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1.
Primates ; 62(4): 571-584, 2021 Jul.
Article in English | MEDLINE | ID: mdl-34061281

ABSTRACT

Human-primate interfaces are expanding and, despite recent studies on primates from peri-urban environments, little research exists on the impact of agriculture and/or pasture areas on primate social behavior and health. We assessed how crop/pasture areas potentially alter social behavior and health of wild geladas (Theropithecus gelada) frequenting the unprotected area of Kundi (Ethiopia). We predicted that compared to pasture areas, crop areas (i) would be more challenging for geladas (prediction 1) and (ii) would have a greater impact on both aggressive and affiliative behavior, by reducing grooming time and enhancing competition (prediction 2). During January-May 2019 and December 2019-February 2020, we collected data (via scan, focal animal sampling, and video analyses) on direct human disturbance, external signs of pathologies and social behavior of 140 individuals from 14 one-male units and two all-male units. Animals experienced the highest level of human disturbance in crop areas (in line with prediction 1). Individuals from the groups preferentially frequenting crop areas showed the highest prevalence of external signs of pathologies consistent with chemical and biological contamination (alopecia/abnormally swollen parts). We collected 48 fecal samples. Samples from frequent crop users contained the highest rates of parasitic elements/gram (egg/larva/oocyst/cyst) from Entamoeba histolytica/dispar, a parasite common in human settlements of the Amhara region. In crop areas, subjects spent less time grooming but engaged in lower rates of intense aggression (in partial agreement with prediction 2). We speculate that the reduction in social behavior may be a tactic adopted by geladas to minimize the likelihood of detection and maximize food intake while foraging in crops.


Subject(s)
Aggression , Human-Animal Interaction , Theropithecus/physiology , Animals , Crops, Agricultural , Ethiopia , Feces/chemistry , Feces/parasitology , Female , Grooming , Male , Social Behavior
2.
Parasit Vectors ; 13(1): 457, 2020 Sep 09.
Article in English | MEDLINE | ID: mdl-32907633

ABSTRACT

BACKGROUND: The worldwide increased difficulty to combat gastrointestinal nematode (GIN) infection in sheep, due to progressing anthelmintic resistance (AR), calls for an enhanced and standardized implementation of early detection of AR. This study provides a snapshot of the current AR status against benzimidazoles and macrocyclic lactones in southern Italy, generated with standardized techniques. METHODS: On 10 sheep farms, the efficacy of albendazole (ALB) and either eprinomectin (EPR) or ivermectin (IVM) was evaluated based on the faecal egg count reduction test (FECRT) performed with the Mini-FLOTAC. For each tested drug, 40 sheep were rectally sampled at D0 and sampled again 14 days after the treatment (D14). The FECRT was calculated from individual samples and pooled samples which consist of 5 individual samples. Efficacy was classified as 'reduced, 'suspected' and 'normal'. Coprocultures were set for D0 and D14 faecal samples of each group. From farms with FECR < 95%, an in vitro egg hatch test (EHT) and a follow-up FECRT using fenbendazole (FBZ) were conducted. RESULTS: Based on the FECR, high efficacy (from 95.7% to 100%) was observed for ALB and IVM in eight farms (Farms 3-10). On Farm 1 and Farm 2, the efficacy for the macrocyclic lactones was classified as 'normal', but 'reduced' efficacy was observed for ALB on Farm 1 (FECR = 75%) and 'suspected' efficacy on Farm 2 (FECR = 93.3%) with the predominant GIN genus Trichostrongylus followed by Haemonchus at D14. The FEC results of pooled samples strongly correlated with those of individual samples, for FEC at D0 (rs = 0.984; P < 0.0001) and at D14 (rs = 0.913; P < 0.0001). The classifications of efficacy in Farm 1 (FECR = 86.0%) and Farm 2 (FECR = 93.0%) in the follow-up FECRT with FBZ coincide with the main FECRT trial. The in vitro EHT confirmed AR in both farms (Farm 1: 89%; Farm 2: 74%). CONCLUSIONS: In regions like southern Italy, where the negative impacts from AR have played a minor role, efficient monitoring of AR is important in order to evaluate potential risks and being able to promptly respond with countermeasures.


Subject(s)
Anthelmintics/therapeutic use , Drug Resistance , Nematoda/isolation & purification , Nematode Infections/veterinary , Sheep/parasitology , Animals , Benzimidazoles/therapeutic use , Farms , Feces/parasitology , Fenbendazole/therapeutic use , Gastrointestinal Diseases/drug therapy , Gastrointestinal Diseases/parasitology , Gastrointestinal Diseases/veterinary , Haemonchus/drug effects , Haemonchus/isolation & purification , Italy , Ivermectin/analogs & derivatives , Ivermectin/therapeutic use , Nematoda/drug effects , Nematode Infections/drug therapy , Parasite Egg Count/methods , Sheep Diseases/drug therapy , Sheep Diseases/parasitology , Trichostrongylus/drug effects , Trichostrongylus/isolation & purification
3.
Acta Parasitol ; 65(2): 546-549, 2020 Jun.
Article in English | MEDLINE | ID: mdl-31970621

ABSTRACT

PURPOSE: Canine and feline cardiopulmonary disease is an emergent condition in several European countries, particularly in non-endemic regions, although it is often underestimated because of the limitations of the common diagnostic techniques. The aim of this study was to evaluate the performance of Mini-FLOTAC to detect cardiopulmonary larvae from dogs and cats compared to reference techniques such as Baermann and FLOTAC. METHODS: A total of 20 fresh faecal samples were collected from ten dogs and ten cats naturally infected with Angiostrongylus vasorum, and Aelurostrongylus abstrusus and Troglostrongylus spp., respectively. Three replicates were performed for each technique. FS3 (zinc sulfate, specific gravity = 1.200) was used as flotation solution for Mini-FLOTAC and FLOTAC. The results were expressed as the arithmetic mean of LPG (larvae per gram of faeces). RESULTS: The mean LPG calculated by means of Mini-FLOTAC was significantly higher (P < 0.05) than that obtained through the Baermann technique for A. vasorum, A. abstrusus and Troglostrongylus spp., whereas it was significantly higher (P < 0.05) than that obtained through the FLOTAC technique only for A. vasorum and A. abstrusus. CONCLUSIONS: Mini-FLOTAC can be considered a valid alternative for the detection of metastrongyloid larvae of dogs and cats, overcoming the limitation of time required by the Baermann test.


