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1.
Commun Biol ; 3(1): 395, 2020 07 24.
Article in English | MEDLINE | ID: mdl-32709983

ABSTRACT

Proteins Pfs230 and Pfs48/45 are Plasmodium falciparum transmission-blocking (TB) vaccine candidates that form a membrane-bound protein complex on gametes. The biological role of Pfs230 or the Pfs230-Pfs48/45 complex remains poorly understood. Here, we present the crystal structure of recombinant Pfs230 domain 1 (Pfs230D1M), a 6-cysteine domain, in complex with the Fab fragment of a TB monoclonal antibody (mAb) 4F12. We observed the arrangement of Pfs230 on the surface of macrogametes differed from that on microgametes, and that Pfs230, with no known membrane anchor, may exist on the membrane surface in the absence of Pfs48/45. 4F12 appears to sterically interfere with Pfs230 function. Combining mAbs against different epitopes of Pfs230D1 or of Pfs230D1 and Pfs48/45, significantly increased TB activity. These studies elucidate a mechanism of action of the Pfs230D1 vaccine, model the functional activity induced by a polyclonal antibody response and support the development of TB vaccines targeting Pfs230D1 and Pfs230D1-Pfs48/45.


Subject(s)
Antigens, Protozoan/immunology , Malaria Vaccines/pharmacology , Malaria, Falciparum/prevention & control , Plasmodium falciparum/pathogenicity , Animals , Antigens, Protozoan/genetics , Humans , Malaria Vaccines/immunology , Malaria, Falciparum/immunology , Malaria, Falciparum/parasitology , Malaria, Falciparum/transmission , Membrane Glycoproteins/antagonists & inhibitors , Membrane Glycoproteins/immunology , Plasmodium falciparum/immunology , Protozoan Proteins/antagonists & inhibitors , Protozoan Proteins/immunology
2.
Vaccine ; 37(8): 1038-1045, 2019 02 14.
Article in English | MEDLINE | ID: mdl-30685251

ABSTRACT

INTRODUCTION: Malaria transmission blocking vaccines (TBV) are innovative approaches that aim to induce immunity in humans against Plasmodium during mosquito stage, neutralizing the capacity of the infected vectors to transmit malaria. Pfs230D1-EPA/Alhydrogel®, a promising protein-protein conjugate malaria TBV, is currently being tested in human clinical trials in areas where P. falciparum malaria is coendemic with helminth parasites. Helminths are complex metazoans that share the master capacity to downregulate the host immune response towards themselves and also to bystander antigens, including vaccines. However, it is not known whether the activity of a protein-based malaria TBV may be affected by a chronic helminth infection. METHODS: Using an experimental murine model for a chronic helminth infection (Heligmosomoides polygyrus bakeri - Hpb), we evaluated whether prior infection alters the activity of Pfs230D1-EPA/Alhydrogel® TBV in mice. RESULTS: After establishment of a chronic infection, characterized by a marked increase of parasite antigen-specific IgG1, IgA and IgE antibody responses, concomitant with an increase of systemic IL-10, IL-5 and IL-6 levels, the Hpb-infected mice were immunized with Pfs230D1-EPA/Alhydrogel® and the vaccine-specific immune response was compared with that in non-infected immunized mice. TBV immunizations induced an elevated vaccine specific-antibody response, however Pfs230D1 specific-IgG levels were similar between infected and uninfected mice at days 15, 25 and 35 post-vaccination. Absolute numbers of Pfs230D1-activated B cells generated in response to the vaccine were also similar among the vaccinated groups. Finally, vaccine activity assessed by reduction of oocyst number in P. falciparum infected mosquitoes was similar between Hpb-infected and immunized mice with non-infected immunized mice. CONCLUSION: Pfs230D1-EPA/Alhydrogel® efficacy is not impaired by a chronic helminth infection in mice.


Subject(s)
Aluminum Hydroxide/immunology , Antigens, Protozoan/immunology , Carrier Proteins/immunology , Helminths/immunology , Malaria Vaccines/immunology , Malaria, Falciparum/immunology , Protozoan Proteins/immunology , Animals , Antibodies, Protozoan/immunology , Antigens/immunology , Immunization/methods , Male , Mice , Mice, Inbred BALB C , Plasmodium falciparum/immunology , Vaccination/methods , Vaccines, Conjugate/immunology
3.
Sci Rep ; 7: 40312, 2017 01 16.
Article in English | MEDLINE | ID: mdl-28091576

ABSTRACT

Humoral immune responses have the potential to maintain protective antibody levels for years due to the immunoglobulin-secreting activity of long-lived plasma cells (LLPCs). However, many subunit vaccines under development fail to generate robust LLPC responses, and therefore a variety of strategies are being employed to overcome this limitation, including conjugation to carrier proteins and/or formulation with potent adjuvants. Pfs25, an antigen expressed on malaria zygotes and ookinetes, is a leading transmission blocking vaccine (TBV) candidate for Plasmodium falciparum. Currently, the conjugate vaccine Pfs25-EPA/Alhydrogel is in Phase 1 clinical trials in the USA and Africa. Thus far, it has proven to be safe and immunogenic, but it is expected that a more potent formulation will be required to establish antibody titers that persist for several malaria transmission seasons. We sought to determine the contribution of carrier determinants and adjuvants in promoting high-titer, long-lived antibody responses against Pfs25. We found that both adjuvants and carrier proteins influence the magnitude and capacity of Pfs25-specific humoral responses to remain above a protective level. Furthermore, a liposomal adjuvant with QS21 and a TLR4 agonist (GLA-LSQ) was especially effective at inducing T follicular helper (Tfh) and LLPC responses to Pfs25 when coupled to immunogenic carrier proteins.


Subject(s)
Adjuvants, Immunologic/metabolism , Antibody Formation/immunology , Carrier Proteins/metabolism , Cross-Priming/immunology , Malaria Vaccines/immunology , Plasmodium falciparum/immunology , Protozoan Proteins/immunology , T-Lymphocytes/immunology , Animals , Antibodies, Protozoan/immunology , Antigens, Protozoan/immunology , Female , Immunity, Cellular , Immunity, Humoral , Immunization , Malaria, Falciparum/immunology , Mice, Inbred C57BL
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