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1.
PLoS One ; 10(3): e0119335, 2015.
Article in English | MEDLINE | ID: mdl-25775466

ABSTRACT

Transmission of malaria parasites from humans to Anopheles mosquitoes can be inhibited by specific antibodies elicited during malaria infection, which target surface Plasmodium gametocyte/gamete proteins. Some of these proteins may have potential for vaccine development. Pvs48/45 is a P. vivax gametocyte surface antigen orthologous to Pfs48/45, which may play a role during parasite fertilization and thus has potential for transmission blocking (TB) activity. Here we describe the expression of a recombinant Pvs48/45 protein expressed in Escherichia coli as a ∼60kDa construct which we tested for antigenicity using human sera and for its immunogenicity and transmission blocking activity of specific anti-mouse and anti-monkey Pvs48/45 antibodies. The protein reacted with sera of individuals from malaria-endemic areas and in addition induced specific IgG antibody responses in BALB/c mice and Aotus l. griseimembra monkeys. Sera from both immunized animal species recognized native P. vivax protein in Western blot (WB) and immunofluorescence assays. Moreover, sera from immunized mice and monkeys produced significant inhibition of parasite transmission to An. Albimanus mosquitoes as shown by membrane feeding assays. Results indicate the presence of reactive epitopes in the Pvs48/45 recombinant product that induce antibodies with TB activity. Further testing of this protein is ongoing to determine its vaccine potential.


Subject(s)
Anopheles/immunology , Antigens, Protozoan/immunology , Malaria Vaccines/administration & dosage , Malaria, Vivax/prevention & control , Malaria, Vivax/transmission , Plasmodium vivax/genetics , Animals , Anopheles/parasitology , Antibodies, Protozoan/metabolism , Antigens, Protozoan/genetics , Aotidae/immunology , Aotidae/parasitology , Epitopes/immunology , Escherichia coli/genetics , Escherichia coli/metabolism , Haplorhini , Humans , Immunoglobulin G/metabolism , Malaria Vaccines/genetics , Malaria Vaccines/immunology , Malaria, Vivax/veterinary , Male , Mice , Mice, Inbred BALB C , Plasmodium vivax/immunology , Recombinant Proteins/genetics , Recombinant Proteins/immunology
2.
Mem Inst Oswaldo Cruz ; 106 Suppl 1: 202-11, 2011 Aug.
Article in English | MEDLINE | ID: mdl-21881775

ABSTRACT

Malaria is a vector-borne disease that is considered to be one of the most serious public health problems due to its high global mortality and morbidity rates. Although multiple strategies for controlling malaria have been used, many have had limited impact due to the appearance and rapid dissemination of mosquito resistance to insecticides, parasite resistance to multiple antimalarial drug, and the lack of sustainability. Individuals in endemic areas that have been permanently exposed to the parasite develop specific immune responses capable of diminishing parasite burden and the clinical manifestations of the disease, including blocking of parasite transmission to the mosquito vector. This is referred to as transmission blocking (TB) immunity (TBI) and is mediated by specific antibodies and other factors ingested during the blood meal that inhibit parasite development in the mosquito. These antibodies recognize proteins expressed on either gametocytes or parasite stages that develop in the mosquito midgut and are considered to be potential malaria vaccine candidates. Although these candidates, collectively called TB vaccines (TBV), would not directly stop malaria from infecting individuals, but would stop transmission from infected person to non-infected person. Here, we review the progress that has been achieved in TBI studies and the development of TBV and we highlight their potential usefulness in areas of low endemicity such as Latin America.


Subject(s)
Antibodies, Protozoan/immunology , Antigens, Protozoan/immunology , Malaria Vaccines/immunology , Malaria, Falciparum/prevention & control , Malaria, Vivax/prevention & control , Animals , Humans , Latin America , Malaria, Falciparum/immunology , Malaria, Falciparum/parasitology , Malaria, Vivax/immunology , Malaria, Vivax/parasitology , Plasmodium falciparum/immunology , Plasmodium vivax/immunology , Protozoan Proteins/immunology
3.
Mem. Inst. Oswaldo Cruz ; 106(supl.1): 202-211, Aug. 2011. tab
Article in English | LILACS | ID: lil-597262

ABSTRACT

Malaria is a vector-borne disease that is considered to be one of the most serious public health problems due to its high global mortality and morbidity rates. Although multiple strategies for controlling malaria have been used, many have had limited impact due to the appearance and rapid dissemination of mosquito resistance to insecticides, parasite resistance to multiple antimalarial drug, and the lack of sustainability. Individuals in endemic areas that have been permanently exposed to the parasite develop specific immune responses capable of diminishing parasite burden and the clinical manifestations of the disease, including blocking of parasite transmission to the mosquito vector. This is referred to as transmission blocking (TB) immunity (TBI) and is mediated by specific antibodies and other factors ingested during the blood meal that inhibit parasite development in the mosquito. These antibodies recognize proteins expressed on either gametocytes or parasite stages that develop in the mosquito midgut and are considered to be potential malaria vaccine candidates. Although these candidates, collectively called TB vaccines (TBV), would not directly stop malaria from infecting individuals, but would stop transmission from infected person to non-infected person. Here, we review the progress that has been achieved in TBI studies and the development of TBV and we highlight their potential usefulness in areas of low endemicity such as Latin America.


Subject(s)
Animals , Humans , Antibodies, Protozoan/immunology , Antigens, Protozoan/immunology , Malaria Vaccines/immunology , Malaria, Falciparum , Malaria, Vivax , Latin America , Malaria, Falciparum/immunology , Malaria, Falciparum , Malaria, Vivax/immunology , Malaria, Vivax , Plasmodium falciparum/immunology , Plasmodium vivax/immunology , Protozoan Proteins/immunology
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