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C Gonzalezlanza - One of the best experts on this subject based on the ideXlab platform.
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proteomic analysis of the tegument and excretory secretory products of dicrocoelium dendriticum digenea adult worms
Experimental Parasitology, 2013Co-Authors: A M Martinezibeas, C Gonzalezlanza, M Y MangagonzalezAbstract:Dicrocoeliosis, caused by Dicrocoelium dendriticum, is an important hepatic parasitosis in ruminants, whose immunological diagnosis and control remain unsatisfactory. There are very few studies on the antigens of this trematode and molecular knowledge about it is practically nil. Therefore the aim of this study was to identify the major antigenic proteins in the tegument (TG) and excretory–secretory (ES) antigenic extracts of D. dendriticum. The separation conditions of the protein extracts were optimized using 2-D PAGE; the gels were stained with colloidal Coomassie or transferred to carry out immunodetection with anti-Dicrocoelium dendriticum sera. The proteins of interest excised from the gels were identified by mass spectrometry (MALDI). The proteomic maps of the TG and ES extracts of D. dendriticum were defined first, detecting 332 spots in the TG and 284 in the ES, with a similar distribution in both. A quantity of 29 proteins in the excretion-secretion products and 43 in the teguments were identified first in D. dendriticum, 23 of them antigenic, involved in various processes such as: metabolism, detoxification, chaperone, transport or structural molecules. These results could help us to understand the complex parasite-host relationships, improve the diagnosis of dicroceliosis and help to produce possible vaccines to control it.
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partial characterization and isolation of 130 kda antigenic protein of dicrocoelium dendriticum adults
Veterinary Parasitology, 2005Co-Authors: B Revillanuin, M Y Mangagonzalez, B Minambres, C GonzalezlanzaAbstract:Abstract The study focused on characterizing and isolating Dicrocoelium dendriticum antigens or their fractions that could be used for the immunological diagnosis of dicrocoeliosis. Somatic (SoAg) and excretory–secretory antigens (ESAg) were analyzed by SDS-PAGE and their specificity was evaluated by Western blot with homologous and heterologous sera. The antigens were partially purified by chromatographic techniques of gel-filtration (Sephacryl S-300) and ion exchange (Hitrap–DEAE–Sepharose). Western blot analysis using sera of ovine infected with D. dendriticum revealed eight main antigenic polypeptides ranging from 24 to 205 kDa for SoAg and seven for ESAg with apparent molecular mass in the range of 26–205 kDa. We detected a specific parasite protein with an approximate molecular weight of 130 kDa in SDS-PAGE gels, arranged as a 450 kDa tetramer in native conditions. It also showed strong immunoreactivity by Western blot against ovine sera experimentally infected with D. dendriticum. Gel filtration chromatography (Sephacryl S-300) also showed other specific proteins, one of about 24 kDa in SoAg and another of about 42 kDa in ESAg. The elution conditions of 450 kDa protein (130 kDa monomer) by DEAE chromatography were similar to those from the somatic antigen (pH 7.2, 0.1 M NaCl, in 29–34 ml fractions) and from the excretion–secretion antigen (pH 8.0, 0.1 M NaCl, in 29–35 ml fractions). The suitability of 130 kDa polypeptide for D. dendriticum infection diagnosis was confirmed by Western blot using a pool of sera as well as individual serum samples from experimentally infected sheep. The sequence of amino termini of 130 kDa polypeptide from both fractions was the same and identical to that reported for a peptide from D. dendriticum described as a globin. This sequence also revealed an appreciable similarity with the amino end of globins from some phylogenetically related worms.