Subject(s)
Cat Diseases/parasitology , Dog Diseases/parasitology , Metastrongyloidea/isolation & purification , Pulmonary Heart Disease/veterinary , Strongylida Infections/veterinary , Angiostrongylus/isolation & purification , Animals , Cat Diseases/diagnosis , Cats , Diagnosis, Differential , Dog Diseases/diagnosis , Dogs , Feces/parasitology , Larva , Pulmonary Heart Disease/diagnosis , Pulmonary Heart Disease/parasitology , Strongylida Infections/diagnosis , Strongylida Infections/parasitology
4.
BMC Vet Res ; 15(1): 370, 2019 Oct 25.
Article in English | MEDLINE | ID: mdl-31653209

ABSTRACT

BACKGROUND: Caretta caretta is the most abundant sea turtle species in the Mediterranean, and studies on this species have vastly expanded during recent years, including those investigating gut bacterial and parasitic communities. Members of these communities have been reported with variable prevalence and pathogenicity, mainly depending on their host and environment (e.g. lifespan, distribution, habitat, diet, health status and stressors). Indeed, many species commonly inhabiting the sea turtle gastrointestinal tract exhibit an opportunistic behaviour. This study aimed to provide baseline data on enterobacterial and parasitic composition, through bacteriological culture-based methods and the FLOTAC parasitological technique, in cloacal and faecal samples of 30 live Caretta caretta, examined upon their arrival at the Marine Turtle Research Centre (Portici, Italy). RESULTS: Enterobacteriaceae were isolated in 18/23 cloacal samples (78.3%), with Citrobacter and Morganella as the most common genera, followed by Proteus, Enterobacter, Providencia, and Hafnia. Parasitic elements were detected in 11/30 faecal samples (36.7%), with Enodiotrema, Rhytidodes, and Eimeria as most common genera, followed by Pachypsolus and Cymatocarpus. Additionally, Angiodyctium is reported for the first time in this host. The majority (47.8%) of sea turtles hosted exclusively Enterobacteriaceae, whereas 30.4% hosted both parasites and Enterobacteriaceae; the remaining 21.8% hosted neither of the agents. CONCLUSIONS: Bacteria and parasites evaluated in the present study are common in Mediterranean loggerhead sea turtles, with slight differences between the western and eastern basin. Although naturally present in the gastrointestinal system of free-living sea turtles, their relationship with these hosts might range from mutualism to parasitism. Indeed, members of the gut community might express their pathogenic potential in immune-compromised animals, such as those in rehabilitation facilities. Therefore, it is advisable to include in the standard work-up of rescued sea turtles a screening procedure for such opportunistic agents, in order to better evaluate the animal's health status and achieve timely intervention with appropriate treatment, thus improving rehabilitation. Furthermore, data collected from free-living sea turtles represent a starting point for investigating wild populations. However, further studies are needed to clarify the differences between sea turtle's normal gut microbiome and pathobiome.


Subject(s)
Eimeria/isolation & purification , Enterobacteriaceae/isolation & purification , Trematoda/isolation & purification , Turtles/microbiology , Turtles/parasitology , Animals , Cloaca/microbiology , Feces/parasitology , Gastrointestinal Microbiome , Italy
5.
Parasit Vectors ; 12(1): 439, 2019 Sep 16.
Article in English | MEDLINE | ID: mdl-31522684

ABSTRACT

BACKGROUND: Schistosomiasis and food-borne trematodiases are not only of major public health concern, but can also have profound implications for livestock production and wildlife conservation. The zoonotic, multi-host nature of many digenean trematodes is a significant challenge for disease control programmes in endemic areas. However, our understanding of the epidemiological role that animal reservoirs, particularly wild hosts, may play in the transmission of zoonotic trematodiases suffers a dearth of information, with few, if any, standardised, reliable diagnostic tests available. We combined qualitative and quantitative data derived from post-mortem examinations, coprological analyses using the Mini-FLOTAC technique, and molecular tools to assess parasite community composition and the validity of non-invasive methods to detect trematode infections in 89 wild Hubert's multimammate mice (Mastomys huberti) from northern Senegal. RESULTS: Parasites isolated at post-mortem examination were identified as Plagiorchis sp., Anchitrema sp., Echinostoma caproni, Schistosoma mansoni, and a hybrid between Schistosoma haematobium and Schistosoma bovis. The reports of E. caproni and Anchitrema sp. represent the first molecularly confirmed identifications for these trematodes in definitive hosts of sub-Saharan Africa. Comparison of prevalence estimates derived from parasitological analysis at post-mortem examination and Mini-FLOTAC analysis showed non-significant differences indicating comparable results between the two techniques (P = 1.00 for S. mansoni; P = 0.85 for E. caproni; P = 0.83 for Plagiorchis sp.). A Bayesian model, applied to estimate the sensitivities of the two tests for the diagnosis of Schistosoma infections, indicated similar median posterior probabilities of 83.1% for Mini-FLOTAC technique and 82.9% for post-mortem examination (95% Bayesian credible intervals of 64.0-94.6% and 63.7-94.7%, respectively). CONCLUSIONS: Our results showed that the Mini-FLOTAC could be applied as an alternative diagnostic technique for the detection of the zoonotic S. mansoni and other trematodes in rodent reservoirs. The implementation of non-invasive diagnostics in wildlife would offer numerous advantages over lethal sampling methodologies, with potential impact on control strategies of zoonotic helminthiases in endemic areas of sub-Saharan Africa and on fostering a framework of animal use reduction in scientific practice.


