Les hommes ont oublié cette vérité. Mais tu ne dois pas l'oublier, dit le renard. Tu deviens responsable pour toujours de ce que tu as apprivoisé.
Le Petit Prince, chap. 21
Showing posts with label toxoplasmosis. Show all posts
Showing posts with label toxoplasmosis. Show all posts

Friday, 30 September 2016

Feral cats: Genetic and sanitary risk for wild felids in Iberian Peninsula (in Spanish)

Tobajas, J. (2016). Riesgos genéticos y sanitarios asociados al gato asilvestrado (Felis silvestris catus): el caso de los felinos salvajes de la península ibérica. Chronica naturae, (6), 63-82.

El gato cimarrón o asilvestrado (Felis silvestris catus) se ha distribuido ampliamente
por todo el mundo, colonizando nuevos territorios e interactuando en muchas ocasiones
con las especies domésticas y silvestres. Sanitariamente, la presencia de gatos asilvestrados
trae consigo una serie de inconvenientes para las especies de felinos salvajes, actuando
como reservorios y dispersores de enfermedades. Por ello es de vital importancia conocer
la situación actual de la presencia de estas enfermedades, y conocer bien la epidemiología
asociada a la presencia del gato asilvestrado. Esta revisión recoge los estudios sanitarios
sobre el gato asilvestrado, el gato montés (Felis silvestris) y el lince ibérico (Lynx
pardinus). Estas dos últimas, son las especies silvestres que pueden sufrir las consecuencias
del aumento de la presencia de gatos asilvestrados en la naturaleza de la Península Ibérica.
Los resultados de los estudios sanitarios sobre gatos asilvestrados, muestran una prevalencia
alta de parásitos helmintos (especialmente de nematodos como Toxocara cati) y protozoos
como Toxoplasma gondii. Del mismo modo, se han encontrado altas prevalencias de virus
compartidos entre los felinos salvajes y los gatos asilvestrados, como el virus de la leucemia
felina, coronavirus y el moquillo, convirtiéndose en una amenaza para la conservación del
lince ibérico. También cabe destacar la presencia de bacterias transmitidas por vectores,
como el género Rickettsia y Bartonella. Aparte de las amenazas sanitarias, el aumento
detectado en la presencia de híbridos de gato doméstico y gato montés a lo largo de toda
Europa también es remarcable. Por estas razones, se puede considerar el gato cimarrón
como una de las mayores amenazas para el gato montés y el lince ibérico dentro de su área
de distribución.

Saturday, 18 June 2016

Pathogens in domestic dogs around National Park

Bronson, E., Emmons, L. H., Murray, S., Dubovi, E. J., & Deem, S. L. (2008). Serosurvey of pathogens in domestic dogs on the border of Noel Kempff Mercado National Park, Bolivia. Journal of zoo and wildlife medicine, 39(1), 28-36.

The threat of disease transmission from domestic animals to wildlife has become recognized as an increasing concern within the wildlife community in recent years. Domestic dogs pose a significant risk as reservoirs for infectious diseases, especially for wild canids. As part of a multifaceted ecologic study of maned wolves and other canids in the large, remote Noël Kempff Mercado National Park (NKMNP) in northeastern Bolivia, 40 domestic dogs in two villages and at two smaller settlements bordering the national park were sampled for exposure to canine diseases. High levels of exposure were found to canine distemper virus and canine parvovirus, both of which are known to cause mortality in maned wolves and other carnivores. Moderate to high levels of exposure were found to rabies virus, Ehrlichia canis, and Toxoplasma gondii, as well as significant levels of infection with Dirofilaria immitis. This study reports evidence of exposure to several diseases in the domestic dogs bordering the park. Contact between wild carnivores and dogs has been documented in the sampled villages, therefore dogs likely pose a substantial risk to the carnivores within and near NKMNP. Further measures should be undertaken to decrease the risk of spillover infection from domestic animals into the wild species of this region.

Friday, 10 June 2016

Pathogens of wild maned wolves in Brazil

Curi, N. H. D. A., Coelho, C. M., Malta, M. D. C. C., Magni, E. M. V., Sábato, M. A. L., Araújo, A. S., ... & Souza, S. L. P. D. (2012). Pathogens of wild maned wolves (Chrysocyon brachyurus) in Brazil. Journal of wildlife diseases, 48(4), 1052-1056.