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field and experimental studies on dicrocoelium dendriticum and Dicrocoeliasis in northern spain
Journal of Helminthology, 2005Co-Authors: M Y Mangagonzalez, C GonzalezlanzaAbstract:The transmission, control and the relationship between Dicrocoelium dendriticum and its definitive (sheep and cattle) and intermediate (molluscs and ants) hosts under natural and experimental conditions are described. Eleven species of molluscs and four of ants were found infected with larval D. dendriticum in Leon province, north-west Spain. Infected ants were observed between April and November and in tetania at 7.5–26.9°C. The highest shedding of eggs by sheep and cattle was detected in winter. Two treatments applied in November and January were the most effective. In experimentally infected molluscs, the parasite was not visible under the stereomicroscope, at least until 50 days post-infection (p.i.). The prepatent period in experimentally infected lambs was 49–79 days p.i. The number of eggs per gram increased with the days p.i. and the parasite burden. The aspartate aminotransferase, alanine aminotransferase, gamma-glutamyl transpeptidase, leukocyte and neutrophil values of infected lambs increased, but those of lymphocytes decreased. Using the enzyme-linked immunosorbert assay technique, the IgG antibody response to excretory–secretory and somatic antigens of D. dendriticum was positive from day 30 p.i., although the maximum antibody levels were observed on day 60 p.i. The number of worms per lamb ranged between 30 and 2063. Cholangitis and cholangiectasia of the septal bile and hepatic ducts were observed. The best enzymatic systems for adult and larval D. dendriticum characterization were lactate dehydrogenase, glucose phosphate isomerase and phosphoglucomutase. Genetic variability of adult D. dendriticum was high using the random amplified polymorphic DNA technique.
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contributions to and review of dicrocoeliosis with special reference to the intermediate hosts of dicrocoelium dendriticum
Parasitology, 2001Co-Authors: M Y Mangagonzalez, C Gonzalezlanza, E Cabanas, Raquel Del CampoAbstract:An epidemiological study on dicrocoeliosis caused by Dicrocoelium dendriticum was carried out on sheep, molluscs and ants in the mountains of Leon province (NW Spain) between 1987–1991. The results concerning the intermediate hosts and a review of some aspects of dicrocoeliosis are summarized. Mollusc collection for the helminthological study was random throughout the study area at fortnightly intervals. Twenty-nine Gastropoda species were identified. D. dendriticum infection was only detected in 2·98% of the 2084 Helicella itala examined and in 1·06% of 852 H. corderoi . The highest infection prevalence was detected in H. itala in September and in H. corderoi in February. Daughter sporocysts with well-developed cercariae predominated in spring and autumn. Infection prevalence increased with mollusc age and size. Ants were collected from anthills or plants to which they were attached. The behaviour of ants in tetania was followed. Twenty-one Formicidae species were identified, but only the following harboured D. dendriticum : Formica cunicularia (1158 examined specimens, 0·69% infection prevalence, 2–56 metacercariae per ant); F. sanguinea (234, 1·28%, 2–63); F. nigricans (1770, 4·97%, 1–186); F. rufibarbis (288, 6·59%, 2–107). In a flat area close to Leon town, 95·39% of the 2085 F. rufibarbis specimens collected in tetania contained metacercariae (1–240) in the abdomen. These were used for parasite characterization by isoelectric focusing and to infect lambs and hamsters. Only one brainworm per ant was found.
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larval development of dicrocoelium dendriticum in cernuella xeromagna cespitum arigonis under controlled laboratory conditions
Journal of Helminthology, 1997Co-Authors: C Gonzalezlanza, M Y Mangagonzalez, Raquel Del Campo, M P DelpozoAbstract:: The larval development of Dicrocoelium dendriticum (Digenea: Dicrocoeliidae) in experimentally infected Cernuella (Xeromagna) cespitum arigonis (Schmidt, 1853), a species of mollusc important in the epidemiology of dicrocoeliosis in Spain, has been studied. A total of 948 specimens of this mollusc, distributed in five batches, were tested with individual doses of 50 to 150 parasite eggs, obtained from sheep, after 4 days without food. After infection these molluscs and control specimens were kept in an environmental simulation chamber at 20 degrees C, 50% relative humidity and 7 h of light per day. To detect the parasite, a minimum of six molluscs were examined every 20 days from day 1 post-infection (p.i.). The eggs of D. dendriticum were eliminated in the molluscan faeces 48 h post infection. The percentages of molluscs harbouring the parasite ranged between 17.53% and 75%. Daughter sporocysts with undifferentiated germinal masses and occupying very reduced areas of the hepatopancreas were observed 50 days p.i. and in the period immediately following. After 110 days p.i. sporocysts with cercariae at different stages of development were found although slimeball emission was never observed.