Subject(s)
Diagnostic Tests, Routine/methods , Murinae , Parasitology/methods , Rodent Diseases/diagnosis , Trematoda/classification , Trematoda/isolation & purification , Trematode Infections/veterinary , Animals , Prevalence , Rodent Diseases/parasitology , Senegal , Sensitivity and Specificity , Trematode Infections/diagnosis
6.
Parasit Vectors ; 12(1): 158, 2019 Apr 08.
Article in English | MEDLINE | ID: mdl-30961639

ABSTRACT

BACKGROUND: Giardia spp. is a protozoan pathogen and is the most common enteric parasite of domestic animals and humans. Assays for detecting infection in fecal samples using direct or indirect examinations are important tools for diagnosing the disease. The objective of the present study was to compare the cost-effectiveness of immunoassays and FLOTAC technique for diagnosing Giardia spp. infection in dogs. RESULTS: Fecal samples from 80 positive stray dogs were tested for the presence of copro-antigens of Giardia spp. using the direct immunofluorescence assay (IFA), a rapid enzyme-linked immunosorbent assay (ELISA) and the FLOTAC double technique. All methods were performed in accordance with the instructions reported in the original description for each technique. The results showed that ELISA can be run in less time than IFA and almost at the same time of the FLOTAC technique. Among the tests used in this study, FLOTAC had the lowest cost per correct diagnosis, compared with immunoassays. CONCLUSIONS: The results from this cost-effectiveness analysis, in combination with the sensitivity and specificity of the FLOTAC technique, suggest that the FLOTAC technique can be use in the routine diagnosis of Giardia spp. infection in dogs.


Subject(s)
Dog Diseases/diagnosis , Enzyme-Linked Immunosorbent Assay/veterinary , Fluorescent Antibody Technique, Direct/veterinary , Giardiasis/veterinary , Animals , Cost-Benefit Analysis , Dog Diseases/parasitology , Dogs , Enzyme-Linked Immunosorbent Assay/economics , Feces/parasitology , Fluorescent Antibody Technique, Direct/economics , Giardiasis/diagnosis , Sensitivity and Specificity , Zinc Sulfate
7.
Rev. bras. parasitol. vet ; 28(1): 168-171, Jan.-Mar. 2019. tab
Article in English | LILACS | ID: biblio-1042496

ABSTRACT

Abstract Animals reared in restricted environments are highly susceptible to gastrointestinal infection by helminths and protozoa and therefore zoos are characterized as being parasite-rich environments. Successful implementation of control programs of these parasites in zoo environment depends upon precise and rapid diagnosing of gastrointestinal infections. The aim of this study was to demonstrate the role of the Mini-FLOTAC technique in combination with Fill-FLOTAC for rapidly diagnosing parasitic infections in zoo mammals. Fecal samples were collected from 70 animals in four different zoos located in central and southern Italy. All the samples were analyzed using Mini-FLOTAC in combination with Fill-FLOTAC. Out of the 70 pooled samples examined, 80% (24/30) were positive for at least one parasite. Among the gastrointestinal nematodes, Strongyles were the most frequent (40%), followed by Trichuris spp. (23.3%), Parascaris spp. (13.3%) and Capillaria spp. (3.3%). Among the protozoa, Blastocystis spp., Giardia spp. and Eimeria spp. were detected in 6.6%, 3.3% and 3.3%, respectively. These results show that Mini-FLOTAC in combination with Fill-FLOTAC can be used, not only for rapidly diagnosing parasitic infections in zoo mammals, but also for monitoring control programs in which large numbers of fecal samples need to be examined rapidly and reliably.


Resumo Animais criados em ambiente restritos são altamente suscetíveis a infecção gastrointestinal por helmintos e protozoários, constituindo os zoológicos em ambientes com alta contaminação por parasitos. O sucesso da implementação de programas de controle contra estes parasitos em zoológicos depende do rápido diagnóstico das infecções por parasitas gastrointestinais. O objetivo deste estudo foi demonstrar o papel da técnica do Mini-FLOTAC em combinação com o Fill-FLOTAC no diagnóstico rápido das infecções parasitárias em mamíferos em zoológicos. Amostras de fezes foram coletadas de 70 animais de quatro diferentes zoológicos no centro e sudoeste da Itália. Todas as amostras foram analisadas pela técnica do Mini-FLOTAC em combinação com o Fill-FLOTAC. Do total de 70 pools de fezes examinadas, 80% (24/30) foram positivas para pelo menos um parasito. Entre os nematoides gastrointestinais a maior frequência foi observada para estrongilídeos (40%), seguida por Trichuris spp. (23,3%), Parascaris spp. (13,3%) e Capillaria spp. (3,3%). Entre os protozoários Blastocystis spp., Giardia spp. e Eimeria spp. foram detectados em 6,6%, 3,3% e 3,3%, respectivamente. Estes resultados demonstram que a técnica do Mini-FLOTAC em combinação com o Fill-FLOTAC pode ser utilizada não somente para o diagnóstico rápido das infecções parasitárias em mamíferos em zoológicos, mas também no monitoramento de programas de controle onde grande número de amostras fecais devem ser examinadas de forma rápida e confiável.