The maned wolf, Chrysocyon brachyurus, is an endangered Neotropical canid that survives at low population densities. Diseases are a potential threat for its conservation but to date have been poorly studied. We performed clinical evaluations and investigated the presence of infectious diseases through serology and coprologic tests on maned wolves from Galheiro Natural Private Reserve, Perdizes City, Minas Gerais State, southeastern Brazil. Fifteen wolves were captured between 2003 and 2008. We found high prevalences of antibody to canine distemper virus (CDV; 13/14), canine
parvovirus (CPV; 4/14), canine adenovirus type 2 (13/14), canine coronavirus (5/11), canine parainfluenza virus (5/5), and Toxoplasma gondii (6/8), along with Ancylostomidae eggs in all feces
samples. Antibodies against Leishmania sp. were found in one of 10 maned wolves, and all samples were negative for Neospora caninum. Evidence of high exposure to these viral agents was also observed in unvaccinated domestic dogs from neighboring farms. High prevalence of viral agents and parasites such as CDV, CPV, and Ancylostomidae indicates that this population faces considerable risk of outbreaks and chronic debilitating parasites. This is the first report of exposure to canine parainfluenza virus in Neotropical free-ranging wild canids. Our findings highlight that canine pathogens pose a serious hazard to the viability of maned wolves and other wild carnivore populations in the area and emphasize the need for monitoring and protecting wildlife health in remaining fragments of the Cerrado biome.

Sunday, 5 June 2016

Exposure of free-ranging maned wolves to infectious and parasitic disease agents

Deem, S. L., & Emmons, L. H. (2005). Exposure of free-ranging maned wolves (Chrysocyon brachyurus) to infectious and parasitic disease agents in the Noel Kempff Mercado National Park, Bolivia. Journal of Zoo and Wildlife Medicine, 36(2), 192-197.

Maned wolves (Chrysocyon brachyurus) are neotropic mammals, listed as a CITES Appendix II species, with a distribution south of the Amazon forest from Bolivia, through northern Argentina and Paraguay and into eastern Brazil and northern Uruguay. Primary threats to the survival of free-ranging maned wolves include habitat loss, road kills, and shooting by farmers. An additional threat to the conservation of maned wolves is the risk of morbidity and mortality due to infectious and parasitic diseases. Captive maned wolves are susceptible to, and die from, common infectious diseases of domestic dogs (Canis familiaris) including canine distemper virus (CDV), canine parvovirus (CPV), rabies virus, and canine adenovirus (CAV). Results from this study show that free-ranging maned wolves in a remote area of Bolivia have been exposed to multiple infectious and parasitic agents of domestic carnivores, including CAV, CDV, CPV, canine coronavirus, rabies virus, Leptospira interrogans spp., Toxoplasma gondii, and Dirofilaria immitis, and may be at increased risk for disease due to these agents.

Saturday, 28 May 2016

Toxoplasmosis in sea lions in NZ

Michael, S. A., Howe, L., Chilvers, B. L., Morel, P. C. H., & Roe, W. D. (2016). Seroprevalence of Toxoplasma gondii in mainland and sub-Antarctic New Zealand sea lion (Phocarctos hookeri) populations. New Zealand Veterinary Journal, (just-accepted), 1-14.

AIMS: To investigate the seroprevalence to Toxoplasma gondii in New Zealand sea lions (Phocarctos hookeri), as a potential contributor to reproductive failure.
METHODS: Archived sera were sourced from New Zealand sea lions from two recolonising mainland populations in the Otago Peninsula (n=15) and Stewart Island (n=12), as well as a declining population at Enderby Island (n=28) in the New Zealand sub-Antarctic. Sera were tested for antibodies to T. gondii using a commercially available ELISA (with samples considered positive if the sample to positive ratio was >30%), and latex agglutination test (LAT; with titres ≥1:32 considered positive). Western blot analysis was used to validate the results of a subset of 14 samples.
RESULTS: Five samples from sea lions in mainland locations were confirmed positive for antibodies to T. gondii. Two adult females exhibited high LAT antibody titres (min 1:2048, max 1:4096) on both occasions when sampled 1 and 2 years apart, respectively. No animals from Enderby Island were seropositive.
CONCLUSIONS: Toxoplasma gondii infection is unlikely to be a major contributor to poor reproductive success in New Zealand sea lions. However, continued surveillance is pertinent to assess subclinical and clinical impacts of the parasite on these threatened populations. The commercial tests evaluated here, with further species-specific threshold refinement could provide a fast, inexpensive and reliable indicator of T. gondii exposure in New Zealand sea lions.