Behnam Meshgi - One of the best experts on this subject based on the ideXlab platform.
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predicting environmental suitability and geographical distribution of dicrocoelium dendriticum at littoral of caspian sea an ecological niche based modeling
Preventive Veterinary Medicine, 2019Co-Authors: Behnam Meshgi, Morteza Majidirad, Ahmad Ali Hanafibojd, Ali KazemzadehAbstract:Abstract Dicrocoeliasisis caused by the small lancet fluke ( Dicrocoelium spp.), mainly Dicrocoelium dendriticum in domestic and wild ruminants. The small liver fluke is the probable predisposing cause of economic burden. The impact of geographic and climatic factors on the incidence of Dicrocoeliasis has been severely ignored in different geographical areas. Due to the lack of data regarding Dicrocoeliasis in Iran, this study aimed to investigate the prevalence and intensity of ovine and bovine Dicrocoelium infection in the coastal strip south of the Caspian Sea. Fecal samples were obtained from the cattle and sheep in three provinces of Guilan, Mazandaran and Golestan at the littoral of the Caspian Sea. All collected samples were then tested by flotation methods for determining the number of eggs per gram of feces (EPG). Moreover, we applied maximum entropy niche-based modeling (MaxEnt), coupled with remote sensing and the Geographical Information System (GIS) to visualize the spatial distribution and risk factors of Dicrocoelium dendriticum at the littoral of Caspian Sea. A total of 2688 stool samples were collected from cattle (n = 1344) and sheep (n = 1344) in coastal provinces of the Caspian Sea including Guilan (n = 1280), Mazandaran (n = 768) and Golestan (n = 640) provinces. Based on the data presented here, the highest rate of infection was observed in Guilan and Mazandaran provinces. The results revealed the prevalence rates of 36.72% and 6.09% for sheep and cattle in Guilan province, respectively. This rate was 22.4% for sheep and 3.91% for cattle in Mazandaran province. However, the rate of sheep infection was 80% in some point locations. Dicrocoelium infections were found to be significantly different between three provinces in sheep (P Dicrocoelium was observed in sheep (36.72%) and cattle (6.09%) in Guilan province. Our findings exhibited a high reliability of the MaxEnt model, and area under the curve (AUC) values of the training and test data sets were determined to be 0.852 and 0.818, respectively. Jackknife analysis showed the relative variable contribution to the model performance, where four variables were found as key influential factors that highly affected the habitat suitability of the presence of the lancet fluke including the precipitation of driest quarter (Bio17), altitude, temperature seasonality (Bio4), and precipitation of driest month (Bio14). The findings of this study demonstrated a high presence rate of Dicrocoelium infection at the littoral of Caspian Sea, Iran. Moreover, climatic variables can be considered as important predictive factors affecting the distribution of infection in the studied areas. Further studies based on the findings of the GIS are also very important in the country for planning control programs.
