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Maternal antibodies interfere with malaria vaccine responses

Research led by ISGlobal reveals that children younger than five months of age may benefit from the RTS,S and R21 malaria vaccines if they live in areas with low malaria transmission, where mothers have less antibodies to the parasite. The study analyzed blood samples from over 600 children and infants and found that high levels of mat...

SourceBarcelona Institute for Global Health (ISGlobal)·JournalThe Lancet Infectious Diseases·TypeRandomized controlled/clinical trial·DateOct 23, 2024

Dramatic reductions in malaria cases and deaths continue over five years with seasonal malaria vaccine-drug combination

The Phase 3 study confirmed that combining the RTS,S vaccine with antimalarial drugs reduces clinical malaria episodes, severe malaria cases, and deaths from malaria in young children by nearly two-thirds compared to either intervention alone. The vaccine-drug combination provided greater than 90% protection against malaria episodes.

SourcePATH·JournalThe Lancet Infectious Diseases·TypeRandomized controlled/clinical trial·DateAug 22, 2023

Malaria vaccine candidate appears safe and produces promising immune response in a cohort of Tanzanian infants

A new malaria vaccine candidate has shown promising results in a cohort of Tanzanian infants, with substantial anti-RH5 immune responses achieved safely through vaccination. The vaccine targets the RH5 protein used by the malaria pathogen to invade red blood cells, providing a second line of defense against disease.

SourceCell Press·JournalMed·TypeExperimental study·DateAug 11, 2023

Scientific breakthrough harnesses mRNA technology to develop powerful malaria vaccine

A breakthrough mRNA vaccine has been developed to target and stimulate protective immune cell responses against malaria. The vaccine combines an RNA-based approach with a liver-specific adjuvant, generating resident memory cells that halt malaria infection in the liver, providing a broader and more protective immune response.

SourceThe Peter Doherty Institute for Infection and Immunity·JournalNature Immunology·TypeExperimental study·DateJul 20, 2023

UM School of Medicine researchers chart path forward on developing mRNA vaccines for infections beyond COVID-19

Researchers at the University of Maryland School of Medicine are using mRNA vaccine technology to combat various infectious diseases. A new clinical trial aims to test an mRNA-based vaccine against malaria, with hopes for a rapid adaptive response to virus evolution and the manufacture of combination vaccines.

SourceUniversity of Maryland School of Medicine·JournalNew England Journal of Medicine·TypeCommentary/editorial·DateMar 23, 2023

Infectious malaria sporozoites produced without mosquitoes provide ground-breaking progress for malaria vaccines and biology research

Researchers have made a breakthrough in producing infectious Plasmodium falciparum sporozoites without the need for mosquitoes, paving the way for more effective malaria vaccines. This achievement accelerates the ability to study the parasite's biology and develop new tools for vaccine development.

SourceSanaria Inc.·JournalNature·TypeData/statistical analysis·DateDec 7, 2022

New genomic research shows why testing malaria vaccines in the clinic is as rigorous as natural exposure in the field

Researchers at the University of Maryland School of Medicine have developed a new method to test malaria vaccines that mimics natural exposure, increasing efficiency and accuracy. The study found the vaccine to be effective in both controlled clinical settings and in the field, with promising results for future mass vaccination programs.

SourceUniversity of Maryland School of Medicine·JournalNature Communications·TypeRandomized controlled/clinical trial·DateJul 19, 2022

Why vaccination against malaria quickly loses its protective effect

A study found that malaria vaccines elicit a weak and limited immune response against the naturally occurring Plasmodium falciparum pathogen, resulting in short-lived protection. The researchers suggest that inducing a broader spectrum of T helper cells could generate longer-lasting immunity.

SourceGerman Cancer Research Center (Deutsches Krebsforschungszentrum, DKFZ)·JournalScience Immunology·TypeExperimental study·DateJun 17, 2022

A novel malaria vaccine vector – target to the liver

Researchers at Kanazawa University have identified a new vaccine platform that targets liver cells to induce anti-malaria immunity. The AAV8 vaccine platform was found to be more effective in eliciting a T cell-mediated response in the liver, providing sterile protection against malaria in a murine model.

SourceKanazawa University·JournalFrontiers in Immunology·DateSep 16, 2021

Severe malaria among young African children dramatically reduced through seasonal vaccination and preventative drug combination

A new study published in the New England Journal of Medicine found that a combination of seasonal vaccination with RTS,S/AS01 E and antimalarial drugs significantly reduces clinical episodes, hospital admissions, and deaths from malaria. The results show a 70% reduction in these outcomes compared to current interventions.

SourceLondon School of Hygiene & Tropical Medicine·TypeRandomized controlled/clinical trial·DateAug 25, 2021

New discovery paves way for next generation malaria vaccine

Scientists at Seattle Children's Research Institute have developed a genetically attenuated parasite (GAP) that arrests late in the liver stage of human malaria, paving the way for a novel next-generation vaccine. The GAP technology has the potential to offer protection to those living in regions where malaria transmission is widespread.

SourceSeattle Children's·JournalJCI Insight·DateJun 16, 2020

An old plant virus inspires the design of a modern vaccine to fight against malaria

A novel malaria vaccine candidate based on the tobacco mosaic virus has shown a 10X improvement over a comparator vaccine in mouse trials. The vaccine uses the TMV coat protein as a scaffold to refocus the host immune system, offering protection against Plasmodium falciparum malaria up to 11 months.

SourceWalter Reed Army Institute of Research·JournalProceedings of the National Academy of Sciences·DateJan 27, 2020