cytauxzoon felis
Recently Published Documents


TOTAL DOCUMENTS

87
(FIVE YEARS 23)

H-INDEX

18
(FIVE YEARS 3)

Author(s):  
Casey R. Sleznikow ◽  
Jennifer L. Granick ◽  
Leah A. Cohn ◽  
Laura A. Nafe ◽  
Aaron Rendahl ◽  
...  

Author(s):  
Carolina C. Guizelini ◽  
Carlos A.R. Nascimento ◽  
Jéssica T. Echeverria ◽  
Rodrigo L. Soares ◽  
Marcela M. Pimenta ◽  
...  

Pathogens ◽  
2021 ◽  
Vol 10 (11) ◽  
pp. 1462
Author(s):  
Ricardo Maggi ◽  
Edward B. Breitschwerdt ◽  
Barbara Qurollo ◽  
Jennifer C. Miller

We describe the development, optimization, and validation of a multiplex droplet digital PCR (ddPCR) assay for the simultaneous detection of Babesia, Bartonella, and Borrelia spp. DNA from several sample matrices, including clinical blood samples from animals and humans, vectors, in-vitro infected human and animal cell lines, and tissues obtained from animal models (infected with Bartonella and/or B. burgdorferi). The multiplex ddPCR assay was able to detect 31 Bartonella, 13 Borrelia, and 24 Babesia species, including Theileria equi, T. cervi, and Cytauxzoon felis. No amplification of Treponema or Leptospira spp. was observed. Sensitivity of 0.2–5 genome equivalent DNA copies per microliter was achieved for different members of the Bartonella and Borrelia genus, depending on the species or matrix type (water or spiked blood DNA) tested. The ddPCR assay facilitated the simultaneous detection of co-infections with two and three vector-borne pathogens comprising four different genera (Babesia, Bartonella, Borrelia, and Theileria) from clinical and other sample sources.


2021 ◽  
pp. 101847
Author(s):  
Tzushan S. Yang ◽  
Mason V. Reichard ◽  
Henry S. Marr ◽  
Leah A. Cohn ◽  
Laura Nafe ◽  
...  

2021 ◽  
Vol 107 (5) ◽  
Author(s):  
Juliana Macedo Raimundo ◽  
Andresa Guimarães ◽  
Marcos Rogério André ◽  
Cristiane Divan Baldani

Pathogens ◽  
2021 ◽  
Vol 10 (1) ◽  
pp. 50
Author(s):  
Monica Florin-Christensen ◽  
Anabel E. Rodriguez ◽  
Carlos E. Suárez ◽  
Massaro W. Ueti ◽  
Fernando O. Delgado ◽  
...  

N-glycosylation has remained mostly unexplored in Piroplasmida, an order of tick-transmitted pathogens of veterinary and medical relevance. Analysis of 11 piroplasmid genomes revealed three distinct scenarios regarding N-glycosylation: Babesia sensu stricto (s.s.) species add one or two N-acetylglucosamine (NAcGlc) molecules to proteins; Theileria equi and Cytauxzoon felis add (NAcGlc)2-mannose, while B. microti and Theileria s.s. synthesize dolichol-P-P-NAcGlc and dolichol-P-P-(NAcGlc)2 without subsequent transfer to proteins. All piroplasmids possess the gene complement needed for the synthesis of the N-glycosylation substrates, dolichol-P and sugar nucleotides. The oligosaccharyl transferase of Babesia species, T. equi and C. felis, is predicted to be composed of only two subunits, STT3 and Ost1. Occurrence of short N-glycans in B. bovis merozoites was experimentally demonstrated by fluorescence microscopy using a NAcGlc-specific lectin. In vitro growth of B. bovis was significantly impaired by tunicamycin, an inhibitor of N-glycosylation, indicating a relevant role for N-glycosylation in this pathogen. Finally, genes coding for N-glycosylation enzymes and substrate biosynthesis are transcribed in B. bovis blood and tick stages, suggesting that this pathway is biologically relevant throughout the parasite life cycle. Elucidation of the role/s exerted by N-glycans will increase our understanding of these successful parasites, for which improved control measures are needed.


2021 ◽  
Vol 7 (1) ◽  
pp. 205511692110249
Author(s):  
Pierce K Chan ◽  
Jennifer R Hawley ◽  
Michael R Lappin

Objectives The aim of this study was to evaluate the blood of cats in Colorado, USA, with suspected infectious causes of anemia for the presence of Babesia species and Cytauxzoon felis DNA. Results of PCR testing for other common vector-borne diseases potentially associated with anemia are also reported. Methods Samples from 101 cats were tested using a PCR assay that coamplified the DNA of C felis and Babesia species mitochondrial DNA. PCR testing for DNA of hemoplasmas, Bartonella species, Ehrlichia species, Anaplasma species, Neorickettsia risticii and Wolbachia genera was also performed if not carried out previously. Results Twenty-two cats (21.8%) were positive for DNA of an infectious agent. DNA from hemoplasma species were amplified from 14 cats (13.9%). Bartonella species DNA was amplified from four cats (4%) and Ehrlichia canis, Anaplasma platys, Anaplasma phagocytophilum and Wolbachia genera DNA were amplified from one cat each. Babesia species and C felis mitochondrial DNA were not amplified from any sample. Conclusions and relevance Based on the results of this study, it does not appear that Babesia species or C felis are clinically relevant in anemic cats in Colorado, USA. For C felis, this suggests that the vector Amblyomma americanum is still uncommon in this geographic area.


2020 ◽  
Vol 7 (4) ◽  
pp. 205
Author(s):  
Yvonne M. Wikander ◽  
Qing Kang ◽  
Kathryn E. Reif

Cytauxzoon felis, a tick-borne hemoprotozoal pathogen of felids, causes an acute, often-fatal disease in domestic cats. While public awareness of the disease has increased, few studies have evaluated the incidence of acute cytauxzoonosis cases and their associated risk factors. The objective of this study was to retrospectively review records of cats diagnosed with acute cytauxzoonosis in eastern Kansas from 2006–2019 using clinic records and determine: (i) feline cytauxzoonosis risk factors; and (ii) if cytauxzoonosis case incidence is increasing. Although inter-annual variation of acute cytauxzoonosis diagnosis was observed in the eastern Kansas domestic cat population, the overall incidence trend remained largely unchanged over the 14-year case review period. In comparison to ill (C. felis-unrelated) control cases, more acute cytauxzoonosis cases were diagnosed in spring and summer, suggesting a seasonal fluctuation of infection, with samples most commonly submitted from ≥1 year old, owned, male cats. Although cytauxzoonosis case submissions remained consistent over the broad study period, increasing tick vector and domestic cat reservoir populations may contribute to additional cytauxzoonosis case expansion in endemic areas. Investigating the incidence of acute cytauxzoonosis, patient risk factors, and ecological variables that influence disease transmission are important steps towards developing and communicating the need for effective cytauxzoonosis control strategies for high-risk cat populations.


Sign in / Sign up

Export Citation Format

Share Document