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the prevalence and intensity rate of dicrocoelium dendriticum infection in ruminants of 3 provinces in coastal regions of the caspian sea
Iranian Journal of Veterinary Medicine, 2018Co-Authors: Morteza Majidirad, Behnam Meshgi, Saied BokaieAbstract:Background: Dicrocoeliasis is caused by digenean trematode of Dicrocoelium dendriticum, small liver fluke, a hepatic parasitic disease in ruminants and human, throughout the world. D. dendriticum infection has been considered to be correlated with the economic and veterinary aspects. Objectives: The aim of the present study was to determine the prevalence and intensity of infection with D. dendriticum in sheep and cattle in Guilan, Mazandaran and Golestan provinces from Caspian Sea Littoral, Northern part of Iran. Methods: For this purpose, 4 cities in every province, 4 villages in each city, and 4 districts in each village were chosen for sampling. Totally, 1344 faecal samples of sheep and cattle were examined. It should be taken in to consideration that the number of eggs per gram of feces (E.P.G) was determined by flotation technique. Results: The results suggested that sheep was infected 4-5 times more than cattle in all three provinces. The average of prevalence of D. dendriticum infection in sheep and cattle were 38.43% and 9.37%, respectively in Guilan province. The average of prevalence in Mazandaran province was determined to be 21.35% and 4.16% in sheep and cattle, respectively. It is worth noting that the highest infection rates were occurred in Chalus and Noor from Mazandaran province. The average of D. dendriticum infection was determined to be 6.87% in sheep and 1.87% in cattle from Golestan province. Conclusions: Our results indicated that not only the prevalence but also the intensity of infection were higher in sheep compared to cattle Furthermore, the rate of infection was about two fold higher in both hosts from Guilan province. Therefore, according to the higher prevalence of infection in two provinces of Guilan and Mazandaran and the importance of sheep in distribution of infection, sever control program are required by providing comprehensive plans.
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The prevalence and intensity rate of Dicrocoelium dendriticum infection in ruminants of 3 provinces in coastal regions of the Caspian Sea
Iranian Journal of Veterinary Medicine, 2018Co-Authors: Morteza Majidi-rad, Behnam Meshgi, Saied BokaieAbstract:Background: Dicrocoeliasis is caused by digenean trematode of Dicrocoelium dendriticum, small liver fluke, a hepatic parasitic disease in ruminants and human, throughout the world. D. dendriticum infection has been considered to be correlated with the economic and veterinary aspects. Objectives: The aim of the present study was to determine the prevalence and intensity of infection with D. dendriticum in sheep and cattle in Guilan, Mazandaran and Golestan provinces from Caspian Sea Littoral, Northern part of Iran. Methods: For this purpose, 4 cities in every province, 4 villages in each city, and 4 districts in each village were chosen for sampling. Totally, 1344 faecal samples of sheep and cattle were examined. It should be taken in to consideration that the number of eggs per gram of feces (E.P.G) was determined by flotation technique. Results: The results suggested that sheep was infected 4-5 times more than cattle in all three provinces. The average of prevalence of D. dendriticum infection in sheep and cattle were 38.43% and 9.37%, respectively in Guilan province. The average of prevalence in Mazandaran province was determined to be 21.35% and 4.16% in sheep and cattle, respectively. It is worth noting that the highest infection rates were occurred in Chalus and Noor from Mazandaran province. The average of D. dendriticum infection was determined to be 6.87% in sheep and 1.87% in cattle from Golestan province. Conclusions: Our results indicated that not only the prevalence but also the intensity of infection were higher in sheep compared to cattle Furthermore, the rate of infection was about two fold higher in both hosts from Guilan province. Therefore, according to the higher prevalence of infection in two provinces of Guilan and Mazandaran and the importance of sheep in distribution of infection, sever control program are required by providing comprehensive plans.
