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1.
Nat Immunol ; 23(5): 743-756, 2022 05.
Article in English | MEDLINE | ID: mdl-35437326

ABSTRACT

Phenotypic and transcriptional profiling of regulatory T (Treg) cells at homeostasis reveals that T cell receptor activation promotes Treg cells with an effector phenotype (eTreg) characterized by the production of interleukin-10 and expression of the inhibitory receptor PD-1. At homeostasis, blockade of the PD-1 pathway results in enhanced eTreg cell activity, whereas during infection with Toxoplasma gondii, early interferon-γ upregulates myeloid cell expression of PD-L1 associated with reduced Treg cell populations. In infected mice, blockade of PD-L1, complete deletion of PD-1 or lineage-specific deletion of PD-1 in Treg cells prevents loss of eTreg cells. These interventions resulted in a reduced ratio of pathogen-specific effector T cells: eTreg cells and increased levels of interleukin-10 that mitigated the development of immunopathology, but which could compromise parasite control. Thus, eTreg cell expression of PD-1 acts as a sensor to rapidly tune the pool of eTreg cells at homeostasis and during inflammatory processes.


Subject(s)
B7-H1 Antigen , Programmed Cell Death 1 Receptor , T-Lymphocytes, Regulatory , Toxoplasmosis, Animal , Animals , B7-H1 Antigen/immunology , Homeostasis , Interleukin-10/immunology , Mice , Programmed Cell Death 1 Receptor/immunology , T-Lymphocytes, Regulatory/immunology , Toxoplasma/immunology , Toxoplasmosis, Animal/immunology
2.
PLoS Biol ; 22(6): e3002690, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38857298

ABSTRACT

As Toxoplasma gondii disseminates through its host, the parasite must sense and adapt to its environment and scavenge nutrients. Oxygen (O2) is one such environmental factor and cytoplasmic prolyl 4-hydroxylases (PHDs) are evolutionarily conserved O2 cellular sensing proteins that regulate responses to changes in O2 availability. Toxoplasma expresses 2 PHDs. One of them, TgPHYa hydroxylates SKP1, a subunit of the SCF-E3 ubiquitin ligase complex. In vitro, TgPHYa is important for growth at low O2 levels. However, studies have yet to examine the role that TgPHYa or any other pathogen-encoded PHD plays in virulence and disease. Using a type II ME49 Toxoplasma TgPHYa knockout, we report that TgPHYa is important for Toxoplasma virulence and brain cyst formation in mice. We further find that while TgPHYa mutant parasites can establish an infection in the gut, they are unable to efficiently disseminate to peripheral tissues because the mutant parasites are unable to survive within recruited immune cells. Since this phenotype was abrogated in IFNγ knockout mice, we studied how TgPHYa mediates survival in IFNγ-treated cells. We find that TgPHYa is not required for release of parasite-encoded effectors into host cells that neutralize anti-parasitic processes induced by IFNγ. In contrast, we find that TgPHYa is required for the parasite to scavenge tryptophan, which is an amino acid whose levels are decreased after IFNγ up-regulates the tryptophan-catabolizing enzyme, indoleamine dioxygenase (IDO). We further find, relative to wild-type mice, that IDO knockout mice display increased morbidity when infected with TgPHYa knockout parasites. Together, these data identify the first parasite mechanism for evading IFNγ-induced nutritional immunity and highlight a novel role that oxygen-sensing proteins play in pathogen growth and virulence.


Subject(s)
Interferon-gamma , Oxygen , Protozoan Proteins , Toxoplasma , Animals , Toxoplasma/pathogenicity , Interferon-gamma/metabolism , Mice , Protozoan Proteins/metabolism , Protozoan Proteins/genetics , Oxygen/metabolism , Mice, Inbred C57BL , Virulence , Indoleamine-Pyrrole 2,3,-Dioxygenase/metabolism , Indoleamine-Pyrrole 2,3,-Dioxygenase/genetics , Female , Brain/parasitology , Brain/metabolism , Toxoplasmosis, Animal/immunology , Toxoplasmosis, Animal/metabolism , Toxoplasmosis, Animal/parasitology , Toxoplasmosis/immunology , Toxoplasmosis/metabolism , Toxoplasmosis/parasitology
3.
PLoS Pathog ; 20(1): e1011908, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38198498