Subject(s)
Animals , Parasitic Diseases, Animal/diagnosis , Protozoan Infections/diagnosis , Gastrointestinal Diseases/veterinary , Helminthiasis, Animal/diagnosis , Animals, Zoo/parasitology , Mammals/parasitology , Parasitic Diseases, Animal/parasitology , Protozoan Infections/parasitology , Reagent Kits, Diagnostic , Sensitivity and Specificity , Feces/parasitology , Gastrointestinal Diseases/diagnosis , Gastrointestinal Diseases/parasitology , Helminthiasis, Animal/parasitology
8.
Rev Bras Parasitol Vet ; 28(1): 168-171, 2019.
Article in English | MEDLINE | ID: mdl-30785552

ABSTRACT

Animals reared in restricted environments are highly susceptible to gastrointestinal infection by helminths and protozoa and therefore zoos are characterized as being parasite-rich environments. Successful implementation of control programs of these parasites in zoo environment depends upon precise and rapid diagnosing of gastrointestinal infections. The aim of this study was to demonstrate the role of the Mini-FLOTAC technique in combination with Fill-FLOTAC for rapidly diagnosing parasitic infections in zoo mammals. Fecal samples were collected from 70 animals in four different zoos located in central and southern Italy. All the samples were analyzed using Mini-FLOTAC in combination with Fill-FLOTAC. Out of the 70 pooled samples examined, 80% (24/30) were positive for at least one parasite. Among the gastrointestinal nematodes, Strongyles were the most frequent (40%), followed by Trichuris spp. (23.3%), Parascaris spp. (13.3%) and Capillaria spp. (3.3%). Among the protozoa, Blastocystis spp., Giardia spp. and Eimeria spp. were detected in 6.6%, 3.3% and 3.3%, respectively. These results show that Mini-FLOTAC in combination with Fill-FLOTAC can be used, not only for rapidly diagnosing parasitic infections in zoo mammals, but also for monitoring control programs in which large numbers of fecal samples need to be examined rapidly and reliably.


Subject(s)
Animals, Zoo/parasitology , Gastrointestinal Diseases/veterinary , Helminthiasis, Animal/diagnosis , Mammals/parasitology , Parasitic Diseases, Animal/diagnosis , Protozoan Infections/diagnosis , Animals , Feces/parasitology , Gastrointestinal Diseases/diagnosis , Gastrointestinal Diseases/parasitology , Helminthiasis, Animal/parasitology , Parasitic Diseases, Animal/parasitology , Protozoan Infections/parasitology , Reagent Kits, Diagnostic , Sensitivity and Specificity
9.
Parasitol Res ; 117(8): 2607-2612, 2018 Aug.
Article in English | MEDLINE | ID: mdl-29858944

ABSTRACT

The aim of this study was to develop and validate an innovative protocol for the diagnosis of Echinococcus granulosus and other Taeniidae in dogs. For this purpose, three experiments were performed, using faecal samples from naturally infected dogs. Firstly, the FLOTAC technique was calibrated with five flotation solutions: saturated sodium chloride (specific gravity, s.g. = 1.20), zinc sulphate (s.g. = 1.35), zinc chloride (s.g. = 1.45), Breza (s.g. = 1.30) and modified Breza (s.g. = 1.40). Then, FLOTAC was compared with four techniques of flotation in centrifuge using: zinc sulphate (s.g. = 1.20), Breza (s.g. = 1.30), modified Breza (s.g. = 1.40), and zinc chloride (s.g. = 1.45). Finally, four different protocols of DNA extraction were compared for Taeniidae identification: QIAamp Tissue Kit and QIAamp Stool from eggs; QIAamp Stool and Wizard Magnetic Purification System for Food from faeces. FLOTAC with zinc sulphate was the most efficient method to detect Taeniidae eggs, showing highest mean of eggs per gram (EPG) of faeces. The QIAamp Stool, using eggs concentrated by FLOTAC, was the best method for DNA extraction. The combination of these protocols provided the highest number of positive samples with PCR, i.e., 47/50 (94.0%). The three negative samples showed a low faecal egg count (2 EPG) below the detection limit (4 EPG) of the protocol. From sequencing of the 47 positive samples: 6 samples were identified as E. granulosus sensu stricto (s.s.), 28 as Taenia hydatigena and 6 as T. pisiformis. A co-infection between different genera of Taeniidae was found in 7 samples.


Subject(s)
Dog Diseases/diagnosis , Echinococcosis/veterinary , Echinococcus granulosus/isolation & purification , Animals , Coinfection , Dog Diseases/parasitology , Dogs , Echinococcosis/diagnosis , Echinococcosis/parasitology , Echinococcus granulosus/genetics , Feces/parasitology , Parasite Egg Count/veterinary , Polymerase Chain Reaction/veterinary , Reagent Kits, Diagnostic , Taenia/genetics , Taenia/isolation & purification
10.
BMC Vet Res ; 14(1): 7, 2018 Jan 05.
Article in English | MEDLINE | ID: mdl-29304858

ABSTRACT

BACKGROUND: Nematode infections in horses are widespread across the world. Increasing levels of anthelmintic resistance, reported worldwide in equine parasites, have led to the creation of programs for the control of nematodes based on faecal egg counts (FEC). To improve nematode egg counting in equine faecal samples and establish whether the matrix of equine faeces or the eggs affect the counts, the analytical sensitivity, accuracy and precision of Mini-FLOTAC (combined with Fill-FLOTAC), McMaster and Cornell-Wisconsin techniques were compared. Known numbers of eggs extracted from equine or ovine faeces were added to egg free ovine and equine faeces to give counts of 10, 50, 200 and 500 eggs per gram (EPG) of faeces. RESULTS: The Cornell-Wisconsin significantly underestimated egg counts and McMaster showed a low analytical sensitivity, revealing 100% of sensitivity only for concentrations greater than 200 EPG. EPG values detected by Mini-FLOTAC did not differ significantly from expected counts at any level of egg density. CONCLUSIONS: Mini-FLOTAC combined to Fill-FLOTAC which provides an accurate method of weighing without need for a balance and filtering out debris, could be used for FEC on the farm as well as in the laboratory.


