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1.
Lancet Infect Dis ; 23(7): 856-866, 2023 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-36940703

RESUMEN

BACKGROUND: Nirsevimab is an extended half-life monoclonal antibody to the respiratory syncytial virus (RSV) fusion protein that has been developed to protect infants for an entire RSV season. Previous studies have shown that the nirsevimab binding site is highly conserved. However, investigations of the geotemporal evolution of potential escape variants in recent (ie, 2015-2021) RSV seasons have been minimal. Here, we examine prospective RSV surveillance data to assess the geotemporal prevalence of RSV A and B, and functionally characterise the effect of the nirsevimab binding-site substitutions identified between 2015 and 2021. METHODS: We assessed the geotemporal prevalence of RSV A and B and nirsevimab binding-site conservation between 2015 and 2021 from three prospective RSV molecular surveillance studies (the US-based OUTSMART-RSV, the global INFORM-RSV, and a pilot study in South Africa). Nirsevimab binding-site substitutions were assessed in an RSV microneutralisation susceptibility assay. We contextualised our findings by assessing fusion-protein sequence diversity from 1956 to 2021 relative to other respiratory-virus envelope glycoproteins using RSV fusion protein sequences published in NCBI GenBank. FINDINGS: We identified 5675 RSV A and RSV B fusion protein sequences (2875 RSV A and 2800 RSV B) from the three surveillance studies (2015-2021). Nearly all (25 [100%] of 25 positions of RSV A fusion proteins and 22 [88%] of 25 positions of RSV B fusion proteins) amino acids within the nirsevimab binding site remained highly conserved between 2015 and 2021. A highly prevalent (ie, >40·0% of all sequences) nirsevimab binding-site Ile206Met:Gln209Arg RSV B polymorphism arose between 2016 and 2021. Nirsevimab neutralised a diverse set of recombinant RSV viruses, including new variants containing binding-site substitutions. RSV B variants with reduced susceptibility to nirsevimab neutralisation were detected at low frequencies (ie, prevalence <1·0%) between 2015 and 2021. We used 3626 RSV fusion-protein sequences published in NCBI GenBank between 1956 and 2021 (2024 RSV and 1602 RSV B) to show that the RSV fusion protein had lower genetic diversity than influenza haemagglutinin and SARS-CoV-2 spike proteins. INTERPRETATION: The nirsevimab binding site was highly conserved between 1956 and 2021. Nirsevimab escape variants were rare and have not increased over time. FUNDING: AstraZeneca and Sanofi.


Asunto(s)
COVID-19 , Infecciones por Virus Sincitial Respiratorio , Virus Sincitial Respiratorio Humano , Lactante , Humanos , Infecciones por Virus Sincitial Respiratorio/epidemiología , Estudios Prospectivos , Proyectos Piloto , SARS-CoV-2 , Virus Sincitial Respiratorio Humano/genética , Glicoproteínas , Sitios de Unión
2.
Pediatr Infect Dis J ; 36(6): 602-608, 2017 06.
Artículo en Inglés | MEDLINE | ID: mdl-28067718

RESUMEN

BACKGROUND: The live, attenuated, tetravalent dengue vaccine (CYD-TDV) is licensed in a number of dengue endemic countries for individuals ≥9 years of age. Before the integration of any vaccine into childhood vaccination schedules, a lack of immune interference and acceptable safety when coadministered with other recommended vaccines should be demonstrated. METHODS: This randomized, multi-center phase III trial was conducted in Mexico. Healthy toddlers (n = 732) received a booster dose of a licensed pentavalent combination vaccine [diphtheria, tetanus, acellular pertussis, inactivated polio vaccine and Haemophilus influenzae type b (DTaP-IPV//Hib)] either concomitantly or sequentially, with the second dose of CYD-TDV administered as a 3-dose schedule. Antibody titers against diphtheria toxoid, tetanus toxoid and pertussis antigens were measured by enzyme-linked immunosorbent assay. Antibodies against poliovirus and dengue serotypes were measured using a plaque reduction neutralization test. Noninferiority was demonstrated for each of the DTaP-IPV//Hib antigens if the lower limit of the 2-sided 95% confidence interval of the difference in seroconversion rates between the 2 groups (CYD-TDV and placebo) was ≥10%. Safety of both vaccines was assessed. RESULTS: Noninferiority in immune response was demonstrated for all DTaP-IPV//Hib antigens. After 3 doses of CYD-TDV, no difference was observed in the immune response for CYD-TDV between groups. There were no safety concerns during the study. CONCLUSION: Coadministration of the DTaP-IPV//Hib booster vaccine with CYD-TDV has no observed impact on the immunogenicity or safety profile of the DTaP-IPV//Hib booster vaccine. No difference was observed on the CYD-TDV profile when administered concomitantly or sequentially with the DTaP-IPV//Hib booster vaccine.


Asunto(s)
Vacunas contra el Dengue/efectos adversos , Vacunas contra el Dengue/inmunología , Dengue/prevención & control , Vacuna contra Difteria, Tétanos y Tos Ferina/efectos adversos , Vacuna contra Difteria, Tétanos y Tos Ferina/inmunología , Vacunas contra Haemophilus/efectos adversos , Vacunas contra Haemophilus/inmunología , Inmunización Secundaria/efectos adversos , Vacuna Antipolio de Virus Inactivados/efectos adversos , Vacuna Antipolio de Virus Inactivados/inmunología , Anticuerpos Antivirales/sangre , Dengue/inmunología , Dengue/virología , Vacunas contra el Dengue/administración & dosificación , Virus del Dengue/inmunología , Vacuna contra Difteria, Tétanos y Tos Ferina/administración & dosificación , Femenino , Vacunas contra Haemophilus/administración & dosificación , Humanos , Esquemas de Inmunización , Lactante , Masculino , México , Vacuna Antipolio de Virus Inactivados/administración & dosificación , Vacunas Combinadas/administración & dosificación , Vacunas Combinadas/efectos adversos , Vacunas Combinadas/inmunología , Viremia/virología
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