ABSTRACT

Macroecological approaches can provide valuable insight into the epidemiology of globally distributed, multi-host pathogens. Toxoplasma gondii is a protozoan that infects any warm-blooded animal, including humans, in almost every habitat worldwide. Toxoplasma gondii infects its hosts through oocysts in the environment, carnivory of tissue cysts within intermediate host prey and vertical transmission. These routes of infection enable specific predictions regarding the ecological and life history traits that should predispose specific taxa to higher exposure and, thus infection rates of T. gondii. Using T. gondii prevalence data compiled from 485 studies representing 533 free-ranging wild mammalian species, we examined how ecological (habitat type, trophic level) and life history (longevity, vagility, gestation duration and torpor) traits influence T. gondii infection globally. We also compared T. gondii prevalence between wild and domesticated species from the same taxonomic families using data compiled from 540 studies of domestic cattle, sheep, and pigs. Across free-ranging wildlife, we found the average T. gondii prevalence was 22%, which is comparable to the global human estimate. Among ecological guilds, terrestrial species had lower T. gondii prevalence than aquatic species, with freshwater aquatic taxa having an increased prevalence compared to marine aquatic species. Dietary niches were also influential, with carnivores having an increased risk compared to other trophic feeding groups that have reduced tissue cyst exposure in their diet. With respect to influential life history traits, we found that more vagile wildlife species had higher T. gondii infection rates, perhaps because of the higher cumulative risk of infection during movement through areas with varying T. gondii environmental loads. Domestic farmed species had a higher T. gondii prevalence compared to free-ranging confamilial wildlife species. Through a macroecological approach, we determined the relative significance of transmission routes of a generalist pathogen, demonstrating an increased infection risk for aquatic and carnivorous species and highlighting the importance of preventing pathogen pollution into aquatic environments. Toxoplasma gondii is increasingly understood to be primarily an anthropogenically-associated pathogen whose dissemination is enhanced by ecosystem degradation and human subsidisation of free-roaming domestic cats. Adopting an ecosystem restoration approach to reduce one of the world's most common parasites would synergistically contribute to other initiatives in conservation, feline and wildlife welfare, climate change, food security and public health.


Subject(s)
Toxoplasma , Toxoplasmosis, Animal , Animals , Cats , Cattle , Animals, Wild , Ecosystem , Mammals , Prevalence , Sheep , Swine , Toxoplasmosis, Animal/epidemiology , Toxoplasmosis, Animal/parasitology
4.
Nat Immunol ; 14(2): 136-42, 2013 Feb.
Article in English | MEDLINE | ID: mdl-23263554

ABSTRACT

Activation of Toll-like receptors (TLRs) by pathogens triggers cytokine production and T cell activation, immune defense mechanisms that are linked to immunopathology. Here we show that IFN-γ production by CD4(+) T(H)1 cells during mucosal responses to the protozoan parasite Toxoplasma gondii resulted in dysbiosis and the elimination of Paneth cells. Paneth cell death led to loss of antimicrobial peptides and occurred in conjunction with uncontrolled expansion of the Enterobacteriaceae family of Gram-negative bacteria. The expanded intestinal bacteria were required for the parasite-induced intestinal pathology. The investigation of cell type-specific factors regulating T(H)1 polarization during T. gondii infection identified the T cell-intrinsic TLR pathway as a major regulator of IFN-γ production in CD4(+) T cells responsible for Paneth cell death, dysbiosis and intestinal immunopathology.


Subject(s)
Enterobacteriaceae Infections/pathology , Enterobacteriaceae/growth & development , Paneth Cells/pathology , Signal Transduction/immunology , Th1 Cells/pathology , Toxoplasma/growth & development , Toxoplasmosis, Animal/pathology , Animals , CD4-Positive T-Lymphocytes , Cell Death , Enterobacteriaceae/immunology , Enterobacteriaceae Infections/complications , Enterobacteriaceae Infections/immunology , Enterobacteriaceae Infections/microbiology , Gene Expression Regulation , Host-Parasite Interactions , Host-Pathogen Interactions , Interferon-gamma/genetics , Interferon-gamma/immunology , Interleukin-12/genetics , Interleukin-12/immunology , Lymphocyte Activation , Mice , Mice, Transgenic , Paneth Cells/microbiology , Paneth Cells/parasitology , Receptors, Antigen, T-Cell/genetics , Receptors, Antigen, T-Cell/immunology , Th1 Cells/microbiology , Th1 Cells/parasitology , Toxoplasma/immunology , Toxoplasmosis, Animal/complications , Toxoplasmosis, Animal/immunology , Toxoplasmosis, Animal/parasitology , alpha-Defensins/deficiency
5.
J Immunol ; 208(3): 697-706, 2022 02 01.
Article in English | MEDLINE | ID: mdl-35022274

ABSTRACT

Toxoplasmosis, caused by Toxoplasma gondii, an apicomplexan parasite, infects all warm-blooded animals, including a third of the human population. Laboratory diagnosis of acute toxoplasmosis is based on the detection of anti-T. gondii IgM and IgG and T. gondii nucleic acid; however, these assays have certain limitations. Circulating Ags (CAgs) are reliable diagnostic indicators of acute infection. In this study, we established a model of acute T. gondii infection in Large White pigs. CAg levels peaked between 3 and 5 d after inoculation, and 28 CAgs were identified using an immunoprecipitation-shotgun approach, among which dolichol-phosphate-mannose synthase family protein (TgDPM), C3HC zinc finger-like protein (TgZFLP3), and ribosomal protein RPL7 (TgRPL7) were selected to further investigate their value in the diagnosis of acute toxoplasmosis. Immunofluorescence assays revealed that TgDPM and TgRPL7 were localized in the membrane surface, while TgZFLP3 was localized in the apical end. Western blotting revealed the presence of the three proteins in the serum during acute infection. Indirect ELISA results indicate that TgZFLP3 is likely to be a novel candidate for the diagnosis of acute toxoplasmosis. However, these three proteins may not be useful as candidate vaccines against toxoplasmosis owing to their low protective ability. In addition, deletion of the zflp3 gene partially attenuated virulence in Kunming mice. Collectively, we identified 28 CAgs in the serum of piglets with experimental acute toxoplasmosis and confirmed that TgZFLP3 is a potential biomarker for acute T. gondii infection. The results of this study provide data to improve the detection efficiency of acute toxoplasmosis.