Subject(s)
Feces/parasitology , Horse Diseases/parasitology , Nematode Infections/veterinary , Parasite Egg Count/veterinary , Sheep Diseases/parasitology , Animals , Horse Diseases/diagnosis , Horses , Nematoda , Nematode Infections/diagnosis , Parasite Egg Count/methods , Reproducibility of Results , Sheep , Sheep Diseases/diagnosis , Specimen Handling/methods , Specimen Handling/veterinary
11.
Acta Trop ; 164: 107-116, 2016 Dec.
Article in English | MEDLINE | ID: mdl-27591137

ABSTRACT

Accurate diagnostic tools for human helminthiasis are crucial for epidemiological surveys, improved patient management, and evaluation of community-based intervention studies. However, the diagnosis of intestinal schistosomiasis and soil-transmitted helminthiasis heavily relies on stool microscopy using the Kato-Katz technique, which has a low sensitivity. The Mini-FLOTAC method is an alternative microscopy-based technique, but its diagnostic performance using sodium acetate-acetic acid-formalin-(SAF)-fixed stool specimens has not been validated. The fixation of stool samples for later examination in a laboratory may reduce logistical and financial barriers of prevalence surveys by not requiring field laboratories. We compared the diagnostic accuracy of the Kato-Katz technique using fresh stool samples with the Mini-FLOTAC technique, employing matched stool samples that were fixed in SAF. Three consecutive stool samples from 149 school-aged children in Côte d'Ivoire were subjected to quintuplicate Kato-Katz thick smears examined on the same day. From the remaining stool, approximately 2g was fixed in 10ml of SAF for about 3 months, and then subjected to the Mini-FLOTAC method, using two flotation solutions (FS2 and FS7). The combined results of multiple Kato-Katz and Mini-FLOTAC readings revealed prevalences of Schistosoma mansoni, Trichuris trichiura and hookworm of 99.3%, 72.5% and 7.4%, respectively. Employing a Bayesian latent class analysis to estimate the true sensitivity of the diagnostic approaches, the sensitivity of Mini-FLOTAC using FS2 was 50.1% (95% Bayesian credible interval (BCI): 30.9-70.2%) for hookworm and 68.0% (95% BCI: 34.9-93.5%) for T. trichiura. When applying Mini-FLOTAC using FS7, the sensitivity was 89.9% (95% BCI: 86.9-97.4%) for S. mansoni, 37.2% (95% BCI: 17.2-60.6%) for hookworm and 67.7% (95% BCI: 33.0-93.0%) for T. trichiura. The specificity ranged from 80.1-95.0% in all Mini-FLOTAC tests. Mini-FLOTAC revealed higher arithmetic mean faecal egg counts (FECs) than the Kato-Katz technique. We found a significant correlation in FECs between Kato-Katz and Mini-FLOTAC for S. mansoni and T. trichiura. We conclude that Mini-FLOTAC shows reasonable diagnostic accuracy when using stool samples fixed in SAF for 3 months, and may be an alternative to multiple Kato-Katz thick smears.


Subject(s)
Feces/parasitology , Schistosoma mansoni/isolation & purification , Schistosomiasis mansoni/epidemiology , Adolescent , Animals , Bayes Theorem , Child , Child Health Services , Child, Preschool , Cote d'Ivoire/epidemiology , Female , Humans , Male , Prevalence , Schistosomiasis mansoni/parasitology , Schools , Sensitivity and Specificity , Soil/parasitology
12.
Vet Parasitol ; 225: 53-60, 2016 Jul 30.
Article in English | MEDLINE | ID: mdl-27369575

ABSTRACT

In small ruminants, faecal egg counts (FECs) and reduction in FECs (FECR) are the most common methods for the assessment of intensity of gastrointestinal (GI) nematodes infections and anthelmintic drug efficacy, respectively. The main limitation of these methods is the time and cost to conduct FECs on a representative number of individual animals. A cost-saving alternative would be to examine pooled faecal samples, however little is known regarding whether pooling can give representative results. In the present study, we compared the FECR results obtained by both an individual and a pooled examination strategy across different pool sizes and analytical sensitivity of the FEC techniques. A survey was conducted on 5 sheep farms in Scotland, where anthelmintic resistance is known to be widespread. Lambs were treated with fenbendazole (4 groups), levamisole (3 groups), ivermectin (3 groups) or moxidectin (1 group). For each group, individual faecal samples were collected from 20 animals, at baseline (D0) and 14 days after (D14) anthelmintic administration. Faecal samples were analyzed as pools of 3-5, 6-10, and 14-20 individual samples. Both individual and pooled samples were screened for GI strongyle and Nematodirus eggs using two FEC techniques with three different levels of analytical sensitivity, including Mini-FLOTAC (analytical sensitivity of 10 eggs per gram of faeces (EPG)) and McMaster (analytical sensitivity of 15 or 50 EPG).For both Mini-FLOTAC and McMaster (analytical sensitivity of 15 EPG), there was a perfect agreement in classifying the efficacy of the anthelmintic as 'normal', 'doubtful' or 'reduced' regardless of pool size. When using the McMaster method (analytical sensitivity of 50 EPG) anthelmintic efficacy was often falsely classified as 'normal' or assessment was not possible due to zero FECs at D0, and this became more pronounced when the pool size increased. In conclusion, pooling ovine faecal samples holds promise as a cost-saving and efficient strategy for assessing GI nematode FECR. However, for the assessment FECR one will need to consider the baseline FEC, pool size and analytical sensitivity of the method.