Wednesday, 25 May 2016

Canine pathogens among wolves from the Alaska peninsula

Watts, D. E., & Benson, A. M. (2016). Prevalence of antibodies for selected canine pathogens among wolves from the Alaska peninsula, USA. Journal of Wildlife Diseases.

We collected blood samples from wolves (Canis lupus) on the Alaska Peninsula, southwest Alaska, USA, 2006–2011 and tested sera for antibodies to canine adenovirus (CAV), canine coronavirus (CCV), canine distemper virus (CDV), canine herpesvirus (CHV), canine parainfluenza (CPI), canine parvovirus (CPV), Neospora caninum, and Toxoplasma gondii. Detected antibody prevalence was 90% for CAV, 28% for CCV, 12% for CDV, 93% for CHV, 0% for CPI, 20% for CPV, and 86% for T. gondii. Prevalence of CCV antibodies suggested a seasonal pattern with higher prevalence during spring (43%) than in fall (11%). Prevalence of CCV antibodies also declined during the 6-yr study with high prevalence during Spring 2006–2008 (80%, n=24) and low prevalence during Spring 2009–2011 (4%, n=24). Prevalence of N. caninum and T. gondii antibodies were highly variable in the study area during 2006–2011. Results suggested that some pathogens might be enzootic on the Alaska Peninsula (e.g., CAV and CHV) while others may be epizootic (e.g., CCV, N. caninum, T. gondii).

Sunday, 1 May 2016

Epizootic of toxoplasmosis in several marsupials in Zoo

Patton, S., Johnson, S. L., Loeffler, D. G., Wright, B. G., & Jensen, J. M. (1986). Epizootic of toxoplasmosis in kangaroos, wallabies, and potaroos: possible transmission via domestic cats. Journal of the American Veterinary Medical Association, 189(9), 1166-1169.

Between July 28 and August 6 1984, adult marsupials kept at the Knoxville Zoo, USA, including 5 Potorous tridactylus, 3 Wallabia eugenii, 3 Macropus giganteus and 2 M. rufus, became lethargic, developed respiratory distress and died. Acute interstitial pneumonia was seen at necropsy in all 13 animals and multifocal granulomatous necrotizing hepatitis in 10; intracellular and free T. gondii tachyzoites were seen in both organs. Parasites were also found in gastrointestinal lesions and in the cells of the muscular tunica. Foci of necrosis and inflammation were seen in other viscera. One animal had T. gondii tachyzoites in the eye. Of the 3 animals from which blood was collected, 2 adult kangaroos were positive in the IHAT for T. gondii antibodies. All 12 mice inoculated with solutions from infected organs died 2 to 14 days later and T. gondii were seen in their liver and lung tissue smears and in the ascitic fluid of 4 mice. 8 of 11 surviving marsupials were seropositive; 2 animals had increasing titres during the 8 weeks of the epizootic. Blood and faeces of exotic cats kept near the marsupials were also investigated; only one Asian lion was found seropositive. Faecal oocysts were not found. 2 of 8 cats trapped in the zoo, but none of the 4 oppossums, were seropositive. One of the seronegative cats was shedding oocysts at the time of capture.

Sunday, 3 April 2016

Toxoplasmosis may lead to road kills of Persian leopards

Namroodi, S., Gholami, A., & Shariat-Bahadori, E. (2016). Toxoplasmosis may lead to road kills of Persian leopards (Panthera pardus saxicolor) in Golestan national park, Iran. Journal of Wildlife Diseases.

Three Persian leopards (Panthera pardus saxicolor) that died from car accidents in Golestan National Park, Iran, were examined for Toxoplasma gondii and rabies virus infection. Acute T. gondii infection was diagnosed in two Persian leopards but no rabies virus was detected. Acute toxoplasmosis may be one of the factors leading to Persian leopard road kills.