Subject(s)
Antigens, Protozoan/blood , Protozoan Proteins/blood , Toxoplasmosis, Animal/blood , Toxoplasmosis, Animal/diagnosis , Animals , Animals, Outbred Strains , Biomarkers/blood , Disease Models, Animal , Female , Immunoprecipitation , Male , Mice , Swine , Swine Diseases/diagnosis , Swine Diseases/parasitology , Toxoplasma/immunology , Toxoplasmosis, Animal/immunology , Zinc Fingers/genetics
6.
Parasitology ; 151(4): 363-369, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38379406

ABSTRACT

Toxoplasma gondii has at least 318 genotypes distributed worldwide, and tropical regions usually have greater genetic diversity. Campeche is a state located in the southeastern region of México and has favourable climate conditions for the replication and dissemination of this protozoan, similar to those in South American countries where broad genetic diversity has been described. Thus, in this study, 4 T. gondii isolates were obtained from tissues of stray dogs and free-range chickens in Campeche, México, and were genotyped by Mn-PCR-RFLP with 10 typing markers (SAG1, altSAG2, SAG3, BTUB, GRA6, c22-8, c29-2, L358, PK1 and Apico) and 5 virulence markers (CS3, ROP16, ROP17, ROP18 and ROP5) to provide new information about the distribution and virulence prediction of T. gondii genotypes. Two isolates of T. gondii genotype #116 and 2 of genotype #38 were obtained from stray dogs and chickens, respectively. The parasite load found in these species was between <50 and more than 35 000 tachyzoites per mg of tissue. Virulence marker genotyping revealed a recombinant 1&3 ROP5 RFLP pattern in 2 ToxoDB #116 isolates with no prediction of virulence in a murine model, while in the 2 ToxoDB #38 isolates, the ROP18/ROP5 combination predicted high virulence. Considering all the typed markers, there is a predominance of type I and III alleles, as constantly reported for the isolates characterized in various regions of México. It is crucial to determine their phenotype to corroborate the genetic virulence profile of the T. gondii isolates obtained in this study.


Subject(s)
Chickens , Genotype , Poultry Diseases , Protozoan Proteins , Toxoplasma , Toxoplasmosis, Animal , Animals , Mexico/epidemiology , Toxoplasma/genetics , Toxoplasma/pathogenicity , Toxoplasma/classification , Toxoplasma/isolation & purification , Chickens/parasitology , Toxoplasmosis, Animal/parasitology , Virulence , Dogs , Protozoan Proteins/genetics , Mice , Poultry Diseases/parasitology , Polymorphism, Restriction Fragment Length , Dog Diseases/parasitology , Alleles
7.
BMC Vet Res ; 20(1): 71, 2024 Feb 24.
Article in English | MEDLINE | ID: mdl-38395812

ABSTRACT

Toxoplasma gondii causes lifelong infection in most definitive and intermediate hosts. Clinical cases of toxoplasmosis in captive cheetahs have been reported. However, there are few reports of viable T. gondii strains isolated from cheetahs. Here, T. gondii infection was investigated using molecular and serological assays in cheetahs from China. Modified agglutination test (MAT) (cut-off: 1:25) indicated that all six examined cheetahs (n = 6) showed T. gondii antibodies. Toxoplasma gondii DNA was detected in three out of five cheetahs. Two viable T. gondii strains were isolated from the striated muscles of two cheetahs using mice bioassay. They were designated as TgCheetahCHn1 and TgCheetahCHn2. Genetic characterization of DNA derived from tachyzoites was performed using RFLP-PCR of 10 markers. Toxoplasma gondii TgCheetahCHn1 is ToxoDB PCR-RFLP genotype #319, and the alleles of ROP18/ROP5 types were 3/7. TgCheetahCHn2 is ToxoDB genotype #9, and the alleles of ROP18/ROP5 were 3/6. The average survival time of TgCheetahCHn1-infected Swiss mice was 22 ± 1 days (n = 23), and the mice did not have detectable T. gondii-specific antibodies until 117 ± 30 days post-inoculation (n = 8), therefore, TgCheetahCHn1 had intermediate virulence. TgCheetahCHn2 was avirulent for Swiss mice. Few brain tissue cysts (0-50) were observed in the mice inoculated with TgCheetahCHn1 or TgCheetahCHn2. The results provide direct evidence of cheetah as intermediate host of T. gondii.


