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1.
Rev. Soc. Bras. Med. Trop ; 46(4): 433-440, Jul-Aug/2013. tab, graf
Article in English | LILACS | ID: lil-683336

ABSTRACT

Introduction The biological diversity of Trypanosoma cruzi strains plays an important role in the clinical and epidemiological features of Chagas disease. Methods Eight T. cruzi strains isolated from children living in a Chagas disease vector-controlled area of Jequitinhonha Valley, State of Minas Gerais, Brazil, were genetically and biologically characterized. Results The characterizations demonstrated that all of the strains belonged to T. cruzi II, and showed high infectivity and a variable mean maximum peak of parasitemia. Six strains displayed low parasitemia, and two displayed moderate parasitemia. Later peaks of parasitemia and a predominance of intermediate and large trypomastigotes in all T. cruzi strains were observed. The mean pre-patent period was relatively short (4.2±0.25 to 13.7±3.08 days), whereas the patent period ranged from 3.3±1.08 to 34.5±3.52 days. Mortality was observed only in animals infected with strain 806 (62.5%). Histopathological analysis of the heart showed that strains 501 and 806 caused inflammation, but fibrosis was observed only in animals infected with strain 806. Conclusions The results indicate the presence of an association between the biological behavior in mice and the genetic characteristics of the parasites. The study also confirmed general data from Brazil where T. cruzi II lineage is the most prevalent in the domiciliary cycle and generally has low virulence, with some strains capable of inducing inflammatory processes and fibrosis. .


Subject(s)
Animals , Child , Female , Humans , Mice , Chagas Disease/parasitology , Parasitemia/parasitology , Trypanosoma cruzi/pathogenicity , Brazil , Disease Models, Animal , DNA, Protozoan/genetics , Genotype , Parasitemia/pathology , Trypanosoma cruzi/enzymology , Trypanosoma cruzi/genetics , Trypanosoma cruzi/isolation & purification , Virulence
2.
Mem. Inst. Oswaldo Cruz ; 107(1): 39-47, Feb. 2012. ilus, mapas, tab
Article in English | LILACS | ID: lil-612804

ABSTRACT

Leishmania infantum (syn. Leishmania chagasi) is the etiological agent of visceral leishmaniasis (VL) in Brazil. The epidemiology of VL is poorly understood. Therefore, a more detailed molecular characterization at an intraspecific level is certainly needed. Herein, three independent molecular methods, multilocus microsatellite typing (MLMT), random amplification of polymorphic DNA (RAPD) and simple sequence repeats-polymerase chain reaction (SSR-PCR), were used to evaluate the genetic diversity of 53 L. infantum isolates from five different endemic areas in Brazil. Population structures were inferred by distance-based and Bayesian-based approaches. Eighteen very similar genotypes were detected by MLMT, most of them differed in only one locus and no correlation was found between MLMT profiles, geographical origin or the estimated population structure. However, complex profiles composed of 182 bands obtained by both RAPD and SSR-PCR assays gave different results. Unweighted pair group method with arithmetic mean trees built from these data revealed a high degree of homogeneity within isolates of L. infantum. Interestingly, despite this genetic homogeneity, most of the isolates clustered according to their geographical origin.


Subject(s)
Animals , Dogs , Humans , DNA, Protozoan/genetics , Genetic Variation/genetics , Leishmania infantum/genetics , Brazil , Cluster Analysis , Genotype , Leishmania infantum/isolation & purification , Microsatellite Repeats , Molecular Typing , Polymerase Chain Reaction , Random Amplified Polymorphic DNA Technique
3.
Mem. Inst. Oswaldo Cruz ; 106(8): 948-956, Dec. 2011. ilus, graf, tab
Article in English | LILACS | ID: lil-610969

ABSTRACT

We examined strains of Trypanosoma cruzi isolated from patients with acute Chagas disease that had been acquired by oral transmission in the state of Santa Catarina, Brazil (2005) and two isolates that had been obtained from a marsupial (Didelphis aurita) and a vector (Triatoma tibiamaculata). These strains were characterised through their biological behaviour and isoenzymic profiles and genotyped according to the new Taxonomy Consensus (2009) based on the discrete typing unities, that is, T. cruzi genotypes I-VI. All strains exhibited the biological behaviour of biodeme type II. In six isolates, late peaks of parasitaemia, beyond the 20th day, suggested a double infection with biodemes II + III. Isoenzymes revealed Z2 or mixed Z1 and Z2 profiles. Genotyping was performed using three polymorphic genes (cytochrome oxidase II, spliced leader intergenic region and 24Sα rRNA) and the restriction fragment length polymorphism of the kDNA minicircles. Based on these markers, all but four isolates were characterised as T. cruzi II genotypes. Four mixed populations were identified: SC90, SC93 and SC97 (T. cruzi I + T. cruzi II) and SC95 (T. cruzi I + T. cruzi VI). Comparison of the results obtained by different methods was essential for the correct identification of the mixed populations and major lineages involved indicating that characterisation by different methods can provide new insights into the relationship between phenotypic and genotypic aspects of parasite behaviour.


Subject(s)
Animals , Humans , Chagas Disease/parasitology , Trypanosoma cruzi/genetics , Brazil/epidemiology , Consensus , Chagas Disease/epidemiology , Chagas Disease/transmission , Disease Outbreaks , DNA, Protozoan/genetics , Didelphis/parasitology , Disease Reservoirs/parasitology , Genotype , Insect Vectors/parasitology , RNA, Ribosomal/genetics , Triatoma/parasitology , Trypanosoma cruzi/classification , Trypanosoma cruzi/pathogenicity
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