Subject(s)
Anthelmintics/pharmacology , Feces/parasitology , Gastrointestinal Diseases/veterinary , Nematoda/drug effects , Parasitology/methods , Sheep Diseases , Strongylida Infections/veterinary , Animals , Anthelmintics/therapeutic use , Gastrointestinal Diseases/drug therapy , Gastrointestinal Diseases/parasitology , Nematodirus/drug effects , Parasite Egg Count , Sheep , Sheep Diseases/drug therapy , Sheep Diseases/parasitology , Strongylida Infections/diagnosis , Strongylida Infections/drug therapy
13.
PLoS Negl Trop Dis ; 9(4): e0003698, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25848772

ABSTRACT

BACKGROUND: Kato-Katz is a widely used method for the diagnosis of soil-transmitted helminth infection. Fecal samples cannot be preserved, and hence, should be processed on the day of collection and examined under a microscope within 60 min of slide preparation. Mini-FLOTAC is a technique that allows examining fixed fecal samples. We assessed the performance of Mini-FLOTAC using formalin-fixed stool samples compared to Kato-Katz and determined the dynamics of prevalence and intensity estimates of soil-transmitted helminth infection over a 31-day time period. METHODOLOGY: The study was carried out in late 2013 on Pemba Island, Tanzania. Forty-one children were enrolled and stool samples were subjected on the day of collection to a single Kato-Katz thick smear and Mini-FLOTAC examination; 12 aliquots of stool were fixed in 5% formalin and subsequently examined by Mini-FLOTAC up to 31 days after collection. PRINCIPAL FINDINGS: The combined results from Kato-Katz and Mini-FLOTAC revealed that 100% of children were positive for Trichuris trichiura, 85% for Ascaris lumbricoides, and 54% for hookworm. Kato-Katz and Mini-FLOTAC techniques found similar prevalence estimates for A. lumbricoides (85% versus 76%), T. trichiura (98% versus 100%), and hookworm (42% versus 51%). The mean eggs per gram of stool (EPG) according to Kato-Katz and Mini-FLOTAC was 12,075 and 11,679 for A. lumbricoides, 1,074 and 1,592 for T. trichiura, and 255 and 220 for hookworm, respectively. The mean EPG from day 1 to 31 of fixation was stable for A. lumbricoides and T. trichiura, but gradually declined for hookworm, starting at day 15. CONCLUSIONS/SIGNIFICANCE: The findings of our study suggest that for a qualitative diagnosis of soil-transmitted helminth infection, stool samples can be fixed in 5% formalin for at least 30 days. However, for an accurate quantitative diagnosis of hookworm, we suggest a limit of 15 days of preservation. Our results have direct implication for integrating soil-transmitted helminthiasis into transmission assessment surveys for lymphatic filariasis.


Subject(s)
Feces/parasitology , Helminthiasis/diagnosis , Helminthiasis/epidemiology , Soil/parasitology , Specimen Handling/methods , Ancylostomatoidea/isolation & purification , Animals , Ascaris lumbricoides/isolation & purification , Child , Female , Formaldehyde , Humans , Indian Ocean Islands/epidemiology , Male , Microscopy , Prevalence , Sensitivity and Specificity , Tanzania/epidemiology , Time Factors , Trichuris/isolation & purification
14.
Parasitol Res ; 114(3): 1213-6, 2015 Mar.
Article in English | MEDLINE | ID: mdl-25620280

ABSTRACT

Little information is available on the occurrence of endoparasites in pet guinea pigs (Cavia porcellus). The purpose of this study was to evaluate the prevalence of intestinal parasites in cavies kept as pets in southern Italy. Fresh fecal samples were randomly collected from 60 guinea pigs housed in pet shops or privately owned. All fecal samples were processed using the FLOTAC pellet technique to identify and count helminthic eggs/larvae and protozoan cysts/oocysts. In addition, the specimens were analyzed also by the Remel Xpect® Giardia/Cryptosporidium immunoassay. Intestinal parasites were detected in 19 out of 60 guinea pigs (31.7 %). Paraspidodera uncinata eggs were found in 13.3 % (8/60) of the rodents examined, Nippostrongylus-like eggs in 10 % (6/60), and finally Eimeria caviae oocysts were found in 10 % (6/60) of the animals. In one case, both E. caviae oocysts and P. uncinata eggs were found. None of the samples was positive for Cryptosporidium or Giardia. To the authors' knowledge, this is the first survey of endoparasites in pet guinea pigs in Italy.


Subject(s)
Guinea Pigs , Parasitic Diseases, Animal/parasitology , Animals , Feces/parasitology , Immunoassay , Italy/epidemiology , Male , Oocysts , Parasitic Diseases, Animal/epidemiology , Pets , Prevalence , Species Specificity
15.
Vet Parasitol ; 207(3-4): 342-5, 2015 Jan 30.
Article in English | MEDLINE | ID: mdl-25579397

ABSTRACT

Faecal egg counts (FECs) are used for detecting and quantifying nematode infections and are the basis for determining drug efficacy and anthelmintic resistance in faecal egg count reduction tests (FECRTs). Currently, several FEC techniques are available for detecting and quantifying eggs of sheep nematodes. A comparison of the egg counts from the FECPAK (with a minimum detection limit of 30 eggs per gram (epg)) and Mini-FLOTAC (with a minimum detection limit of 5 epg) showed better diagnostic performance with Mini-FLOTAC in terms of measurement error (level of over- or under-estimation of FEC) and precision (variability in FEC). A tendency to under-estimate FEC was observed with the FECPAK particularly at egg densities of less than 500 epg. It is concluded that Mini-FLOTAC is a reliable diagnostic tool offering reduced measurement error and a higher level of precision.