Subject(s)
Acinonyx , Rodent Diseases , Toxoplasma , Toxoplasmosis, Animal , Animals , Mice , Genotype , Antibodies, Protozoan , DNA, Protozoan/genetics
8.
BMC Vet Res ; 20(1): 62, 2024 Feb 22.
Article in English | MEDLINE | ID: mdl-38389083

ABSTRACT

BACKGROUND: The wild boar (Sus scrofa) and the Apennine wolf (Canis lupus italicus) are two wild species that have both increased their presence in the Italian territory, albeit in varying numbers. They can be occasionally found in peri-urban areas as well. Both of these species can serve as intermediate hosts for Toxoplasma gondii, as they can become infected either through the consumption of oocysts found in water, soil, or on vegetables, or through the ingestion of meat containing bradyzoites. Consequently, these animals can be regarded as key indicators of Toxoplasma presence in the wild or peri-urban environment. In our study, we examined a total of 174 wild boar meat juice and 128 wolf sera from Italy for the detection of T. gondii IgG using the indirect fluorescent antibody test (IFAT). RESULTS: The results showed that 40 (22.6%) of the wild boar meat juice and 34 (26.6%) of the wolf serum samples tested positive. Interestingly, there were no significant differences in seropositivity with respect to gender, age group, or the region of origin in both species. CONCLUSIONS: Overall the results indicate a moderate exposure in both the species under investigation, highlighting the spread of T. gondii in sylvatic and periurban environments. The prevalence of T. gondii in wild boar is consistent with findings from other studies conducted in Europe. Our study, with a considerably larger sample size compared to the available research in European context, provides valuable data on the seroprevalence of T. gondii in wolves.


Subject(s)
Swine Diseases , Toxoplasma , Toxoplasmosis, Animal , Wolves , Swine , Animals , Seroepidemiologic Studies , Toxoplasmosis, Animal/epidemiology , Swine Diseases/epidemiology , Italy/epidemiology , Sus scrofa , Antibodies, Protozoan
9.
BMC Vet Res ; 20(1): 120, 2024 Mar 26.
Article in English | MEDLINE | ID: mdl-38532402

ABSTRACT

BACKGROUND: The protozoan parasite Toxoplasma gondii causes toxoplasmosis, one of the most prevalent parasitic zoonotic diseases with significant economic and public health implications worldwide. Infection with the parasite has a significant adverse effect on sheep and goat production and can frequently go undetected in the herd, resulting in abortions and weak or dead offspring. Although there are few studies on seroprevalence and risk factors associated with T. gondii infections in livestock in other provinces of South Africa, there is no data in the North West province. Therefore, a cross-sectional study was conducted to investigate the seroprevalence of T. gondii and risk factors associated with exposure in sheep and goats of the North West province of South Africa. Sera from 439 livestock (164 sheep and 285 goats) were collected and analysed for the presence of T. gondii IgG antibodies using indirect ELISA (Enzyme-linked immunosorbent assay). An assessment of potential risk factors in farms associated with seropositivity was also conducted using a structured questionnaire. RESULTS: Out of the 439 tested sheep and goats, 13.9% (61/439) were positive for IgG antibodies against T. gondii. Sheep and goats had seroprevalences of 19.5% (32/164) and 10.5% (29/275) respectively. In the multivariable logistic regression model, the risk of acquiring T. gondii was significantly higher in the mixed breed [Odds ratio (OR) = 71.07; 95% confidence interval (CI): 266.8-1893.1; p < 0.011)] animals than white dorper sheep and in farms that burn or bury aborted material (OR = 42.04; CI: 179.9-982.5; p = 0.020) compared to those that only burn aborted material. The risk was lower for the farms in Kagisano-Molopo (OR = 0.00; CI: 0.0-25.4; p = 0.015) and Mahikeng (OR = 0.00; CI: 0.0-4.9; p < 0.001) local municipalities than Greater Taung local municipality, and for the animals that drink water from dams (OR = 0.03; CI: 0.2-58.8; p = 0.021) than those that drink from boreholes. CONCLUSION: The seroprevalence and risk factors associated with transmission observed show that T. gondii infection is widespread in sheep and goats of the North West province.


Subject(s)
Goat Diseases , Sheep Diseases , Toxoplasma , Toxoplasmosis, Animal , Female , Pregnancy , Animals , Sheep , Goats/parasitology , Seroepidemiologic Studies , Cross-Sectional Studies , South Africa , Toxoplasmosis, Animal/parasitology , Goat Diseases/parasitology , Sheep Diseases/parasitology , Antibodies, Protozoan , Abortion, Veterinary , Risk Factors , Immunoglobulin G , Livestock
10.
Exp Parasitol ; 261: 108754, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38636935

ABSTRACT

The apicomplexa Toxoplasma gondii is capable of actively proliferating in numerous types of nucleated cells, and therefore has a high potential for dissemination and resistance. Thus, the present work aimed to correlate the inoculum concentrations and amount of post-infection parasites with porcine hematological parameters (including biochemistry) through in vitro culture. Porcine blood was incubated with different concentrations of parasites (1.2 × 107, 6/3/1.5 × 106 cells/mL), then the concentrations of red blood cells (RBC) and their morphology, total and differential leukocytes, and free peptides were evaluated. In addition, eight different blood samples analyzed before inoculation, where subsequent multivariate analysis was applied to correlate different variables with trophozoite concentration. The results showed no significant variation (p < 0.05) in the relative levels of free peptides, or the relative percentage of RBC at all the parasite concentrations tested. However, the normalized percentages of leukocytes and neutrophils showed a significant reduction, while those of lymphocytes, eosinophils and monocytes showed the opposite behavior. Semi-automatic processing of images exhibited significant microcytosis and hypochromia. The multivariate analysis revealed a positive correlation between the amount number of protozoa (AP) and the variables: "Red cells" and "Neutrophils", an indifference between the AP and the content of free peptides, and the concentration of monocytes in the samples; and a negative correlation for AP and the percentages of lymphocytes and eosinophils. Our results suggest that specific changes in hematological parameters may be associated with different degrees of parasitemia, demanding a thorough diagnostic process and adequate treatment.


