A new shot helps kids stay well.
Mosquitoes can carry a sickness. 
Malaria is a sickness spread by mosquitoes. In 2022, it caused many deaths around the world. 
Doctors now have vaccines to help fight it. The first one is called RTS,S. It is also known by the name Mosquirix.
A new vaccine called R21 is even stronger.
Malaria is a very serious disease spread by mosquitoes. In 2022, it affected about 249 million people in 85 different countries. This sickness caused 608,000 deaths that same year. 
One way these vaccines work is by training the body. The RTS,S vaccine, also called Mosquirix, uses a special protein. This protein is called the CSP antigen.
Many groups worked hard to make these medicines. The RTS,S vaccine was made by PATH Malaria Vaccine Initiative and GlaxoSmithKline. They had help from the Bill and Melinda Gates Foundation. In 2019, pilot projects for this vaccine started in Malawi, Ghana, and Kenya. By 2021, the World Health Organization endorsed it for broad use. UNICEF also signed a contract to supply 18 million doses of RTS,S. This helps reach children in many different countries.
There is also a new vaccine called R21/Matrix-M. It is the most effective vaccine found so far. In initial trials, it had a 77% efficacy rate. This means it is very good at preventing the disease. It is the first vaccine to meet the goal of 75% efficacy. The R21 vaccine was made by the University of Oxford and other groups. In April 2023, Ghana approved it for children aged five months to three years. Nigeria also gave it provisional approval.
Scientists are still looking for even better ways to help. They are studying how to target different parts of the parasite's life. One idea is a vaccine called RH5.1/Matrix-M. This might be used along with the R21 vaccine. This could create a second-generation vaccine that works even better. Learning about these tiny parasites helps us protect huge groups of people everywhere.
Malaria is a serious infectious disease spread by mosquitoes. In 2022, it affected an estimated 249 million people across 85 endemic countries. This disease caused 608,000 deaths in that same year. 
The first approved vaccine is known as RTS,S, or by its brand name, Mosquirix. This is a recombinant vaccine, meaning it is engineered using specific genetic material. It uses the circumsporozoite protein, or CSP antigen, from the pre-erythrocytic stage of the parasite.
To make the vaccine more potent, scientists fused the CSP protein with a surface antigen from the hepatitis B virus. This process helped improve its immunogenicity, which is the ability to provoke an immune response. The vaccine was tested as an emulsion of oil in water. It included adjuvants like monophosphoryl A and QS21 to boost the immune system. In trials, this helped 7 out of 8 volunteers stay protected when challenged with the parasite.
Using the RTS,S vaccine requires a specific schedule for infants. Children need at least three doses by the age of two. A fourth booster dose can extend protection for another one to two years. Clinical trials showed that the vaccine reduces hospital admissions from severe malaria by about 30%. However, the vaccine's effectiveness can wane over time. Without a booster, the protection against severe malaria becomes negligible.
A newer and more effective option is the R21/Matrix-M vaccine. It is the first vaccine to meet the World Health Organization's goal of at least 75% efficacy. Initial trials showed a 77% efficacy rate. It also produces significantly higher antibody levels than the RTS,S vaccine. This vaccine was developed through a large collaboration. Partners included the University of Oxford's Jenner Institute, the Kenya Medical Research Institute, and the Serum Institute of India.
The R21 vaccine also uses the CSP antigen but at a higher proportion. It uses a similar recombinant structure to RTS,S but contains no excess hepatitis B surface antigen. It also utilizes the Matrix-M adjuvant. In a phase III trial involving 4,800 children, the vaccine showed 74% efficacy against severe malaria. Recent data from 2024 showed 78% efficacy in children aged 5 to 17 months. Ghana approved this vaccine in April 2023 for children aged five months to three years. Nigeria also provided provisional approval.
Many different types of vaccines have been studied throughout history. Some researchers used a synthetic peptide-based vaccine called SPf66 in the 1990s. However, it was not effective enough in Africa and was abandoned. Other candidates, like the NYVAC-Pf7, tried to target seven different genes from various life stages of the parasite. While some showed promise in monkeys, human trials resulted in poor antibody responses. There is also the PfSPZ vaccine, which uses radiation-attenuated sporozoites. This candidate has shown over 80% protection in trials, but it must be stored in liquid nitrogen.
Scientists are now looking toward the future of malaria prevention. They are developing a second-generation vaccine called RH5.1/Matrix-M. This candidate targets the erythrocytic stage, which is the stage where the parasite lives in the blood. Researchers hope to combine this with the R21 vaccine. By targeting different parts of the parasite's life cycle, they hope to create even stronger protection. This ongoing work could eventually lead to much better control of the disease.
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