Subject(s)
Nematode Infections/veterinary , Sheep Diseases/diagnosis , Animals , Feces/parasitology , Female , Italy , Limit of Detection , Nematoda/physiology , Nematode Infections/diagnosis , Parasite Egg Count/veterinary , Reproducibility of Results , Sheep
16.
Vet Parasitol ; 205(1-2): 216-23, 2014 Sep 15.
Article in English | MEDLINE | ID: mdl-25002307

ABSTRACT

A field study was conducted to validate pooled faecal samples in sheep for the assessment of gastrointestinal (GI) strongyle infection intensity (faecal egg count - FEC) and anthelmintic drug efficacy (FEC reduction - FECR). Ten sheep farms located in the Campania region of southern Italy were selected for the study. In each farm, individual faecal samples from 20 adult sheep (when possible) were collected, before (D0) and after (D14) an anthelmintic treatment with albendazole. For each farm and at each time point (D0 and D14) the faecal samples were examined individually and as pools. Specifically, three different pool sizes (5, 10 and 20 individual sheep samples) and three different analytic sensitivities (namely 10 using Mini-FLOTAC; 15 and 50 using the two variants of McMaster - McM15 and McM50) were compared for FEC and FECR using individual and pooled faecal samples. GI strongyle intensity (eggs per gram of faeces - EPG) of pooled samples correlated positively with mean EPG of individual samples, with very high correlation coefficients (ranging from 0.94 to 0.99) across the 3 different pool sizes and analytic sensitivities. Mini-FLOTAC was more sensitive compared to the two variants of McMaster (McM15 and McM50) for the diagnosis of GI strongyles in sheep (100% vs 88.5% vs 75.9%) and resulted in significant higher FEC compared to both McM15 and McM50, with a mean difference in egg counts of approximately 90 EPG (p<0.001). The drug efficacy results showed that FECR was higher than 98% at most farms independently of the pool size and analytic sensitivity. With the exception of two farms, FECR was 100% when calculated for individual animals and across the different pool size and analytic sensitivities. In conclusion, the present study highlighted that pooling ovine faecal samples is a rapid procedure that holds promise as a valid strategy for assessing GI strongyles FEC and FECR in sheep.


Subject(s)
Anthelmintics/therapeutic use , Feces/parasitology , Gastrointestinal Diseases/veterinary , Sheep Diseases/parasitology , Specimen Handling/veterinary , Strongylida Infections/veterinary , Animals , Gastrointestinal Diseases/diagnosis , Gastrointestinal Diseases/parasitology , Parasite Egg Count/veterinary , Sensitivity and Specificity , Sheep , Sheep Diseases/diagnosis , Sheep Diseases/drug therapy , Specimen Handling/methods , Strongylida Infections/diagnosis , Strongylida Infections/parasitology
17.
Acta Parasitol ; 59(2): 343-53, 2014 Jun.
Article in English | MEDLINE | ID: mdl-24827109

ABSTRACT

The aim of this study was to estimate the occurrence of intestinal parasites in groups of mammals kept in the Warsaw zoological garden (Poland). 71 pools of fecal samples were analyzed using the FLOTAC techniques. 48% of animals were positive and 47% of positivities showed multiple infections. Toxocara cati (71.4%) was found in felines; marsupials were infected with Coccidia (90%). Giardia spp. (24.0%), Blastocystis spp. (12.3%), Iodamoeba spp. (10.0%), Enterobius vermicularis (6.0%) and Entamoeba coli (3.3%) were found in primates. Gastrointestinal strongyles (60.5%) were prevalent in ruminants which resulted positive also to Coccidia (Eimeria spp. = 50.0%), Trichuris spp. (25.0%) and Nematodirus (14.0%). Strongyles (34.0%) were the most frequent parasites in monogastric herbivores, followed by Parascaris equorum (17.0%). None of the animals showed any symptom associated with gastrointestinal parasitic infections. According to our results the need to prevent, diagnose, control, and treat intestinal parasitism trough specific control programs is mandatory for animal welfare in order to limit the spread of parasitic infections in animals and humans.


Subject(s)
Animals, Zoo/parasitology , Intestinal Diseases, Parasitic/veterinary , Parasites/isolation & purification , Parasitic Diseases, Animal/diagnosis , Parasitic Diseases, Animal/parasitology , Parasitology/methods , Veterinary Medicine/methods , Animals , Intestinal Diseases, Parasitic/diagnosis , Intestinal Diseases, Parasitic/epidemiology , Intestinal Diseases, Parasitic/parasitology , Parasites/classification , Parasitic Diseases, Animal/epidemiology , Poland/epidemiology , Prevalence
18.
Acta Trop ; 137: 140-6, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24865791

ABSTRACT

BACKGROUND: Helminths and protozoa infections pose a great burden especially in developing countries, due to morbidity caused by both acute and chronic infection. The aim of our survey was to analyze the intestinal parasitic burden in communities from Mwanza region, Tanzania. METHODS: Subjects (n=251) from four villages on the South of Lake Victoria have been analyzed for intestinal parasites with direct smear (DS), formol-ether concentration method (FECM) and the newly developed Mini-FLOTAC technique; urinary schistosomiasis was also assessed in a subsample (n=151); symptoms were registered and correlation between clinic and infections was calculated by chi-squared test and logistical regression. RESULTS: Out of the subjects screened for intestinal and for urinary parasites, 87% (218/251) were found positive for any infection, 69% (174/251) carried a helminthic and 67% (167/251) a protozoan infection, almost half of them had a double or triple infection. The most common helminths were hookworms, followed by Schistosoma mansoni and Schistosoma haematobium. Among protozoa, the most common was Entamoeba coli followed by Entamoeba histolytica/dispar and Giardia intestinalis. Mini-FLOTAC detected a number of helminth infections (61.7%) higher than FECM (38.6%) and DS (17.9%). Some positive associations with abdominal symptoms were found and previous treatment was negatively correlated with infection. CONCLUSION: Despite the limited size of the examined population the current study indicates a high prevalence of intestinal parasitic infection in Bukumbi area, Tanzania, and Mini-FLOTAC showed to be a promising diagnostic tool for helminth infections. This high parasitic burden calls for starting a regular deworming programme and other preventive interventions in schools and in the community.