Subject(s)
Erythrocytes , Swine Diseases , Toxoplasma , Toxoplasmosis, Animal , Animals , Toxoplasma/immunology , Toxoplasma/physiology , Swine , Toxoplasmosis, Animal/parasitology , Toxoplasmosis, Animal/blood , Erythrocytes/parasitology , Swine Diseases/parasitology , Swine Diseases/blood , Multivariate Analysis , Leukocyte Count , Leukocytes/parasitology , Erythrocyte Count/veterinary , Neutrophils , Parasitemia/parasitology , Parasitemia/blood
11.
Parasitol Res ; 123(5): 222, 2024 May 27.
Article in English | MEDLINE | ID: mdl-38801539

ABSTRACT

Toxoplasmosis is a worldwide zoonosis that affects warm-blooded animals, including humans. Wild animals can act as intermediate hosts of this pathogen; thus, this study aims to detect Toxoplasma gondii infection in invasive European brown hares in Brazil. For this, 72 wild European brown hares were captured from July 2020 to June 2022 in three Brazilian states: São Paulo, Paraná, and Rio Grande do Sul. The diagnostic of Toxoplasma gondii infection was performed by bioassay in mouse, histopathology in Hematoxylin-Eosin-stained tissue sections (brain, liver, lungs, kidneys, and small intestine), serology by IFAT, and molecular techniques by conventional PCR and qPCR. The combined prevalence of the different diagnostic methods was 51.4% (37/72, CI= 40.1 - 62.6 %), and there was no statistical difference between sexes, age range, or geographical region of the hosts. Mouse bioassay was the technique that detected more positive hares. To our knowledge, this is the first confirmation of Toxoplasma gondii infection in invasive European brown hares in Brazil. These animals act as reservoirs and potential infection source for carnivores and other wild and domestic animals, including humans, thus contributing to perpetuate the disease cycle in São Paulo, Paraná, and Rio Grande do Sul States. Research such as the present study is necessary to raise awareness about the role of animals in the disease cycle.


Subject(s)
Hares , Toxoplasma , Toxoplasmosis, Animal , Animals , Brazil/epidemiology , Toxoplasmosis, Animal/parasitology , Toxoplasmosis, Animal/epidemiology , Toxoplasmosis, Animal/diagnosis , Hares/parasitology , Toxoplasma/isolation & purification , Mice , Female , Male , Prevalence , Biological Assay
12.
Parasitol Res ; 123(3): 169, 2024 Mar 23.
Article in English | MEDLINE | ID: mdl-38520500

ABSTRACT

Toxoplasmosis, caused by the protozoan parasite Toxoplasma gondii, is a globally distributed zoonotic infection with significant implications for human and animal health. This study investigated the prevalence of T. gondii infection in a population of beef cattle at three different stages of their productive lifespan and examined the impact of T. gondii serological status on blood parameters. A commercial beef fattening unit in Italy was the setting for this research, which involved a biosecurity assessment upon cattle arrival, blood sampling at three time points and Toxoplasma-specific serological testing using indirect fluorescent antibody tests (IFAT). Results revealed a dynamic pattern of T. gondii seropositivity in cattle, with an initial prevalence of 30.6% at arrival (T0) that increased to 44.6% at 14 days (T1) and then decreased slightly to 39.3% at slaughter after 5 months (T2). Interestingly, seroconversion was observed during the study, indicating ongoing infections, and antibody waning occurred in some animals. In terms of blood parameters, seropositive cattle exhibited significantly lower mean corpuscular volume (MCV) and a higher neutrophil-lymphocyte (N/L) ratio, suggesting an activation of the innate immune response. Furthermore, cattle with higher antibody titres displayed higher neutrophil counts. However, all blood parameters with a statistical significance were within the reference range. This study provides for the first time a longitudinal investigation on the serological status for T. gondii in naturally exposed beef cattle. These findings provide valuable insights into the clinico-pathological aspects of natural T. gondii exposure in cattle and underscore the importance of monitoring and managing T. gondii infection in livestock production systems.


Subject(s)
Cattle Diseases , Toxoplasma , Toxoplasmosis, Animal , Animals , Cattle , Antibodies, Protozoan , Cattle Diseases/epidemiology , Cattle Diseases/parasitology , Longitudinal Studies , Seroepidemiologic Studies , Toxoplasmosis, Animal/parasitology
13.
Parasitol Res ; 123(2): 129, 2024 Feb 09.
Article in English | MEDLINE | ID: mdl-38332310

ABSTRACT

This study aimed to determine the nPCR-RFLP genotypes of newly obtained T. gondii isolates from human congenital toxoplasmosis cases in Argentina and to determine their allelic profiles for virulence genes ROP18/ROP5. In addition, the ROP18/ROP5 profiles were also determined for previously characterized T. gondii samples. Isolation from congenital toxoplasmosis cases was carried out in mouse bioassay from two placentas (P1 and P2). Genotyping for the new human isolates was performed by nPCR-RFLP using 10 markers. The samples analyzed for ROP18/ROP5 included the two newly obtained isolates (from the congenital toxoplasmosis cases) and nine previously genotyped T. gondii DNA samples from humans and chickens. The results for P1 and P2 named as TgHm18-02Arg and TgHm19-01Arg showed ToxoDB genotypes #14 (non-archetypal) and #2 (clonal type III), respectively. Non-archetypal #14 has been isolated from human cases before in Argentina. However, this is the first report of T. gondii clonal type III in a human case in the country. The ROP18/ROP5 combination was detected in nine samples: 3/3 (n = 1), 4/3 (n = 4), 4/4 (n = 3), and 3-4/4 (n = 1). Notably, the 4/4 profile was identified for the first time and exclusively in T. gondii samples from Misiones province (which borders southern Brazil). Further studies are required to corroborate the regionalization of the ROP18/ROP5 profiles in Argentina.


