Respiratory Syncytial Virus Vaccines: A Review of the Candidates and the Approved Vaccines

Вакцины против респираторного синцитиального вируса: обзор вакцин-кандидатов и одобренных вакцин
Xanthippi Topalidou, Alexis M. Kalergis, Georgios Papazisis
2023-10-19

Live-attenuated vaccinesMaternal immunizationRSV vaccinesRespiratory syncytial virusmRNA vaccines
Respiratory syncytial virus (RSV) is responsible for a significant proportion of global morbidity and mortality affecting young children and older adults. In the aftermath of formalin-inactivated RSV vaccine development, the effort to develop an immunizing agent was carefully guided by epidemiologic and pathophysiological evidence of the virus, including various vaccine technologies. The pipeline of RSV vaccine development includes messenger ribonucleic acid (mRNA), live-attenuated (LAV), subunit, and recombinant vector-based vaccine candidates targeting different virus proteins. The availability of vaccine candidates of various technologies enables adjustment to the individualized needs of each vulnerable age group. Arexvy® (GSK), followed by Abrysvo® (Pfizer), is the first vaccine available for market use as an immunizing agent to prevent lower respiratory tract disease in older adults. Abrysvo is additionally indicated for the passive immunization of infants by maternal administration during pregnancy. This review presents the RSV vaccine pipeline, analyzing the results of clinical trials. The key features of each vaccine technology are also mentioned. Currently, 24 vaccines are in the clinical stage of development, including the 2 licensed vaccines. Research in the field of RSV vaccination, including the pharmacovigilance methods of already approved vaccines, promotes the achievement of successful prevention.
1
Abrysvo® is additionally indicated for passive infant immunization through maternal vaccination during pregnancy; 24 vaccines, including two licensed products, are in clinical development.
2
Arexvy® and Abrysvo® are the first marketed RSV vaccines indicated to prevent lower respiratory tract disease in older adults.
3
Different vaccine technologies may allow vaccination strategies to be tailored to the needs of specific vulnerable age groups.
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RSV causes substantial global morbidity and mortality, particularly among young children and older adults.
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RSV vaccine development includes mRNA, live-attenuated, subunit, and recombinant vector-based candidates targeting different viral proteins.

Respiratory syncytial virus (RSV) vaccines, including candidate and approved vaccines

The development pipeline, clinical-trial evidence, vaccine technologies, indications, and pharmacovigilance of RSV vaccines for preventing respiratory disease in vulnerable populations

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2023-10-19
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Xanthippi Topalidou
Alexis M. Kalergis
Georgios Papazisis
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