Literature DB >> 17710299

Experimental transmission of the parasitic flagellates Trypanosoma cruzi and Trypanosoma rangeli between triatomine bugs or mice and captive neotropical bats.

Maurice E Thomas1, John J Rasweiler Iv, Antonio D'Alessandro.   

Abstract

Trypanosoma cruzi and Trypanosoma rangeli-like trypanosomes have been found in a variety of neotropical bat species. In this study, bats (Artibeus lituratus, Carollia perspicillata, Desmodus rotundus, Glossophaga soricina, Molossus molossus, Phyllostomus hastatus) were maintained under controlled conditions, and experiments were conducted to determine how they might become infected naturally with trypanosomes. All bats were first screened for existing infections by hemoculture and the examination of blood smears, and only apparently uninfected animals were then used in the experiments. Proof was obtained that the triatomine bug Rhodnius prolixus would readily feed upon some of the bats, and two species became infected after being bitten by bugs infected with T. rangeli. Some bats also became infected by ingesting R. prolixus carrying T. cruzi, or following subcutaneous or intragastic inoculation with fecal suspensions of R. prolixus containing T. cruzi. P. hastatus became infected after ingesting mice carrying T. cruzi. All of the bats studied inhabit roosts that may be occupied by triatomine bugs and, with the exception of D. rotundus, all also feed to at least some extent upon insects. These findings provide further evidence of how bats may play significant roles in the epidemiology of T. cruzi and T. rangeli in the New World tropics.

Entities:  

Mesh:

Year:  2007        PMID: 17710299     DOI: 10.1590/s0074-02762007005000068

Source DB:  PubMed          Journal:  Mem Inst Oswaldo Cruz        ISSN: 0074-0276            Impact factor:   2.743


  19 in total

1.  PATHOLOGY AND DISCRETE TYPING UNIT ASSOCIATIONS OF TRYPANOSOMA CRUZI INFECTION IN COYOTES (CANIS LATRANS) AND RACCOONS (PROCYON LOTOR) OF TEXAS, USA.

Authors:  Carolyn L Hodo; Rosa M Bañuelos; Erin E Edwards; Edward J Wozniak; Sarah A Hamer
Journal:  J Wildl Dis       Date:  2019-09-30       Impact factor: 1.535

2.  Oral transmission of Trypanosoma cruzi with opposing evidence for the theory of carnivory.

Authors:  Dawn M Roellig; Angela E Ellis; Michael J Yabsley
Journal:  J Parasitol       Date:  2009-04       Impact factor: 1.276

3.  Identification of bat trypanosomes from Minas Gerais state, Brazil, based on 18S rDNA and Cathepsin-L-like targets.

Authors:  Elaine Cristina Bento; César Gómez-Hernández; Lara Rocha Batista; Laís Anversa; André Luiz Pedrosa; Eliane Lages-Silva; Juan David Ramírez; Luis Eduardo Ramirez
Journal:  Parasitol Res       Date:  2018-01-16       Impact factor: 2.289

4.  Phylogenetic analysis of Bolivian bat trypanosomes of the subgenus schizotrypanum based on cytochrome B sequence and minicircle analyses.

Authors:  Lineth García; Sylvia Ortiz; Gonzalo Osorio; Mary Cruz Torrico; Faustino Torrico; Aldo Solari
Journal:  PLoS One       Date:  2012-05-09       Impact factor: 3.240

Review 5.  Update on oral Chagas disease outbreaks in Venezuela: epidemiological, clinical and diagnostic approaches.

Authors:  Belkisyolé Alarcón de Noya; Zoraida Díaz-Bello; Cecilia Colmenares; Raiza Ruiz-Guevara; Luciano Mauriello; Arturo Muñoz-Calderón; Oscar Noya
Journal:  Mem Inst Oswaldo Cruz       Date:  2015-04-28       Impact factor: 2.743

6.  Trypanosoma rangeli Genetic, Mammalian Hosts, and Geographical Diversity from Five Brazilian Biomes.

Authors:  Maria Augusta Dario; Márcio Galvão Pavan; Marina Silva Rodrigues; Cristiane Varella Lisboa; Danilo Kluyber; Arnaud L J Desbiez; Heitor Miraglia Herrera; André Luiz Rodrigues Roque; Luciana Lima; Marta M G Teixeira; Ana Maria Jansen
Journal:  Pathogens       Date:  2021-06-11

7.  Natural infection with Trypanosoma cruzi in bats captured in Campeche and Yucatán, México.

Authors:  Marco Torres-Castro; Naomi Cuevas-Koh; Silvia Hernández-Betancourt; Henry Noh-Pech; Erendira Estrella; Belén Herrera-Flores; Jesús A Panti-May; Etienne Waleckx; Javier Sosa-Escalante; Ronald Peláez-Sánchez
Journal:  Biomedica       Date:  2021-05-31       Impact factor: 0.935

8.  Ecological connectivity of Trypanosoma cruzi reservoirs and Triatoma pallidipennis hosts in an anthropogenic landscape with endemic Chagas disease.

Authors:  Janine M Ramsey; Ana E Gutiérrez-Cabrera; Liliana Salgado-Ramírez; A Townsend Peterson; Victor Sánchez-Cordero; Carlos N Ibarra-Cerdeña
Journal:  PLoS One       Date:  2012-09-26       Impact factor: 3.240

9.  Comparative genomic analysis of human infective Trypanosoma cruzi lineages with the bat-restricted subspecies T. cruzi marinkellei.

Authors:  Oscar Franzén; Carlos Talavera-López; Stephen Ochaya; Claire E Butler; Louisa A Messenger; Michael D Lewis; Martin S Llewellyn; Cornelis J Marinkelle; Kevin M Tyler; Michael A Miles; Björn Andersson
Journal:  BMC Genomics       Date:  2012-10-05       Impact factor: 3.969

10.  Trypanosoma cruzi infection in neotropical wild carnivores (Mammalia: Carnivora): at the top of the T. cruzi transmission chain.

Authors:  Fabiana Lopes Rocha; André Luiz Rodrigues Roque; Juliane Saab de Lima; Carolina Carvalho Cheida; Frederico Gemesio Lemos; Fernanda Cavalcanti de Azevedo; Ricardo Corassa Arrais; Daniele Bilac; Heitor Miraglia Herrera; Guilherme Mourão; Ana Maria Jansen
Journal:  PLoS One       Date:  2013-07-04       Impact factor: 3.240

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.