Subject(s)
Toxoplasma , Toxoplasmosis, Animal , Toxoplasmosis, Congenital , Mice , Pregnancy , Female , Humans , Animals , Argentina/epidemiology , Chickens , Genotype
14.
Foodborne Pathog Dis ; 21(2): 99-108, 2024 02.
Article in English | MEDLINE | ID: mdl-37943604

ABSTRACT

Toxoplasma gondii, an important food-borne zoonotic parasite, poses a worldwide public health hazard. Domestic pigs are considered one of the main intermediate hosts in the zoonotic transmission of T. gondii. To date, seroepidemiological information on T. gondii in domestic pigs in India is very scarce, and there are no reports of occupational hazards to pig farmers in this country. Here, we aimed at estimating the occurrence of T. gondii (antibodies and parasite DNA) in slaughtered pigs and pig farmers in Central India. Seroprevalence was determined in 410 serum samples from slaughtered pigs and 103 sera from pig farmers using an in-house prepared antigen-based modified agglutination test (MAT), enzyme-linked immunosorbent assay (ELISA), and indirect-fluorescent antibody test (IFAT). Anti-T. gondii IgG antibodies were detected in 200 pigs (up to 48.8%, confidence interval [95% CI]: 40.4-52.2) and 44 pig farmers (up to 42.7%, 95% CI: 35.6-47.3) using MAT, ELISA, and IFAT. Inter-rater agreement showed an excellent agreement (kappa κ = 0.9) among the different serological tests suggesting similar detection potential of these tests. Recently acquired infections in all seropositive subjects were determined using IgG avidity testing and polymerase chain reaction (PCR). IgG avidity showed that 20 (10.3%) of slaughtered pigs and 8 (19.5%) pig farmers had a recently acquired infection. PCR for B1 and 529 repeats was performed in the heart tissues of slaughtered pigs and the blood cells of pig farmers. T. gondii DNA was detected in 14 (7.2%) slaughtered pigs and 5 (12.2%) pig farmers. Univariate analysis revealed that adult animals (>1 year), cats and rodents on the farm, and outdoor access are common factors (p ≤ 0.05) associated with T. gondii infection in pigs. Our results indicate that T. gondii is widely distributed in slaughtered pigs and pig farmers at risk of infection, highlighting a potential zoonotic transmission and health risk to consumers.


Subject(s)
Swine Diseases , Toxoplasma , Toxoplasmosis, Animal , Animals , Swine , Humans , Sus scrofa , Toxoplasma/genetics , Seroepidemiologic Studies , Farmers , Antibodies, Protozoan , Toxoplasmosis, Animal/epidemiology , Swine Diseases/epidemiology , India/epidemiology , Immunoglobulin G , DNA
15.
Int J Mol Sci ; 25(8)2024 Apr 16.
Article in English | MEDLINE | ID: mdl-38673969

ABSTRACT

This study presents an evaluation of seventeen newly produced recombinant trivalent chimeric proteins (containing the same immunodominant fragment of SAG1 and SAG2 of Toxoplasma gondii antigens, and an additional immunodominant fragment of one of the parasite antigens, such as AMA1, GRA1, GRA2, GRA5, GRA6, GRA7, GRA9, LDH2, MAG1, MIC1, MIC3, P35, and ROP1) as a potential alternative to the whole-cell tachyzoite lysate (TLA) used in the detection of infection in small ruminants. These recombinant proteins, obtained by genetic engineering and molecular biology methods, were tested for their reactivity with specific anti-Toxoplasma IgG antibodies contained in serum samples of small ruminants (192 samples of sheep serum and 95 samples of goat serum) using an enzyme-linked immunosorbent assay (ELISA). The reactivity of six recombinant trivalent chimeric proteins (SAG1-SAG2-GRA5, SAG1-SAG2-GRA9, SAG1-SAG2-MIC1, SAG1-SAG2-MIC3, SAG1-SAG2-P35, and SAG1-SAG2-ROP1) with IgG antibodies generated during T. gondii invasion was comparable to the sensitivity of TLA-based IgG ELISA (100%). The obtained results show a strong correlation with the results obtained for TLA. This suggests that these protein preparations may be a potential alternative to TLA used in commercial tests and could be used to develop a cheaper test for the detection of parasite infection in small ruminants.