Wednesday, 16 March 2016

Toxoplasmosis in endangered Hawaiian goose


Toxoplasma gondii is a protozoan parasite transmitted by domestic cats (Felis catus) that has historically caused mortality in native Hawaiian birds. To estimate how widespread exposure to the parasite is in nene (Hawaiian Geese, Branta sandvicensis), we did a serologic survey for T. gondii antibody and genetically characterized parasite DNA from the tissues of dead birds that had confirmed infections by immunohistochemistry. Of 94 geese sampled, prevalence on the island of Kauai, Maui, and Molokai was 21% (n=42), 23% (n=31), and 48% (n=21), respectively. Two new T. gondii genotypes were identified by PCR-restriction fragment length polymorphism from four geese, and these appeared segregated geographically. Exposure to T. gondii in wild nene is widespread and, while the parasite is not a major cause of death, it could have sublethal or behavioral effects. How to translate such information to implement effective ways to manage feral cats in Hawaii poses challenges.

Thursday, 16 July 2015

Cat vectored toxoplasmosis among the main causes of mortality in endangered Nene

Work, T. M., Dagenais, J., Rameyer, R., & Breeden, R. (2015). Mortality patterns in endangered Hawaiian geese (Nene, Branta sandvicensis). Journal of Wildlife Diseases, 51(3), 688-695.

Understanding causes of death can aid management and recovery of endangered bird populations. Toward those ends, we systematically examined 300 carcasses of endangered Hawaiian Geese (Nene; Branta sandvicensis) from Hawaii, Maui, Molokai, and Kauai between 1992 and 2013. The most common cause of death was emaciation, followed by trauma (vehicular strikes and predation), and infectious/inflammatory diseases of which toxoplasmosis (infection with Toxoplasma gondii) predominated. Toxicoses were less common and were dominated by lead poisoning or botulism. For captive birds, inflammatory conditions predominated, whereas emaciation, trauma, and inflammation were common in free-ranging birds. Mortality patterns were similar for males and females. Trauma predominated for adults, whereas emaciation was more common for goslings. Causes of death varied among islands, with trauma dominating on Molokai, emaciation and inflammation on Kauai, emaciation on Hawaii, and inflammation and trauma on Maui. Understanding habitat or genetic-related factors that predispose Nene (particularly goslings) to emaciation might reduce the impact of this finding. In addition, trauma and infection with T. gondii are human-related problems that may be attenuated if effectively managed (e.g., road signs, enforcement of speed limits, feral cat [Felis catus] control). Such management actions might serve to enhance recovery of this endangered species.

Tuesday, 14 July 2015

Pathogen exposure varies widely among sympatric populations of wild and domestic felids

Carver, S., Bevins, S. N., Lappin, M. R., Boydston, E. E., Lyren, L. M., Alldredge, M. W., Logan K.A., Sweanor, L.L., Riley, S.P.D., Klein Serieys, L.E., Fisher, R.N., Vickers,T.W., Boyce, W.M., McBride, R., Cunningham, M.C., Jennings, M., Lewis, J.S., Lunn, T. Crooks, K.R. & VandeWoude, S. (2015). Pathogen exposure varies widely among sympatric populations of wild and domestic felids across the United States. Ecological Applications.
Understanding how landscape, host, and pathogen traits contribute to disease exposure requires systematic evaluations of pathogens within and among host species and geographic regions. The relative importance of these attributes is critical for management of wildlife and mitigating domestic animal and human disease, particularly given rapid ecological changes, such as urbanization. We screened >1,000 samples from sympatric populations of puma (Puma concolor), bobcat (Lynx rufus) and domestic cat (Felis catus) across urban gradients in six sites, representing three regions, in North America for exposure to a representative suite of bacterial, protozoal and viral pathogens (Bartonella sp., Toxoplasma gondii, feline herpesvirus-1, feline panleukopenea virus, feline calicivirus, feline immunodeficiency virus). We evaluated prevalence within each species, and examined host trait and land cover determinants of exposure-providing an unprecedented analysis of factors relating to potential for infections in domesticated and wild felids. Prevalence differed among host species (highest for puma and lowest for domestic cat) and was greater for indirectly transmitted pathogens. Sex was inconsistently predictive of exposure to directly transmitted pathogens only, and age infrequently predictive of both direct and indirectly transmitted pathogens. Determinants of pathogen exposure were widely divergent between the wild felid species. For puma, suburban landuse predicted increased exposure to Bartonella sp. in southern California, and FHV-1 exposure increased near urban edges in Florida. This may suggest inter-specific transmission with domestic cats via flea vectors (California) and direct contact (Florida) around urban boundaries. Bobcats captured near urban areas had increased exposure to T. gondii in Florida, suggesting an urban source of prey. Bobcats captured near urban areas in Colorado and Florida had higher FIV exposure, possibly suggesting increased intra-specific interactions through pile-up of home ranges. Beyond these regional and pathogen specific relationships, proximity to the wildland urban interface did not generally increase the probability of disease exposure in wild or domestic felids, emphasizing the importance of local ecological determinants. Indeed, pathogen exposure was often negatively associated with the wildland urban interface for all felids. Our analyses suggest cross-species pathogen transmission events around this interface may be infrequent, but followed by self-sustaining propagation within the new host species.


