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1.
BMJ Glob Health ; 9(4)2024 Apr 30.
Article En | MEDLINE | ID: mdl-38688565

Rapid diagnostic tests (RDTs) are critical for preparedness and response against an outbreak or pandemic and have been highlighted in the 100 Days Mission, a global initiative that aims to prepare the world for the next epidemic/pandemic by driving the development of diagnostics, vaccines and therapeutics within 100 days of recognition of a novel Disease X threat.RDTs play a pivotal role in early case identification, surveillance and case management, and are critical for initiating deployment of vaccine and monoclonal antibodies. Currently available RDTs, however, have limited clinical sensitivity and specificity and inadequate validation. The development, validation and implementation of RDTs require adequate and sustained financing from both public and private sources. While the World Health Assembly recently passed a resolution on diagnostic capacity strengthening that urges individual Member States to commit resources towards this, the resolution is not binding and implementation will likely be impeded by limited financial resources and other competing priorities, particularly in low-income countries. Meanwhile, the diagnostic industry has not sufficiently invested in RDT development for high priority pathogens.Currently, vaccine development projects are getting the largest funding support among medical countermeasures. Yet vaccines are insufficient tools in isolation, and pandemic preparedness will be incomplete without parallel investment in diagnostics and therapeutics.The Pandemic Fund, a global financing mechanism recently established for strengthening pandemic prevention, preparedness and response, may be a future avenue for supporting diagnostic development.In this paper, we discuss why RDTs are critical for preparedness and response. We also discuss RDT investment challenges and reflect on the way forward.


Diagnostic Tests, Routine , Disease Outbreaks , Humans , Disease Outbreaks/prevention & control , COVID-19/prevention & control , COVID-19/diagnosis , Pandemics/prevention & control , Global Health , Rapid Diagnostic Tests
4.
Nat Med ; 27(9): 1636-1645, 2021 09.
Article En | MEDLINE | ID: mdl-34518679

The radiation-attenuated Plasmodium falciparum sporozoite (PfSPZ) vaccine provides protection against P. falciparum infection in malaria-naïve adults. Preclinical studies show that T cell-mediated immunity is required for protection and is readily induced in humans after vaccination. However, previous malaria exposure can limit immune responses and vaccine efficacy (VE) in adults. We hypothesized that infants with less previous exposure to malaria would have improved immunity and protection. We conducted a multi-arm, randomized, double-blind, placebo-controlled trial in 336 infants aged 5-12 months to determine the safety, tolerability, immunogenicity and efficacy of the PfSPZ Vaccine in infants in a high-transmission malaria setting in western Kenya ( NCT02687373 ). Groups of 84 infants each received 4.5 × 105, 9.0 × 105 or 1.8 × 106 PfSPZ Vaccine or saline three times at 8-week intervals. The vaccine was well tolerated; 52 (20.6%) children in the vaccine groups and 20 (23.8%) in the placebo group experienced related solicited adverse events (AEs) within 28 d postvaccination and most were mild. There was 1 grade 3-related solicited AE in the vaccine group (0.4%) and 2 in the placebo group (2.4%). Seizures were more common in the highest-dose group (14.3%) compared to 6.0% of controls, with most being attributed to malaria. There was no significant protection against P. falciparum infection in any dose group at 6 months (VE in the 9.0 × 105 dose group = -6.5%, P = 0.598, the primary statistical end point of the study). VE against clinical malaria 3 months after the last dose in the highest-dose group was 45.8% (P = 0.027), an exploratory end point. There was a dose-dependent increase in antibody responses that correlated with VE at 6 months in the lowest- and highest-dose groups. T cell responses were undetectable across all dose groups. Detection of Vδ2+Vγ9+ T cells, which have been correlated with induction of PfSPZ Vaccine T cell immunity and protection in adults, were infrequent. These data suggest that PfSPZ Vaccine-induced T cell immunity is age-dependent and may be influenced by Vδ2+Vγ9+ T cell frequency. Since there was no significant VE at 6 months in these infants, these vaccine regimens will likely not be pursued further in this age group.


Malaria Vaccines/administration & dosage , Malaria, Falciparum/drug therapy , Plasmodium falciparum/drug effects , Vaccines, Attenuated/administration & dosage , Adult , Antibody Formation/drug effects , Antibody Formation/immunology , B-Lymphocytes/drug effects , B-Lymphocytes/immunology , Double-Blind Method , Humans , Infant , Kenya/epidemiology , Malaria Vaccines/adverse effects , Malaria, Falciparum/immunology , Malaria, Falciparum/parasitology , Malaria, Falciparum/prevention & control , Plasmodium falciparum/pathogenicity , Sporozoites/drug effects , Sporozoites/pathogenicity , T-Lymphocytes/drug effects , Vaccination , Vaccines, Attenuated/adverse effects
5.
J Clin Pharmacol ; 58 Suppl 10: S123-S139, 2018 10.
Article En | MEDLINE | ID: mdl-30248195

Vaccines are increasingly based on new constructs, new technologies, and new compounds. Novel immunization programs are rapidly implemented globally. In this article, we highlight selected hot topics of this highly dynamic and broad field of scientific and public health development. The first section focuses on novel vaccines including malaria, dengue, serogroup B meningococcal, and respiratory syncytial virus vaccines and antibodies. The second section is addressing emerging strategies and programmatic challenges including maternal immunization, integrated mother-child safety monitoring, and finally coping strategies with vaccine shortages.


Vaccines/supply & distribution , Vaccines/therapeutic use , Antibodies, Viral/immunology , Dengue/prevention & control , Drug Development , Europe , Female , Humans , Immunization/adverse effects , Malaria/prevention & control , Meningitis, Meningococcal/prevention & control , Pregnancy , Respiratory Syncytial Virus Infections/prevention & control , Respiratory Syncytial Viruses/immunology
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