Subject(s)
Antibodies, Protozoan , Antigens, Protozoan , Enzyme-Linked Immunosorbent Assay , Goats , Immunoglobulin G , Toxoplasma , Animals , Toxoplasma/immunology , Toxoplasma/genetics , Immunoglobulin G/immunology , Immunoglobulin G/blood , Enzyme-Linked Immunosorbent Assay/methods , Antigens, Protozoan/immunology , Antigens, Protozoan/genetics , Sheep , Antibodies, Protozoan/immunology , Antibodies, Protozoan/blood , Protozoan Proteins/immunology , Protozoan Proteins/genetics , Recombinant Fusion Proteins/immunology , Recombinant Fusion Proteins/genetics , Toxoplasmosis, Animal/diagnosis , Toxoplasmosis, Animal/immunology , Toxoplasmosis, Animal/parasitology , Sheep Diseases/parasitology , Sheep Diseases/diagnosis , Sheep Diseases/immunology , Recombinant Proteins/immunology , Recombinant Proteins/genetics , Goat Diseases/parasitology , Goat Diseases/diagnosis , Goat Diseases/immunology
16.
PLoS Pathog ; 17(12): e1010081, 2021 12.
Article in English | MEDLINE | ID: mdl-34871323

ABSTRACT

Protective immunity to parasitic infections has been difficult to elicit by vaccines. Among parasites that evade vaccine-induced immunity is Toxoplasma gondii, which causes lethal secondary infections in chronically infected mice. Here we report that unlike susceptible C57BL/6J mice, A/J mice were highly resistant to secondary infection. To identify correlates of immunity, we utilized forward genetics to identify Nfkbid, a nuclear regulator of NF-κB that is required for B cell activation and B-1 cell development. Nfkbid-null mice ("bumble") did not generate parasite-specific IgM and lacked robust parasite-specific IgG, which correlated with defects in B-2 cell maturation and class-switch recombination. Though high-affinity antibodies were B-2 derived, transfer of B-1 cells partially rescued the immunity defects observed in bumble mice and were required for 100% vaccine efficacy in bone marrow chimeric mice. Immunity in resistant mice correlated with robust isotype class-switching in both B cell lineages, which can be fine-tuned by Nfkbid gene expression. We propose a model whereby humoral immunity to T. gondii is regulated by Nfkbid and requires B-1 and B-2 cells for full protection.


Subject(s)
Disease Susceptibility/immunology , I-kappa B Proteins/immunology , Immunity, Humoral/immunology , Toxoplasmosis, Animal/immunology , Animals , B-Lymphocytes/immunology , Mice , Toxoplasma
17.
PLoS Pathog ; 17(10): e1009970, 2021 10.
Article in English | MEDLINE | ID: mdl-34597344

ABSTRACT

Toxoplasma gondii is an orally acquired pathogen that induces strong IFN-γ based immunity conferring protection but that can also be the cause of immunopathology. The response in mice is driven in part by well-characterized MyD88-dependent signaling pathways. Here we focus on induction of less well understood immune responses that do not involve this Toll-like receptor (TLR)/IL-1 family receptor adaptor molecule, in particular as they occur in the intestinal mucosa. Using eYFP-IL-12p40 reporter mice on an MyD88-/- background, we identified dendritic cells, macrophages, and neutrophils as cellular sources of MyD88-independent IL-12 after peroral T. gondii infection. Infection-induced IL-12 was lower in the absence of MyD88, but was still clearly above noninfected levels. Overall, this carried through to the IFN-γ response, which while generally decreased was still remarkably robust in the absence of MyD88. In the latter mice, IL-12 was strictly required to induce type I immunity. Type 1 and type 3 innate lymphoid cells (ILC), CD4+ T cells, and CD8+ T cells each contributed to the IFN-γ pool. We report that ILC3 were expanded in infected MyD88-/- mice relative to their MyD88+/+ counterparts, suggesting a compensatory response triggered by loss of MyD88. Furthermore, bacterial flagellin and Toxoplasma specific CD4+ T cell populations in the lamina propria expanded in response to infection in both WT and KO mice. Finally, we show that My88-independent IL-12 and T cell mediated IFN-γ production require the presence of the intestinal microbiota. Our results identify MyD88-independent intestinal immune pathways induced by T. gondii including myeloid cell derived IL-12 production, downstream type I immunity and IFN-γ production by ILC1, ILC3, and T lymphocytes. Collectively, our data reveal an underlying network of immune responses that do not involve signaling through MyD88.


Subject(s)
CD4-Positive T-Lymphocytes/immunology , Gastrointestinal Microbiome/immunology , Immunity, Mucosal/immunology , Interleukin-12 Subunit p40/immunology , Toxoplasmosis, Animal/immunology , Animals , Intestinal Mucosa/immunology , Mice , Mice, Knockout , Myeloid Differentiation Factor 88/deficiency , Myeloid Differentiation Factor 88/immunology , Signal Transduction/immunology , Toll-Like Receptors/deficiency , Toll-Like Receptors/immunology , Toxoplasma/immunology
18.
Microb Pathog ; 179: 106092, 2023 Jun.
Article in English | MEDLINE | ID: mdl-37003502

