attenuated or vectored intranasal vaccines show promise for newborns.
- Maternal vaccination is identified as a potentially optimal strategy to protect vulnerable young infants.
Conclusions:
- Developing a safe and immunogenic RSV vaccine requires addressing incomplete natural immunity and infant-specific immunological factors.
- Intranasal delivery of attenuated or vectored vaccines and maternal vaccination are the most promising strategies for protecting infants from RSV.
- Further research into eliciting balanced immune responses is crucial for successful RSV vaccine development.
Abstract:
Respiratory syncytial virus is the most important cause of lower respiratory tract infection in infants and young children. RSV clinical disease varies from rhinitis and otitis media to bronchiolitis and pneumonia. An increased incidence of asthma later in life has been associated with the more severe lower respiratory tract infections. Despite its importance as a pathogen, there is no licensed vaccine against RSV. This is due to a number of factors complicating the development of an effective and safe vaccine. The immunity to natural RSV infection is incomplete as re-infections occur in all age groups, which makes it challenging to design a protective vaccine. Second, the primary target population is the newborn infant, which has a relatively immature immune system and maternal antibodies that can interfere with vaccination. Finally, some vaccines have resulted in a predisposition for exacerbated pulmonary disease in infants, which was attributed to an imbalanced Th2-biased immune response, although the exact cause has not been elucidated. This makes it difficult to proceed with vaccine testing in infants. It is likely that an effective and safe vaccine needs to elicit a balanced immune response, including RSV-specific neutralising antibodies, CD8 T-cells, Th1/Th2 CD4 T-cells and preferably secretory IgA. Subunit vaccines formulated with appropriate adjuvants may be adequate for previously exposed individuals. However, intranasally delivered genetically engineered attenuated or vectored vaccines are currently most promising for newborns, as they are expected to induce a balanced immune response similar to that elicited to natural infection and not be subject to interference from maternal antibodies. Maternal vaccination may be the optimal strategy to protect the very young infants.
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