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determination of immunodominant antigens of dicrocoelium dendriticum by hyperimmune sera
Immunology and Infectious Diseases, 2014Co-Authors: Behnam Meshgi, M KhodaveisiAbstract:Dicrocoeliasis caused by the small liver fluke Dicrocoelium dendriticum (syn. D.lanceolatum), which live in the bile ducts and gall bladder of wild and domesticated mammals, particularly livestock farming. Parasitological methods are not reliable enough for diagnosis of this trematode infection. In the present study, the sera from rabbits immunized with somatic and excretory-secretory antigens of D.dendriticum were assayed with immunoblot technique. Adult worms were collected from infected livers of sheep at a local abattoir. The excretory-secretory product and somatic antigens were prepared through homogenization and incubation of trematodes, respectively. Polyclonal antibodies were raised in rabbits after inoculation of the two antigens with emulsified Freunds adjuvant followed by booster injection. Comparative study between D.dendriticum antigens and those of Fasciola, cysticercus tenuicollis and hydatid cyst fluids antigens was carried out. SDS-PAGE of antigens was performed and for immunoblotting analysis, hyperimmune sera were obtained from immunized rabbits of case and control groups. Immunoblot analysis of rabbits antisera against somatic and excretory-secretory antigens of D.dendriticum were showed six and four protein bands ranging from 25 to more than 170 and 25 to 70 kDa molecular weights, respectively. However cross-reaction with other specific proteins was observed in Fasciola excretory-secretory, hydatid cyst and cysticercus tenuicollis fluid antigens. The results demonstrated that the 25-27 kDa proteins were strongly recognized by both hyperimmune sera and was common in both somatic and excretory-secretory antigens. According to the results of this study performed with two antigens of D.dendriticum shows that the 25-27 kDa polypeptide as immunodominant protein, could be considered for the immunodiagnosis of Dicrocoeliasis and it probably induces protective immunity against Dicrocoelium infection.
Domenico Otranto - One of the best experts on this subject based on the ideXlab platform.
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dicrocoelium chinensis and dicrocoelium dendriticum trematoda digenea are distinct lancet fluke species based on mitochondrial and nuclear ribosomal dna sequences
Molecular Phylogenetics and Evolution, 2014Co-Authors: Domenico Otranto, Xingye Wang, Guanghui ZhaoAbstract:Lancet flukes parasitize the bile ducts and gall bladder of a range of mammals, including humans, causing dicrocoeliosis. In the present study, we sequenced and characterized the complete mitochondrial (mt) genomes as well as the first and second internal transcribed spacers (ITS-1 and ITS-2 = ITS) of nuclear ribosomal DNA (rDNA) of two lancet flukes, Dicrocoelium chinensis and D. dendriticum. Sequence comparison of a conserved mt gene and nuclear rDNA sequences among multiple individual lancet flukes revealed substantial nucleotide differences between the species but limited sequence variation within each of them. Phylogenetic analysis of the concatenated amino acid and multiple mt rrnS sequences using Bayesian inference supported the separation of D. chinensis and D. dendriticum into two distinct species-specific clades. Results of the present study support the proposal that D. dendriticum and D. chinensis represent two distinct lancet flukes. While providing the first mt genomes from members of the superfamily Plagiorchioidea, the novel mt markers described herein will be useful for further studies of the diagnosis, epidemiology and systematics of the lancet flukes and other trematodes of human and animal health significance.
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morphological and molecular differentiation between dicrocoelium dendriticum rudolphi 1819 and dicrocoelium chinensis sudarikov and ryjikov 1951 tang and tang 1978 platyhelminthes digenea
Acta Tropica, 2007Co-Authors: Domenico Otranto, Steffen Rehbein, Stefania Weigl, Cinzia Cantacessi, Antonio Parisi, Peter D OlsonAbstract:Abstract Dicrocoelium dendriticum ( Rudolphi, 1819 ) and Dicrocoelium hospes ( Looss, 1907 ) are recognised to affect the liver of domestic and wild ruminants. A third species, Dicrocoelium orientalis which was described from musk deer in the Baikal region of the former Soviet Union and re-named to Dicrocoelium chinensis (Sudarikov and Ryjikov, 1951) Tang and Tang, 1978 was isolated from other species of deer in Asian countries and from mouflon and roe deer in Europe. Scant information is available for D. chinensis , including the range of species that act as definitive and intermediate hosts. To provide morphological and molecular evidences differentiating D. chinensis versus D. dendriticum , 239 Dicrocoelium spp. specimens were collected from sheep, cattle and sika deer from different localities in Austria, Germany and Italy. Specimens were morphologically identified based on the testes orientation, overall size, and level of maximum body width and other morphometric measurements. From this sample, 10 specimens of D. chinensis and 25 of D. dendriticum from different hosts and geographical localities were characterized molecularly through sequencing of partial 18S rDNA (∼1400 bp) and ITS-2 (including the 5.8S and 28S flanking regions; ∼600 bp). Interspecific differences between D. dendriticum and D. chinensis of 0.14% and 3.8% were recorded in 18S rRNA and ITS-2 sequences, respectively. Phylogenetic analyses via Bayesian inference were conducted using sequences of ITS-2 (276 bp) and partial 28S (221 bp) of the above species of Dicrocoelium together with 20 species belonging to the Xiphidiata within the Plagiorchiida available in GenBank. Both gene regions were strongly concordant in differentiating the Dicrocoeliidae, Gorgoderidae and Plagiorchiidae and were in agreement with their current classification. Morphological and molecular characterization clearly differentiate D. dendriticum and D. chinensis as two distinct digeneans infecting ruminants. The implications on the separate status of D . chinensis on the etiology, biology and diagnosis of dicrocoeliosis are discussed.