ABSTRACT

BACKGROUND: Toxoplasma gondii (T. gondii) is not only a threat to the public health but it also poses adverse impacts on the livestock industry. This study aimed to develop a recombinant vaccine composed of T. gondii microneme protein 6 (TgMIC6) and T. gondii rhoptry protein 18 (TgROP18). The vaccine was delivered with a novel vector, named analogous hyaluronic acid chitosan nanoparticle-hydrogel (AHACNP-HG) and its immune protection was evaluated. METHODS: The recombinant MIC6 and ROP18 proteins were obtained by affinity chromatography and loaded onto AHACNP-HG by magnetic stirring. The characterizations of AHACNP-HG were investigated, including its structure, rheological property, nanoparticle size and zeta potential, its ability to release protein in vitro and toxicology in vivo. The immunological and anti-infection effects of AHACNP-HG/rMIC6/rROP18 were examined in the mice model. RESULTS: AHACNP-HG presented a characteristic of composite system and possessed biosecurity with excellent protein control-release property. AHACNP-HG/rMIC6/rROP18 vaccine enhanced a mixed Th1/Th2 cellular immune response accompanied by an increased level of the cytokines, IFN-γ and IL-10. It also provoked a stronger humoral immune response. Additionally, after challenge with T. gondii tachyzoite, AHACNP-HG/rMIC6/rROP18 inoculation prolonged the survival time of mice. CONCLUSION: Our data indicated that mixed rMIC6 and rROP18 induced strong immune response and played a certain protective role in controlling T. gondii infection, and the novel adjuvant AHACNP-HG improved modestly some immunogenicity properties in mouse model, which indicated that it can be used as a novel delivery system in vaccine development.


Subject(s)
Chitosan , Nanoparticles , Toxoplasma , Toxoplasmosis, Animal , Vaccines, DNA , Animals , Mice , Toxoplasma/genetics , Hyaluronic Acid , Protozoan Proteins , Hydrogels , Toxoplasmosis, Animal/prevention & control , Vaccines, Synthetic , Cytokines/analysis , Antibodies, Protozoan , Mice, Inbred BALB C
19.
Parasite Immunol ; 45(12): e13014, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37807942

ABSTRACT

This study investigated a 'de Novo' medicinal herb, Ferula asafetida (FA), against toxoplasma encephalitis either alone or combined with spiramycin (SP). Female Swiss-Webster mice (n = 72) were divided into three batches. Batch-I received no DMS to serve as an immunocompetent control, batch-II was immune-suppressed with the DMS (0.25 mg/g/day) for 14 days pre-infection, whilst batch-III was immune-suppressed with the DMS on the same day of infection. All experimental mice were inoculated with Toxoplasma gondii ME49 cysts (n = 75). Each batch was split into four subgroups: Mono-SP, mono-FA, combined drug (SP + FA), or neither. Therapies were administered on day zero of infection in batches (I and II) and 35 days post-infection in batch (III). Treatments lasted for 14 days, and mice were sacrificed 60 days post-infection. Histopathological changes, cysts load, and CD4 and CD8 T-cells were counted in brain tissues. The cyst-load count in mice receiving SP + FA was significantly (p < .0001) the least compared to the mono treatments in all protocols. Interestingly, the combined therapy demolished the T-cell subsets to zero in immunocompetent and immunocompromised infected mice. In conclusion, F. asafetida might be a powerfully natural, safe vehicle of SP in the digestive system and/or across the brain-blood barrier to control toxoplasmosis even through immunodeficient conditions.


Subject(s)
Encephalitis , Ferula , Spiramycin , Toxoplasma , Toxoplasmosis, Animal , Toxoplasmosis, Cerebral , Female , Mice , Animals , Spiramycin/therapeutic use , Brain , Toxoplasmosis, Animal/drug therapy , Encephalitis/drug therapy , Encephalitis/pathology
20.
Eur J Clin Microbiol Infect Dis ; 42(7): 803-818, 2023 Jul.
Article in English | MEDLINE | ID: mdl-37093325

ABSTRACT

A ring trial among five European laboratories was organized to reach consistency in microsatellite (MS) typing of the zoonotic parasite Toxoplasma gondii. Three sample sets were circulated and analyzed by each laboratory following a previously published method that is based on fragment length polymorphism of 15 MS markers. The first sample set compared typing results in general and focused on effects of DNA concentration; the second sample set focused on the polymorphic fingerprinting markers that can differentiate T. gondii strains within the same archetypal lineage; and the third set focused on non-archetypal genotypes. Methodological variations between laboratories, including the software programs used to determine MS fragment length, were collated using a questionnaire. Overall, lineage-level typing results reached a high level of agreement, especially in samples with the highest DNA concentrations. However, laboratory-specific differences were observed for particular markers. Major median differences in fragment length, of up to 6 base pairs, were related to the fluorophore used to label fragment-specific primers. In addition, primer pairs with identical sequences obtained from different suppliers resulted in fragments of differing length. Furthermore, differences in the way the sequencing profiles were assessed and interpreted may have led to deviating results in fragment length determination. Harmonization of MS typing, for example, by using the same fluorophores or by numerical adjustments applied to the fragment-lengths determined, could improve the uniformity of the results across laboratories. This is the first interlaboratory comparison, providing guidelines (added as a supplement) for the optimization of this technique.


Subject(s)
Toxoplasma , Toxoplasmosis, Animal , Humans , Animals , Toxoplasma/genetics , Genetic Variation , Polymorphism, Restriction Fragment Length , DNA, Protozoan/genetics , Microsatellite Repeats , Genotype
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