Lassen B, Jokelainen P. Survey of the Presence of Toxocara spp. Eggs in Dog Feces in Tartu, Estonia. Vector Borne Zoonotic Dis. 2016 Feb 8. [Epub ahead of print]
Information about parasitology in Estonia and related materials, courses, and tools.
Showing posts with label environment. Show all posts
Showing posts with label environment. Show all posts
Tuesday, 1 March 2016
Thursday, 10 December 2015
New article: First report of highly pathogenic Echinococcus granulosus genotype G1 in dogs in a European urban environment
Abstract
BACKGROUND:
Echinococcus granulosus and E. multilocularis are tapeworm parasites of major medical and veterinary importance, causing cystic and alveolar echinococcosis, respectively. Both diseases are listed among the most severe parasitic diseases in humans, representing 2 of the 17 neglected diseases prioritised by the World Health Organisation. However, little is known about the role of urban animals in transmission of both parasite species.
FINDINGS:
A sensitive non-invasive genetic method was used to monitor E. granulosus and E. multilocularis infection among dog faecal samples collected from an urban area in Estonia in 2012-13. Out of 181 dog faecal samples analysed, 2.2% tested positive for E. granulosus, determined by sequencing as genotype G1. None of the samples tested positive for E. multilocularis.
CONCLUSIONS:
We report contamination of an urban environment with highly pathogenic E. granulosus G1 disseminated by dogs, and a potential risk to human health.
Full article:
Laurimaa L, Davison J, Süld K, Plumer L, Oja R, Moks E, Keis M, Hindrikson M, Kinkar L, Laurimäe T, Abner J, Remm J, Anijalg P, Saarma U. First report of highly pathogenic Echinococcus granulosus genotype G1 in dogs in a European urban environment. Parasit Vectors. 2015 Mar 26;8:182. doi: 10.1186/s13071-015-0796-3.
BACKGROUND:
Echinococcus granulosus and E. multilocularis are tapeworm parasites of major medical and veterinary importance, causing cystic and alveolar echinococcosis, respectively. Both diseases are listed among the most severe parasitic diseases in humans, representing 2 of the 17 neglected diseases prioritised by the World Health Organisation. However, little is known about the role of urban animals in transmission of both parasite species.
FINDINGS:
A sensitive non-invasive genetic method was used to monitor E. granulosus and E. multilocularis infection among dog faecal samples collected from an urban area in Estonia in 2012-13. Out of 181 dog faecal samples analysed, 2.2% tested positive for E. granulosus, determined by sequencing as genotype G1. None of the samples tested positive for E. multilocularis.
CONCLUSIONS:
We report contamination of an urban environment with highly pathogenic E. granulosus G1 disseminated by dogs, and a potential risk to human health.
Full article:
Laurimaa L, Davison J, Süld K, Plumer L, Oja R, Moks E, Keis M, Hindrikson M, Kinkar L, Laurimäe T, Abner J, Remm J, Anijalg P, Saarma U. First report of highly pathogenic Echinococcus granulosus genotype G1 in dogs in a European urban environment. Parasit Vectors. 2015 Mar 26;8:182. doi: 10.1186/s13071-015-0796-3.
Sunday, 15 November 2015
New article: Seasonal recovery of Eimeria oocysts from soil on naturally contaminated pastures
Abstract
Though Eimeria is an important parasite of cattle, research is lacking on how the parasite persist in the pasture soils. In this study, feces samples were collected from three pastures in June and October 2010 and soil samples in April 2011. Coordinates of sampling locations were recorded with Global Positioning System together with information about grass cover, shade, and elevation. All soil samples were collected from the same locations as the fecal samples and used in model evaluating the possible factors influencing the concentration of oocysts in the soil. Feces and soil samples were investigated using a quantitative flotation technique. Eimeria oocysts were found in 95.6% of fecal samples collected in summer and 84.5% of samples in fall. In contrast, the same locations soil samples were positive for Eimeria oocysts in 37.3% (summer) and 44.3% (fall). Despite larger numbers of oocysts in fecal samples shed during summer compared to fall, there was no difference in the concentration of oocysts in soil samples the following spring. The odds of higher numbers of oocysts in soil samples in spring were higher if fecal samples collected in summer were in shade or if containing Eimeria alabamensis during the fall. Factors other than the concentrations of oocysts shed in feces appear to affect whether oocysts persist between grazing seasons.
Full article:
Lassen B, Lepik T, Järvis T. Seasonal recovery of Eimeria oocysts from soil on naturally contaminated pastures. Parasitol Res. 2014 Mar;113(3):993-9. doi: 10.1007/s00436-013-3731-6. Epub 2013 Dec 12.
Though Eimeria is an important parasite of cattle, research is lacking on how the parasite persist in the pasture soils. In this study, feces samples were collected from three pastures in June and October 2010 and soil samples in April 2011. Coordinates of sampling locations were recorded with Global Positioning System together with information about grass cover, shade, and elevation. All soil samples were collected from the same locations as the fecal samples and used in model evaluating the possible factors influencing the concentration of oocysts in the soil. Feces and soil samples were investigated using a quantitative flotation technique. Eimeria oocysts were found in 95.6% of fecal samples collected in summer and 84.5% of samples in fall. In contrast, the same locations soil samples were positive for Eimeria oocysts in 37.3% (summer) and 44.3% (fall). Despite larger numbers of oocysts in fecal samples shed during summer compared to fall, there was no difference in the concentration of oocysts in soil samples the following spring. The odds of higher numbers of oocysts in soil samples in spring were higher if fecal samples collected in summer were in shade or if containing Eimeria alabamensis during the fall. Factors other than the concentrations of oocysts shed in feces appear to affect whether oocysts persist between grazing seasons.
Full article:
Lassen B, Lepik T, Järvis T. Seasonal recovery of Eimeria oocysts from soil on naturally contaminated pastures. Parasitol Res. 2014 Mar;113(3):993-9. doi: 10.1007/s00436-013-3731-6. Epub 2013 Dec 12.
Labels:
bovine,
cattle,
change,
climate,
coccidia,
coccidiosis,
eimeria,
eimeria alabamensis,
environment,
fall,
northern hemisphere,
odds,
pasture,
persistance,
risk,
soil,
summer,
survival,
temperature,
winter
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