M Y Mangagonzalez - One of the best experts on this subject based on the ideXlab platform.
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proteomic analysis of the tegument and excretory secretory products of dicrocoelium dendriticum digenea adult worms
Experimental Parasitology, 2013Co-Authors: A M Martinezibeas, C Gonzalezlanza, M Y MangagonzalezAbstract:Dicrocoeliosis, caused by Dicrocoelium dendriticum, is an important hepatic parasitosis in ruminants, whose immunological diagnosis and control remain unsatisfactory. There are very few studies on the antigens of this trematode and molecular knowledge about it is practically nil. Therefore the aim of this study was to identify the major antigenic proteins in the tegument (TG) and excretory–secretory (ES) antigenic extracts of D. dendriticum. The separation conditions of the protein extracts were optimized using 2-D PAGE; the gels were stained with colloidal Coomassie or transferred to carry out immunodetection with anti-Dicrocoelium dendriticum sera. The proteins of interest excised from the gels were identified by mass spectrometry (MALDI). The proteomic maps of the TG and ES extracts of D. dendriticum were defined first, detecting 332 spots in the TG and 284 in the ES, with a similar distribution in both. A quantity of 29 proteins in the excretion-secretion products and 43 in the teguments were identified first in D. dendriticum, 23 of them antigenic, involved in various processes such as: metabolism, detoxification, chaperone, transport or structural molecules. These results could help us to understand the complex parasite-host relationships, improve the diagnosis of dicroceliosis and help to produce possible vaccines to control it.
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partial characterization and isolation of 130 kda antigenic protein of dicrocoelium dendriticum adults
Veterinary Parasitology, 2005Co-Authors: B Revillanuin, M Y Mangagonzalez, B Minambres, C GonzalezlanzaAbstract:Abstract The study focused on characterizing and isolating Dicrocoelium dendriticum antigens or their fractions that could be used for the immunological diagnosis of dicrocoeliosis. Somatic (SoAg) and excretory–secretory antigens (ESAg) were analyzed by SDS-PAGE and their specificity was evaluated by Western blot with homologous and heterologous sera. The antigens were partially purified by chromatographic techniques of gel-filtration (Sephacryl S-300) and ion exchange (Hitrap–DEAE–Sepharose). Western blot analysis using sera of ovine infected with D. dendriticum revealed eight main antigenic polypeptides ranging from 24 to 205 kDa for SoAg and seven for ESAg with apparent molecular mass in the range of 26–205 kDa. We detected a specific parasite protein with an approximate molecular weight of 130 kDa in SDS-PAGE gels, arranged as a 450 kDa tetramer in native conditions. It also showed strong immunoreactivity by Western blot against ovine sera experimentally infected with D. dendriticum. Gel filtration chromatography (Sephacryl S-300) also showed other specific proteins, one of about 24 kDa in SoAg and another of about 42 kDa in ESAg. The elution conditions of 450 kDa protein (130 kDa monomer) by DEAE chromatography were similar to those from the somatic antigen (pH 7.2, 0.1 M NaCl, in 29–34 ml fractions) and from the excretion–secretion antigen (pH 8.0, 0.1 M NaCl, in 29–35 ml fractions). The suitability of 130 kDa polypeptide for D. dendriticum infection diagnosis was confirmed by Western blot using a pool of sera as well as individual serum samples from experimentally infected sheep. The sequence of amino termini of 130 kDa polypeptide from both fractions was the same and identical to that reported for a peptide from D. dendriticum described as a globin. This sequence also revealed an appreciable similarity with the amino end of globins from some phylogenetically related worms.