Subject(s)
Intestinal Diseases, Parasitic/epidemiology , Parasites/isolation & purification , Parasitology/methods , Schistosomiasis haematobia/epidemiology , Adolescent , Adult , Africa, Eastern , Animals , Child , Child, Preschool , Cross-Sectional Studies , Female , Humans , Intestinal Diseases, Parasitic/diagnosis , Lakes , Male , Middle Aged , Parasites/classification , Prevalence , Schistosomiasis haematobia/diagnosis , Young Adult
19.
Acta Trop ; 130: 11-6, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24145157

ABSTRACT

BACKGROUND: Helminths and protozoa infections pose a great burden especially in developing, countries, due to morbidity caused both by acute and chronic infections. Data on distribution of intestinal parasitic infections among the native and expatriates populations in Himachal Pradesh are scarce. The aim of our survey was to analyze the intestinal parasitic burden in communities from Dharamsala, Kangra district, in clinical and public health settings. We also field-tested the mini- FLOTAC, an innovative diagnostic device. METHODS: Subjects referring to the Tibetan Delek Hospital for abdominal discomfort and all children of the Tibetan Primary School in Dharamsala were screened for intestinal parasitic infections with direct smear, formol-ether concentration (FEC) method and mini-FLOTAC, their clinical history was recorded, and correlations between clinical symptoms and infections analyzed. RESULTS: 152 subjects were screened for intestinal parasites, of which 72 subjects in the outpatients department (OPD) (36 expatriates and 36 natives) and 80 in the school. 60% of schoolchildren and 57% of OPD patients were found positive for any infection, the most represented were protozoa infections (50%), whereas helminthic infections accounted only for 13% and 20% in OPD patients and schoolchildren, respectively. The most prevalent among helminths was Ascaris lumbricoides (11%). Giardia intestinalis was more present among schoolchildren than the OPD patients (20% vs 6%) and E. histolytica/dispar was more prevalent among the OPD patients (42%) than the school children (23%). Correlations were found between nausea and loose or watery stools and parasitic infections, particularly in expatriates, whereas schoolchildren, despite being as infected as adults, were completely asymptomatic. Mini-FLOTAC detected higher number of helminth infections whereas FEC method was more accurate for the diagnosis of protozoa. CONCLUSIONS: This study presents an accurate snapshot of intestinal parasitic infections in Dharamsala, and their high prevalence calls for more awareness and control measures. Mini-FLOTAC is a promising and simple technique for the diagnosis of helminth infections.


Subject(s)
Intestinal Diseases, Parasitic/epidemiology , Adolescent , Adult , Aged , Animals , Child , Child, Preschool , Cross-Sectional Studies , Female , Humans , Male , Middle Aged , Parasites/isolation & purification , Tibet/epidemiology
20.
PLoS Negl Trop Dis ; 7(8): e2344, 2013.
Article in English | MEDLINE | ID: mdl-23936577

ABSTRACT

BACKGROUND: Soil-transmitted helminths and intestinal protozoa infection are widespread in developing countries, yet an accurate diagnosis is rarely performed. The aim of this study was to evaluate the recently developed mini-FLOTAC method and to compare with currently more widely used techniques for the diagnosis of intestinal parasitic infections in different settings. METHODOLOGY/PRINCIPAL FINDINGS: The study was carried out in Dharamsala, Himachal Pradesh, India, and in Bukumbi, Tanzania. A total of 180 pupils from two primary schools had their stool analyzed (n = 80 in Dharamsala and n = 100 in Bukumbi) for intestinal parasitic infections with three diagnostic methods: direct fecal smear, formol-ether concentration method (FECM) and mini-FLOTAC. Overall, 72% of the pupils were positive for any intestinal parasitic infection, 24% carried dual infections and 11% three infections or more. The most frequently encountered intestinal parasites were Entamoeba coli, Entamoeba histolytica/dispar, Giardia intestinalis, hookworm, (and Schistosoma mansoni, in Tanzania). Statistically significant differences were found in the detection of parasitic infections among the three methods: mini-FLOTAC was the most sensitive method for helminth infections (90% mini-FLOTAC, 60% FECM, and 30% direct fecal smear), whereas FECM was most sensitive for intestinal protozoa infections (88% FECM, 70% direct fecal smear, and 68% mini-FLOTAC). CONCLUSION/SIGNIFICANCE: We present the first experiences with the mini-FLOTAC for the diagnosis of intestinal helminths and protozoa. Our results suggest that it is a valid, sensitive and potentially low-cost alternative technique that could be used in resource-limited settings--particularly for helminth diagnosis.


Subject(s)
Clinical Laboratory Techniques/methods , Diagnostic Tests, Routine/methods , Intestinal Diseases, Parasitic/diagnosis , Parasites/isolation & purification , Parasitology/methods , Adolescent , Animals , Child , Clinical Laboratory Techniques/economics , Costs and Cost Analysis , Diagnostic Tests, Routine/economics , Feces/parasitology , Female , Humans , India , Male , Parasites/classification , Parasitology/economics , Sensitivity and Specificity , Tanzania
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