Dissection-independent production of a protective whole-sporozoite malaria vaccine
Blight, J.; Sala, K. A.; Atcheson, E.; Kramer, H.; El-Turabi, A.; Real, E.; Dahalan, F. A.; Bettencourt, P.; Dickinson, E.; Alves, E.; Salman, A. M.; Janse, C. J.; Ashcroft, F.; Hill, A. V. S.; Reyes-Sandoval, A.; Blagborough, A. M.; Baum, J.
Show abstract
Complete protection against human malaria challenge has been achieved using infected mosquitoes as the delivery route for immunization with Plasmodium parasites. Strategies seeking to replicate this efficacy with either a manufactured whole-parasite or subunit vaccine, however, have shown only limited success. A major roadblock to whole parasite vaccine progress and understanding of the human infective sporozoite form in general, is reliance on manual dissection for parasite isolation from infected mosquitoes. We report here the development of a four-step process based on whole mosquito homogenization, slurry and density-gradient filtration, combined with free-flow electrophoresis that is able to rapidly produce a pure, aseptic sporozoite inoculum from hundreds of mosquitoes. Murine P. berghei or human-infective P. falciparum sporozoites produced in this way are 2-3-fold more infective with in vitro hepatocytes and can confer sterile protection when immunized intravenously with subsequent challenge using a mouse malaria model. Critically, we can also demonstrate for the first time 60-70% protection when the same parasites are administered via intramuscular (i.m.) route. In developing a process amenable to industrialisation and demonstrating efficacy by i.m. route these data represent a major advancement in capacity to produce a whole parasite malaria vaccine at scale. One-Sentence SummaryA four-step process for isolating pure infective malaria parasite sporozoites at scale from homogenized whole mosquitoes, independent of manual dissection, is able to produce a whole parasite vaccine inoculum that confers sterilizing protection.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Experimental Determination of the Force of Malaria Infection Reveals a Non-Linear Relationship to Mosquito Sporozoite Loads 94%
- Plasmodium falciparum expresses fewer var genes at lower levels during asymptomatic dry season infections than clinical malaria cases 94%
- The CLIP-domain serine protease CLIPC9 regulates melanization downstream of SPCLIP1, CLIPA8, and CLIPA28 in the malaria vector Anopheles gambiae 94%
Similar papers in this journal
- Transmissibility of clinically relevant atovaquone-resistant Plasmodium falciparum by anopheline mosquitoes 94%
- High-Resolution Proteomics Unveils Salivary Gland Disruption and Saliva-Hemolymph Protein Exchange in Plasmodium-Infected Mosquitoes 93%
- Preclinical characterization and target validation of the antimalarial pantothenamide MMV693183 93%
Similar papers in this journal
- Immunity conferred by drug-cured experimental Trypanosoma cruzi infections is long-lasting and cross-strain protective 93%
- Induced pluripotent stem cell-derived human macrophages as an infection model for Trypanosoma cruzi 91%
- Wolbachia wAlbB inhibit dengue and Zika infection in the mosquito Aedes aegypti with an Australian background 91%
Similar papers in this journal
Similar papers in this journal
- Immunofocusing humoral immunity potentiates the functional efficacy of the AnAPN1 malaria transmission-blocking vaccine antigen 95%
- An Epitope-based Malaria Vaccine Targeting the Junctional Domain of Circumsporozoite Protein 93%
- Virus-like particle vaccines targeting a key epitope in circumsporozoite protein provide sterilizing immunity against malaria 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.