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field and experimental studies on dicrocoelium dendriticum and Dicrocoeliasis in northern spain
Journal of Helminthology, 2005Co-Authors: M Y Mangagonzalez, C GonzalezlanzaAbstract:The transmission, control and the relationship between Dicrocoelium dendriticum and its definitive (sheep and cattle) and intermediate (molluscs and ants) hosts under natural and experimental conditions are described. Eleven species of molluscs and four of ants were found infected with larval D. dendriticum in Leon province, north-west Spain. Infected ants were observed between April and November and in tetania at 7.5–26.9°C. The highest shedding of eggs by sheep and cattle was detected in winter. Two treatments applied in November and January were the most effective. In experimentally infected molluscs, the parasite was not visible under the stereomicroscope, at least until 50 days post-infection (p.i.). The prepatent period in experimentally infected lambs was 49–79 days p.i. The number of eggs per gram increased with the days p.i. and the parasite burden. The aspartate aminotransferase, alanine aminotransferase, gamma-glutamyl transpeptidase, leukocyte and neutrophil values of infected lambs increased, but those of lymphocytes decreased. Using the enzyme-linked immunosorbert assay technique, the IgG antibody response to excretory–secretory and somatic antigens of D. dendriticum was positive from day 30 p.i., although the maximum antibody levels were observed on day 60 p.i. The number of worms per lamb ranged between 30 and 2063. Cholangitis and cholangiectasia of the septal bile and hepatic ducts were observed. The best enzymatic systems for adult and larval D. dendriticum characterization were lactate dehydrogenase, glucose phosphate isomerase and phosphoglucomutase. Genetic variability of adult D. dendriticum was high using the random amplified polymorphic DNA technique.
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contributions to and review of dicrocoeliosis with special reference to the intermediate hosts of dicrocoelium dendriticum
Parasitology, 2001Co-Authors: M Y Mangagonzalez, C Gonzalezlanza, E Cabanas, Raquel Del CampoAbstract:An epidemiological study on dicrocoeliosis caused by Dicrocoelium dendriticum was carried out on sheep, molluscs and ants in the mountains of Leon province (NW Spain) between 1987–1991. The results concerning the intermediate hosts and a review of some aspects of dicrocoeliosis are summarized. Mollusc collection for the helminthological study was random throughout the study area at fortnightly intervals. Twenty-nine Gastropoda species were identified. D. dendriticum infection was only detected in 2·98% of the 2084 Helicella itala examined and in 1·06% of 852 H. corderoi . The highest infection prevalence was detected in H. itala in September and in H. corderoi in February. Daughter sporocysts with well-developed cercariae predominated in spring and autumn. Infection prevalence increased with mollusc age and size. Ants were collected from anthills or plants to which they were attached. The behaviour of ants in tetania was followed. Twenty-one Formicidae species were identified, but only the following harboured D. dendriticum : Formica cunicularia (1158 examined specimens, 0·69% infection prevalence, 2–56 metacercariae per ant); F. sanguinea (234, 1·28%, 2–63); F. nigricans (1770, 4·97%, 1–186); F. rufibarbis (288, 6·59%, 2–107). In a flat area close to Leon town, 95·39% of the 2085 F. rufibarbis specimens collected in tetania contained metacercariae (1–240) in the abdomen. These were used for parasite characterization by isoelectric focusing and to infect lambs and hamsters. Only one brainworm per ant was found.