Saturday, 20 December 2014

The effects of feral cats on insular wildlife

Hess, S. C., & Danner, R. M. (2013). The effects of feral cats on insular wildlife: The Club-Med syndrome. In Proceedings of the Vertebrate Pest Conference (Vol. 25, pp. 76-82).

Domestic cats have been introduced to many of the world’s islands where they have been particularly devastating to insular wildlife which, in most cases, evolved in the absence of terrestrial predatory mammals and feline diseases. We review the effects of predation, feline diseases, and the life history characteristics of feral cats and their prey that have contributed to the extirpation and extinction of many insular vertebrate species. The protozoan Toxoplasma gondii is a persistent landbased zoonotic pathogen hosted by cats that is known to cause mortality in several insular bird species. It also enters marine environments in cat feces, where it can cause the mortality of marine mammals. Feral cats remain widespread on islands throughout the world, and are frequently subsidized in colonies which caretakers often assert have little negative effect on native wildlife. However, population genetics, home range, and movement studies all suggest that there are no locations on smaller islands where these cats cannot penetrate within two generations. While the details of past vertebrate extinctions were rarely documented during contemporary time, a strong line of evidence is emerging that the removal of feral cats from islands can rapidly facilitate the recolonization of extirpated species, particularly seabirds. Islands offer unique, mostly self-contained ecosystems in which to conduct controlled studies of the effects of feral cats on wildlife, having implications for continental systems. The response of terrestrial wildlife such as passerine birds, small mammals, and herptiles still needs more thorough long-term monitoring and documentation after the removal of feral cats.

Friday, 12 December 2014

Toxoplasma gondii in domestic and wild animals from forest fragments in Brazil

Fournier, G. F. D. S. R., Lopes, M. G., Marcili, A., Ramirez, D. G., Acosta, I. C. L., da Silva Ferreira, J. I. G., Aline Diniz Cabral, Ribeiro de Lima, J.T., de Jesus Pena,H.F., Dias, R.A. & Gennari, S. M. Toxoplasma gondii in domestic and wild animals from forest fragments of the municipality of Natal, northeastern Brazil. Braz. J. Vet. Parasitol., Jaboticabal, 23 (4): 501-508

Toxoplasmosis stands out as a global disease that has felines as definitive hosts. In the municipality of Natal, Rio Grande do Norte State, Brazil, two parks are notable for their ecological and social importance. This study aimed to investigate the presence of Toxoplasma gondii in short hair cats, bats and small non-volant mammals in these two ecological reserves. Altogether, biological samples were obtained from 154 mammals, 92 wild animals from both areas and 62 domestic cats of the Parque da Cidade. In total, 22 (53.7%) non-volant wild mammals, 11 (21.5%) bats and 28 (52.8%) cats were positive for IgG anti-T. gondii antibodies using the Modified Agglutination Test (≥ 25). It was
possible to detect the presence of T. gondii DNA, by means of a molecular amplification of a B1 gene fragment (155bp), in 92 tissue samples from wild animals, including Didelphis albiventris, Monodelphis domestica, Artibeus lituratusCarollia perspicillata and Glossophaga soricina. Of the 62 cats examined by the same molecular method, T. gondii DNA could be detected in 4 cats. In this study, it was observed the circulation of T. gondii in wild species and domestic cats, demonstrating the involvement of wild and domestic animals in the cycle of T. gondii.

