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Biology subjects

Teelen, K.

Publications and source records attributed to Teelen, K..

3 recordsLinked to original sources

Controlled human infection with Plasmodium falciparum-infected mosquito bites elicits antibodies against mosquito salivary protein SG1L3

Human malaria infections begin with the injection of Plasmodium sporozoites via mosquito saliva. Whole sporozoite immunizations have been used as a model to study immune responses to malaria parasites, having culminated in circumsporozoite protein (CSP)-targeting vaccines and monoclonal antibodies (mAbs). However, antibody responses targeting non-CSP antigens on the sporozoite surface remain poorly characterized. Here, we isolated single B cells from a human volunteer immunized by Plasmodium falciparum-infected mosquito bites, who had acquired non-CSP-specific antibodies that recognize sporozoites. We identified two mAbs that recognize the surface of P. falciparum sporozoites, but do not bind to CSP. Using immunoprecipitation followed by mass-spectrometry, we found that the target of these mAbs is not a P. falciparum protein but the mosquito salivary protein SG1L3. We observed that recombinant SG1L3 binds to P. falciparum sporozoites. However, the SG1L3-specific mAbs and SG1L3-specific polyclonal antibodies from this volunteer, as well as polyclonal antibodies raised against recombinant SG1L3 in rabbits, fail to block liver stage infection in vitro, making this an unlikely target for functional antibodies. We observed that inhabitants from an area with intense Anopheles exposure in Burkina Faso can have antibodies against SG1L3, and that antibody titers increase with age. In conclusion, we identified the first human mAbs against a mosquito saliva protein that binds to the surface of sporozoites. Future work should assess whether naturally acquired antibodies against this protein may be used as a serological marker of mosquito exposure.

microbiology↗

Expelling of P. falciparum sporozoites by Anopheles stephensi mosquitoes during repeated feeding

It is currently unclear whether repeated mosquito feeding attempts achieve pathogen transmission. We measured Plasmodium falciparum sporozoite expelling in Anopheles stephensi mosquitoes during two interrupted feeding attempts. The number of expelled sporozoites was positively correlated with salivary gland sporozoite load during the first feeding effort ({rho}= 0.36, p= 0.0181) but less so during subsequent feeding ({rho}= 0.06, p= 0.6811). The median number of expelled sporozoites was of similar magnitude during the first and second feeding event, with a strong correlation between them ({rho}= 0.56, p= 0.0002). We conclude that repeated feeding results in repeated sporozoite inoculation at similar intensity.

microbiology↗

Pfs230 Domain 12 is a potent malaria transmission-blocking vaccine candidate

Malaria transmission-blocking vaccines (TBV) target sexual stage parasites that are transmitted to mosquitoes and critical for spread of the pathogen. The clinically most advanced TBV candidate contains part of the Pro-domain (Pro) and Domain 1 (D1) of Plasmodium falciparum surface protein Pfs230. Subunit vaccines that contain other domains of Pfs230 have so far failed to induce functional antibodies. Here, we produced eight single domain fragments of Pfs230 in Drosophila melanogaster S2 cells and assessed their immunogenicity in mouse immunizations. In addition to D1-specific antibodies, antibodies raised against Domain 12 (D12) showed strong recognition of Pfs230 on the surface of female parasites. Importantly, D12-specific antibodies showed strong functional transmission-reducing activity in membrane feeding assays with cultured parasites, an activity that was complement-dependent. Murine D12-specific antibodies further reduced mosquito transmission of parasites acquired from naturally infected parasite carriers. The D12 antigen was recognized by sera from an all-age cohort of individuals who had been naturally exposed to Plasmodium falciparum with antibody levels increasing with age. In conclusion, we identified Pfs230D12 as a promising new TBV candidate. Impact statementPfs230 Domain 12 induces antibodies in mice that strongly reduce transmission of lab-cultured and naturally circulating malaria parasites to mosquitoes.

immunology↗