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larval development of dicrocoelium dendriticum in cernuella xeromagna cespitum arigonis under controlled laboratory conditions
Journal of Helminthology, 1997Co-Authors: C Gonzalezlanza, M Y Mangagonzalez, Raquel Del Campo, M P DelpozoAbstract:: The larval development of Dicrocoelium dendriticum (Digenea: Dicrocoeliidae) in experimentally infected Cernuella (Xeromagna) cespitum arigonis (Schmidt, 1853), a species of mollusc important in the epidemiology of dicrocoeliosis in Spain, has been studied. A total of 948 specimens of this mollusc, distributed in five batches, were tested with individual doses of 50 to 150 parasite eggs, obtained from sheep, after 4 days without food. After infection these molluscs and control specimens were kept in an environmental simulation chamber at 20 degrees C, 50% relative humidity and 7 h of light per day. To detect the parasite, a minimum of six molluscs were examined every 20 days from day 1 post-infection (p.i.). The eggs of D. dendriticum were eliminated in the molluscan faeces 48 h post infection. The percentages of molluscs harbouring the parasite ranged between 17.53% and 75%. Daughter sporocysts with undifferentiated germinal masses and occupying very reduced areas of the hepatopancreas were observed 50 days p.i. and in the period immediately following. After 110 days p.i. sporocysts with cercariae at different stages of development were found although slimeball emission was never observed.
Peter D Olson - One of the best experts on this subject based on the ideXlab platform.
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morphological and molecular differentiation between dicrocoelium dendriticum rudolphi 1819 and dicrocoelium chinensis sudarikov and ryjikov 1951 tang and tang 1978 platyhelminthes digenea
Acta Tropica, 2007Co-Authors: Domenico Otranto, Steffen Rehbein, Stefania Weigl, Cinzia Cantacessi, Antonio Parisi, Peter D OlsonAbstract:Abstract Dicrocoelium dendriticum ( Rudolphi, 1819 ) and Dicrocoelium hospes ( Looss, 1907 ) are recognised to affect the liver of domestic and wild ruminants. A third species, Dicrocoelium orientalis which was described from musk deer in the Baikal region of the former Soviet Union and re-named to Dicrocoelium chinensis (Sudarikov and Ryjikov, 1951) Tang and Tang, 1978 was isolated from other species of deer in Asian countries and from mouflon and roe deer in Europe. Scant information is available for D. chinensis , including the range of species that act as definitive and intermediate hosts. To provide morphological and molecular evidences differentiating D. chinensis versus D. dendriticum , 239 Dicrocoelium spp. specimens were collected from sheep, cattle and sika deer from different localities in Austria, Germany and Italy. Specimens were morphologically identified based on the testes orientation, overall size, and level of maximum body width and other morphometric measurements. From this sample, 10 specimens of D. chinensis and 25 of D. dendriticum from different hosts and geographical localities were characterized molecularly through sequencing of partial 18S rDNA (∼1400 bp) and ITS-2 (including the 5.8S and 28S flanking regions; ∼600 bp). Interspecific differences between D. dendriticum and D. chinensis of 0.14% and 3.8% were recorded in 18S rRNA and ITS-2 sequences, respectively. Phylogenetic analyses via Bayesian inference were conducted using sequences of ITS-2 (276 bp) and partial 28S (221 bp) of the above species of Dicrocoelium together with 20 species belonging to the Xiphidiata within the Plagiorchiida available in GenBank. Both gene regions were strongly concordant in differentiating the Dicrocoeliidae, Gorgoderidae and Plagiorchiidae and were in agreement with their current classification. Morphological and molecular characterization clearly differentiate D. dendriticum and D. chinensis as two distinct digeneans infecting ruminants. The implications on the separate status of D . chinensis on the etiology, biology and diagnosis of dicrocoeliosis are discussed.