Thursday, 13 November 2014

Toxoplasmosis in prey species and consequences for prevalence in feral cats

Afonso, E., Thulliez, P., Pontier, D., & Gilot-Fromont, E. (2007). Toxoplasmosis in prey species and consequences for prevalence in feral cats: not all prey species are equal. Parasitology, 134(14), 1963-1971.

Toxoplasma gondii is largely transmitted to definitive felid hosts through predation. Not all prey species represent identical risks of infection for cats because of differences in prey susceptibility, exposure and/or lifespan. Previously published studies have shown that prevalence in rodent and lagomorph species is positively correlated with body mass. We tested the hypothesis that different prey species have different infection risks by comparing infection dynamics of feral cats at 4 sites in the sub-Antarctic Kerguelen archipelago which differed in prey availability. Cats were trapped from 1994 to 2004 and anti-T. gondii IgG antibodies were detected using the modified agglutination test (1:40). Overall seroprevalence was 51·09%. Antibody prevalence differed between sites, depending on diet and also on sex, after taking into account the effect of age. Males were more often infected than females and the difference between the sexes tended to be more pronounced in the site where more prey species were available. A difference in predation efficiency between male and female cats may explain this result. Overall, our results suggest that the composition of prey items in cat diet influences the risk of T. gondii infection. Prey compositon should therefore be considered important in any understanding of infection dynamics of T. gondii.

Sunday, 5 October 2014

Toxoplasmosis in White tailed deers

Ballash, G. A., Dubey, J. P., Kwok, O. C. H., Shoben, A. B., Robison, T. L., Kraft, T. J., & Dennis, P. M. 2014. Seroprevalence of Toxoplasma gondii in White-Tailed Deer (Odocoileus virginianus) and Free-Roaming Cats (Felis catus) Across a Suburban to Urban Gradient in Northeastern Ohio. EcoHealth, 1-9.

Felids serve as the definitive host of Toxoplasma gondii contaminating environments with oocysts. White-tailed deer (WTD; Odocoileus virginianus) are used as sentinel species for contaminated environments as well as a potential source for human foodborne infection with T. gondii. Here we determine the seroprevalence of T. gondii in a WTD and felid population, and examine those risk factors that increase exposure to the parasite. Serum samples from 444 WTD and 200 free-roaming cats (Felis catus) from urban and suburban reservations were tested for T. gondii antibodies using the modified agglutination test (MAT, cut-off 1:25). Antibodies to T. gondii were found in 261 (58.8%) of 444 WTD, with 164 (66.1%) of 248 from urban and 97 (49.5%) of 196 from suburban regions. Significant risk factors for seroprevalence included increasing age (P < 0.0001), reservation type (P < 0.0001), and household densities within reservation (P < 0.0001). Antibodies to T. gondii were found in 103 (51.5%) of 200 cats, with seroprevalences of 79 (51%) of 155 and 24 (53.3%) of 45 from areas surrounding urban and suburban reservations, respectively. Seroprevalence did not differ by age, gender, or reservation among the cats’ sample. Results indicate WTD are exposed by horizontal transmission, and this occurs more frequently in urban environments. The difference between urban and suburban cat densities is the most likely the reason for an increased seroprevalence in urban WTD. These data have public health implications for individuals living near or visiting urban areas where outdoor cats are abundant as well as those individuals who may consume WTD venison.

Thursday, 11 September 2014

Fatal toxoplasmosis in endemic NZ birds

Howe, L., Hunter, S., Burrows, E., & Roe, W. (2013). Four cases of fatal toxoplasmosis in three species of endemic New Zealand birds. Avian Diseases.  58(1): 171-175

Four cases of fatal toxoplasmosis in three endemic avian species are reported. Between 2009 and 2012, two kereru, one North Island brown kiwi, and one North Island kaka were submitted for necropsy examination. On gross post mortem the kiwi had marked hepatosplenomegaly while the kaka and two kereru had swollen, slightly firm deep red lungs. Histologically, there was extensive hepatocellular necrosis in the liver of the kiwi while the kaka and kereru showed severe fibrinous bronchointerstitial pneumonia. In the kiwi, protozoal organisms were present within both hepatocytes and Kupffer cells of the liver and within the epithelial cells and macrophages of the interstitium of the lung in the kaka and two kereru. The diagnosis of toxoplasmosis was confirmed with immunohistochemistry and PCR on the liver and/or lung of paraffin embedded formalin-fixed tissue. Genotyping of up to seven markers revealed an atypical Type II isolate of T. gondii was present in at least three of the cases. This study provides evidence that T. gondii can cause mortality in these endemic species and suggests further research is needed to determine that full extent of morbidity and mortality caused by this parasite in New Zealand's unique avifauna.

