Induction of protective immunity against toxoplasmosis in mice by immunization with Toxoplasma gondii RNA. 2006

Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
Université François-Rabelais de Tours, INRA, UMR 0483 Université-INRA d'Immunologie Parasitaire et de Vaccinologie, IFR Agents Transmissibles et Infectiologie, UFR des Sciences Pharmaceutiques, 31 Avenue Monge, 37200 Tours, France. dimier@univ-tours.fr

Toxoplasma gondii enters the mucosal surfaces of the host, and so immunity at these sites is of major interest. Due to the compartmentalization of the immune response, systemic immunization does not induce high levels of immunity at mucosal surfaces. Intranasal immunization has been shown to be very effective in inducing both systemic and mucosal immune responses. Immunization with mRNA can induce both humoral and cell-mediated immune responses, both of which are important in conferring immunity to T. gondii. The efficacy of RNA vaccination by the nasal route with T. gondii RNA was evaluated. We assessed the percentage of cumulative survival after an oral challenge with a lethal dose of T. gondii cysts (40 cysts), and the number of brain cysts following a challenge with a sublethal dose of T. gondii 76 K cysts (15 cysts). Vaccinated mice were found to be significantly better protected than non-immunized mice after a challenge with a lethal dose of cysts; and a challenge with a sublethal dose also resulted in fewer brain cysts than in non-immunized mice. Sera and intestinal secretions of immunized mice recognized T. gondii antigens, suggesting that a specific humoral immune response may occur. Moreover, a specific lymphoproliferative response observed in cervical lymph nodes may confer protection. These preliminary findings suggest that RNA vaccination by a mucosal route could be feasible.

UI MeSH Term Description Entries
D007114 Immunization Deliberate stimulation of the host's immune response. ACTIVE IMMUNIZATION involves administration of ANTIGENS or IMMUNOLOGIC ADJUVANTS. PASSIVE IMMUNIZATION involves administration of IMMUNE SERA or LYMPHOCYTES or their extracts (e.g., transfer factor, immune RNA) or transplantation of immunocompetent cell producing tissue (thymus or bone marrow). Immunologic Stimulation,Immunostimulation,Sensitization, Immunologic,Variolation,Immunologic Sensitization,Immunological Stimulation,Sensitization, Immunological,Stimulation, Immunologic,Immunizations,Immunological Sensitization,Immunological Sensitizations,Immunological Stimulations,Sensitizations, Immunological,Stimulation, Immunological,Stimulations, Immunological,Variolations
D008213 Lymphocyte Activation Morphologic alteration of small B LYMPHOCYTES or T LYMPHOCYTES in culture into large blast-like cells able to synthesize DNA and RNA and to divide mitotically. It is induced by INTERLEUKINS; MITOGENS such as PHYTOHEMAGGLUTININS, and by specific ANTIGENS. It may also occur in vivo as in GRAFT REJECTION. Blast Transformation,Blastogenesis,Lymphoblast Transformation,Lymphocyte Stimulation,Lymphocyte Transformation,Transformation, Blast,Transformation, Lymphoblast,Transformation, Lymphocyte,Activation, Lymphocyte,Stimulation, Lymphocyte
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D005260 Female Females
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012335 RNA, Ribosomal The most abundant form of RNA. Together with proteins, it forms the ribosomes, playing a structural role and also a role in ribosomal binding of mRNA and tRNAs. Individual chains are conventionally designated by their sedimentation coefficients. In eukaryotes, four large chains exist, synthesized in the nucleolus and constituting about 50% of the ribosome. (Dorland, 28th ed) Ribosomal RNA,15S RNA,RNA, 15S
D014122 Toxoplasma A genus of protozoa parasitic to birds and mammals. T. gondii is one of the most common infectious pathogenic animal parasites of man. Toxoplasma gondii,Toxoplasma gondius,Toxoplasmas,gondius, Toxoplasma
D014124 Toxoplasmosis, Animal Acquired infection of non-human animals by organisms of the genus TOXOPLASMA. Animal Toxoplasmoses,Animal Toxoplasmosis,Toxoplasmoses, Animal
D016052 Protozoan Vaccines Suspensions of attenuated or killed protozoa administered for the prevention or treatment of infectious protozoan disease. Vaccines, Protozoan
D016053 RNA, Protozoan Ribonucleic acid in protozoa having regulatory and catalytic roles as well as involvement in protein synthesis. Protozoan RNA

Related Publications

Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
January 2017, PloS one,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
May 2000, Vaccine,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
January 2016, Frontiers in microbiology,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
January 2011, Clinical and vaccine immunology : CVI,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
January 2019, Frontiers in microbiology,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
February 2016, Vaccine,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
September 2011, Vaccine,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
December 2013, Vaccine,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
October 2016, BMC immunology,
Isabelle Dimier-Poisson, and Fleur Aline, and Daniel Bout, and Marie-Noëlle Mévélec
April 2006, Microbes and infection,
Copied contents to your clipboard!