Sunday, 10 August 2014

Toxoplasmosis prevalence in Tasmania's cats

Fancourt, B., & Jackson, R. (2014). Regional seroprevalence of Toxoplasma gondii antibodies in feral and stray cats (Felis catus) from Tasmania. Australian Journal of Zoology.

Toxoplasma gondii is a cosmopolitan protozoan parasite of felids that also has significant implications for the health of wildlife, livestock and humans worldwide. In Australia, feral, stray and domestic cats (Felis catus) are the most important definitive host of T. gondii as they are the only species that can excrete the environmentally resistant oocysts that provide a major source of infection for mammals and birds. In Tasmania, the rapid decline of the Tasmanian devil (Sarcophilus harrisii) may allow an increase in feral cat abundance, thereby increasing the risk of T. gondii infection to a range of susceptible wildlife species. At present, there is scant information on the prevalence of T. gondii infection in feral cat populations across Tasmania. We tested feral cats from 13 regions across Tasmania for the presence of T. gondii-specific IgG antibodies using a modified agglutination test. Results were combined with serosurveys from three previous studies to enable a comparison of seroprevalence among 14 regions across Tasmania. We found 84.2% (224/266) of cats tested positive for T. gondii IgG antibodies. This is among the highest rates of prevalence recorded from Australia, and significantly higher than most other countries. Adult cats had higher seroprevalence than kittens but there was no difference between sexes. In Tasmania, seroprevalence was high in 12 of 14 regions (range: 79.3% - 100.0%), with only two regions (Tasman Island and Southern Tasmania) recording significantly lower seroprevalence (≤50%). This suggests a high risk of infection across Tasmania, and has significant implications for wildlife conservation should feral cat abundance increase with the ongoing declines in devils.

Thursday, 17 July 2014

Parity and age related to toxoplasmosis among pregnant women in Rabat, Morocco

Laboudi, M., El Mansouri, B., & Rhajaoui, M. (2014). The role of the parity and the age in acquisition of Toxoplasmosis among pregnant women in Rabat-Morocco. International Journal of Innovation and Applied Studies, 6 (3): 488-492

Objectives: This retrospective study was undertaken between 2008 and 2009 to assess the seroprevalence of Toxoplasmosis among pregnant women and the role of the parity, the age and the abortion presence or absence in acquisition of infection pregnant women at the National Institute of health in Rabat in Morocco. 

Methods: Specific T. gondii IgG and IgM were measured by Enzyme-Linked Immunosorbent Assay (ELISA). Datation of the infection was carried out by avidity test. All existing data for every pregnant woman were collected from medical report. 

Results: Among 1169 pregnant women of different age diagnosed, 47% were found to be IgG seropositive including 1,5 % of IgM seropositive. The use of IgG avidity test allowed to exclude recent infection among 72,2 % of IgM positive sera. The result of bivariate analysis revealed that the age and parity influenced significantly the seroprevalence rate, whilst the existence of previous spontaneous abortion did not have any significant statistical correlation with the positivity of toxoplasmosis. 

Conclusion: This study showed that 53 % pregnant women were susceptible to T. gondii and considered to be at high risk for toxoplasmosis during pregnancy. However, the follow-up of pregnancy and Counselling of pregnant women remains essential of the prevention of congenital toxoplasmosis. 

Thursday, 26 June 2014

Toxoplasmosis risk to sea-otters


Seventeen percent of sea otters die from brain disease caused by a single-cell deadly parasite, Toxoplasma gondii. For eons, this parasite has moved mostly without notice among animals, including humans, on land. But now, it is migrating to the sea, where it is infecting mammals, including sea otters, whose immune systems are unprepared for the assault.

Toxoplasmosis and sea otters



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